👤 Jennifer S Lee

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970
Articles
954
Name variants
Also published as: A Lee, Aaron Y Lee, Aden Geonhee Lee, Ah Rah Lee, Ahwon Lee, Alex Pui-Wai Lee, Alexander Lee, Alice W Lee, Alvin J X Lee, Amos Chungwon Lee, Amy H Lee, Ann-Hwee Lee, Annie J Lee, Annika Lee, Anthony Lee, Arthur S Lee, B Lee, Beatrice Lee, Bee-Na Lee, Benedict Ka-Wa Lee, Benhur Lee, Benjamin W Lee, Beom Hee Lee, Bernadette Lee, Bernett Lee, Bok Luel Lee, Bok-Soo Lee, Bombi Lee, Bong Jin Lee, Bong-Ho Lee, Bonggi Lee, Bonghee Lee, Bongyong Lee, Boo Yong Lee, Boo-Yong Lee, Brendan H Lee, Brendan Lee, Brian L Lee, Brian Lee, Brittany Lee, Bugeun Lee, Byeong-ha Lee, Byeonghyeon Lee, Byoung Kwon Lee, Byung Cheol Lee, Byung Hoon Lee, Byung Rho Lee, Byung-Chul Lee, Byung-Hoon Lee, Byungkook Lee, C C Lee, C G Lee, C L Lee, C Lee, Candy Lee, Catherine A A Lee, Chae Syng Lee, Chaewon Lee, Chan Gyu Lee, Chan Hee Lee, Chan Joo Lee, Chang B Lee, Chang Hoon Lee, Chang Kyun Lee, Chang Seok Lee, Chang Uk Lee, Chang Yeol Lee, Chang-Gun Lee, Chang-Hun Lee, Chang-Hyun Lee, Chang-Jung Lee, Chang-Woo Lee, Changho Lee, Charles Lee, Charlotte E Lee, Che-Hsin Lee, Chee Lee, Chen-Chi Lee, Cheng-Chun Lee, Cheng-Han Lee, Cheng-Yang Lee, Cheol Lee, Cheol-Koo Lee, Cheryl Lee, Chi-Ho Lee, Chia-Jen Lee, Chia-Wei Lee, Chiang-Wen Lee, Chien-Hung Lee, Chien-Kuan Lee, Chien-Nan Lee, Chien-Wei Lee, Chih-Ting Lee, Chii-Ming Lee, Ching Chin Lee, Choli Lee, Choon-Mi Lee, Choong Sik Lee, Choongho Lee, Chris Lee, Christina Lee, Christine C Lee, Christine K Lee, Christopher W J Lee, Chuen Neng Lee, Chul-Ho Lee, Chun-Nan Lee, Chun-Te Lee, Chun-Ying Lee, Chung Hyeon Lee, Chung Lee, Chung-Jen Lee, Chung-Ta Lee, Chunsik Lee, Craig Lee, D A Lee, D Lee, D S Lee, Da Hoon Lee, Da Som Lee, Da-Eun Lee, Dae Sim Lee, Dae-Hee Lee, Dae-Kee Lee, Dae-Sung Lee, Dahye Lee, Dajeong Lee, Dakeun Lee, Dana Lee, Dana M Lee, Daseul Lee, David Lee, David M Lee, David S M Lee, Deborah L Lee, Derek P H Lee, Diana Y Lee, Do Hyun Lee, Do-Hun Lee, Do-Youn Lee, Dominic P Lee, Don-Haeng Lee, Dong Chul Lee, Dong Gyu Lee, Dong Hoon Lee, Dong Hun Lee, Dong Jin Lee, Dong Soon Lee, Dong Woo Lee, Dong Young Lee, Dong-Hee Lee, Dong-Ho Lee, Dong-Kun Lee, Dong-Seok Lee, Dong-Seol Lee, Dong-Yup Lee, Dongho Lee, Donghun Lee, Doo Jae Lee, Douglas Lee, Douglas S Lee, Dustin Lee, E Lee, Edward B Lee, Edward C Lee, Edward S Lee, Ee Soo Lee, Elijah Hwejin Lee, Elizabeth Chun Yong Lee, Elizabeth K Lee, Eminy H Y Lee, Erinna F Lee, Esmond Lee, Ethan Lee, Eui Sup Lee, Eun Bi Lee, Eun Hee Lee, Eun Hye Lee, Eun Ji Lee, Eun Jig Lee, Eun Ju Lee, Eun Kyung Lee, Eun Seong Lee, Eun Yup Lee, Eun-Gyung Lee, Eun-Jae Lee, Eun-Jin Lee, Eun-Kyong Lee, Eun-Sook Lee, Eun-Woo Lee, Eun-Young Lee, Eunhong Lee, Eunji Lee, Eunjoo Lee, Eunjung Lee, Eunmi Lee, Eunsoo Lee, Eunsook Lee, Frank Kong Fei Lee, G Lee, Ga Young Lee, Ga-Young Lee, Gang Gu Lee, Gang-Seob Lee, Ge Hyeong Lee, Gene Lee, Geon Seong Lee, Gha Young Lee, Gwan Jae Lee, Gwo-Shu Mary Lee, Gyeonghee Lee, Gyu Rie Lee, Gyu-Hyun Lee, H Hc Lee, H Lee, H-T Lee, Ha-Eun Lee, Ha-Na Lee, Hae Jun Lee, Hae Lim Lee, Hae-In Lee, Hae-Jeung Lee, Hae-June Lee, Hae-Youn Lee, Haenim Lee, Haeri Lee, Haeyong Lee, Hak-Ju Lee, Hak-Kyo Lee, Hak-Myung Lee, Han Chu Lee, Han-Chang Lee, Han-Chul Lee, Han-Chung Lee, Han-Woong Lee, Hang Lee, Hans C Lee, Hans Lee, Harim Lee, Hee Jin Lee, Hee Young Lee, Hee-Sheung Lee, Heejin Lee, Heejung Lee, Heesun Lee, Heewon Lee, Hencher Han Chih Lee, Heng-Chi Lee, Heon-Jeong Lee, Heuiran Lee, Heun-Sik Lee, Heung Man Lee, Heungwoo Lee, Heyoung Lee, Ho Hyeon Lee, Ho Seon Lee, Ho-Jae Lee, Ho-Jin Lee, Ho-Joon Lee, Ho-Su Lee, Ho-Sun Lee, Hoi Young Lee, Hong Kyu Lee, Hong Lee, Hong Sub Lee, Hong-Gu Lee, Hsiang-Ying Lee, Hsiao-Chen Lee, Hsinyu Lee, Huang-Chieh Lee, Hui-Young Lee, Huseong Lee, Hwa Jin Lee, Hwan Hee Lee, Hwan Young Lee, Hye Ah Lee, Hye Jin Lee, Hye Seung Lee, Hye Won Lee, Hye-Ja Lee, Hye-Sun Lee, Hyeon Jin Lee, Hyeon-Hwa Lee, Hyeon-Seong Lee, Hyeonah Lee, Hyeong-Chan Lee, Hyerim Lee, Hyo Lim Lee, Hyo-Jeong Lee, Hyoung Doo Lee, Hyoung Seok Lee, Hyun Jik Lee, Hyun Jung Lee, Hyun-Ju Lee, Hyun-Seung Lee, Hyun-Shik Lee, Hyun-Su Lee, Hyun-Young Lee, Hyung Ho Lee, Hyunghee Lee, Hyungjae Lee, Hyungyu Lee, Hyunju Lee, Hyunjung Lee, Hyunkyoung Lee, I-Lynn Lee, I-Min Lee, I-Ta Lee, I-Te Lee, Ian Y Lee, Icksoo Lee, Ida P C Lee, Il-Shin Lee, In-Hee Lee, In-Kyu Lee, Inchul Lee, Ingoo Lee, Inhan Lee, J D Lee, J Eugene Lee, J G Lee, J H Lee, J J Lee, J K Lee, J Lee, J Y H Lee, Jacqueline R E Lee, Jae Hee Lee, Jae Ho Lee, Jae Joon Lee, Jae Jun Lee, Jae Lee, Jae Min Lee, Jae Yong Lee, Jae Yoon Lee, Jae Young Lee, Jae-Hyuk Lee, Jae-Il Lee, Jae-Lyun Lee, Jae-Myun Lee, JaeHeon Lee, Jaecheol Lee, Jaeho Lee, Jaehoo Lee, Jaejin Lee, Jaesuk Lee, Jaewon Lee, Jai-Wei Lee, James C Lee, James Lee, Jamie J H Lee, Janet M Lee, Jang Hoon Lee, Jason S Lee, Jayhee Lee, Jean Lee, Jeannie Xue Ting Lee, Jee H Lee, Jee Ho Lee, Jee Hoon Lee, Jee Woo Lee, Jee-Eun Lee, Jee-In Lee, Jeffrey E Lee, Jehee Lee, Jen-Chieh Lee, Jen-Kuang Lee, Jenny S W Lee, Jenq-Chang Lee, Jeong Deuk Lee, Jeong Hyeon Lee, Jeong Min Lee, Jeong Nyeo Lee, Jeong Woong Lee, Jeong-Heon Lee, Jeong-Hyung Lee, Jeong-In Lee, Jeong-Yun Lee, Jeongeun Lee, Jeonghee Lee, Jeonghun Lee, Jeongmi Lee, Jeongmin Lee, Jessica J Lee, Jessica Lee, Ji Eun Lee, Ji Hae Lee, Ji Hyun Lee, Ji Seung Lee, Ji Yea Lee, Ji-Eun Lee, Ji-Hae Lee, Ji-Min Lee, Ji-Shin Lee, Ji-Won Lee, Ji-Yoon Lee, Jia Y J Lee, Jia-In Lee, Jibeom Lee, Jie-Eun Lee, Jieun Lee, Jihye Lee, Jiing-Dwan Lee, Jimin Lee, Jimmy Lee, Jin Lee, Jin Sol Lee, Jin Woo Lee, Jin Wook Lee, Jin Young Lee, Jin-Ku Lee, Jin-Moo Lee, Jin-Seok Lee, Jin-Tae Lee, Jina Lee, Jing Yi Lee, Jinie Lee, Jinmi Lee, Jiwon Lee, Jiwoo Lee, Jiyeong Lee, Jiyoung Lee, Jiyun Lee, Joanna H S Lee, Joanna Y Lee, John E Lee, John K Lee, Jonathan D Lee, Jong Eun Lee, Jong Ho Lee, Jong Kyun Lee, Jong Min Lee, Jong Rok Lee, Jong Won Lee, Jong Young Lee, Jong-Eun Lee, Jong-Hee Lee, Jong-Ho Lee, Jong-Keuk Lee, Jong-Min Lee, Jong-Sun Lee, Jong-Young Lee, JongMin Lee, Jongin Lee, Jongsung Lee, Jongtae Lee, Joo Chan Lee, Joo Yong Lee, Joo-Yong Lee, Joon Lee, Joon Seok Lee, Joon Yeop Lee, Joseph H Lee, Joshua D Lee, Joshua H Lee, Joyce S Lee, Joycelyn M Lee, Ju Mee Lee, Ju Young Lee, Ju-Han Lee, Ju-Hee Lee, Ju-Seog Lee, Ju-Yeon Lee, Julie Lee, Jun Hee Lee, Jun Ho Lee, Jun Hyung Lee, Jun-Gyu Lee, Jun-Young Lee, Jung Hoon Lee, Jung Hyun Lee, Jung Uee Lee, Jung Weon Lee, Jung-Eun Lee, Jung-Hee Lee, Jung-Hyun Lee, Jung-Jae Lee, Jung-Kul Lee, Jung-Min Lee, Jung-Won Lee, Jung-Yun Lee, Junghak Lee, Junghan Lee, Junghoon Lee, Junghun Lee, Jungjae Lee, Jungkwan Lee, Jungmin Lee, Jungsoo Lee, Junhee Lee, Junhyeok Lee, Justin Y Lee, Justin Yin Hao Lee, Juwon Lee, K Y Lee, K-C Lee, K-T Lee, Kai-Jing Lee, Kailun Lee, Kang Mi Lee, Kang-Yo Lee, Kangeun Lee, Kate D Lee, Kayoung Lee, Kee Myung Lee, Kelly Wing-Kwan Lee, Kenny W J Lee, Keun-Wook Lee, Ki Ho Lee, Ki Hoon Lee, Ki Rim Lee, Ki Won Lee, Ki Y Lee, Ki-Bum Lee, Kil Sun Lee, Kim Hung Lee, Kimberly Lee, Kirsten G Lee, Kuan-Jung Lee, Kuei-Chuan Lee, Kuen-Haur Lee, Kun Ho Lee, Kuo-Ting Lee, Kuy-Sook Lee, Kwanchul Lee, Kwang Hyuck Lee, Kwang Jae Lee, Kwang Youl Lee, Kwanghoon Lee, Kwangwon Lee, Kwanwoo Lee, Kyeong Jin Lee, Kyeong Won Lee, Kyo Won Lee, Kyoung A Viola Lee, Kyoung Hwan Lee, Kyoung Jin Lee, Kyoung-Ryul Lee, Kyu Jun Lee, Kyu Sang Lee, Kyu Young Lee, Kyu-Jae Lee, Kyu-Sup Lee, Kyu-Taek Lee, Kyun-Hee Lee, Kyung Jae Lee, Kyung Lee, Kyung Min Lee, Kyung-A Lee, Kyung-Hwa Lee, Kyung-Yil Lee, Kyunhee Lee, Laisze Lee, Lang Ho Lee, Lap Man Lee, Laura A Lee, Laura Lee, Leo T O Lee, Lester Lee, Li-Hua Lee, Lin Lee, Linda S Lee, Linkiat Lee, Long-Huw Lee, Lucy Eunju Lee, M E Lee, M Lee, Man-Po Lee, Martin Lee, Matthew A Lee, Matthew J Lee, Maxwell P Lee, Mee-Hyun Lee, Meng-Hsin Lee, Meng-Huee Lee, Meng-Shan Lee, Meng-Shiou Lee, Mi Kyeong Lee, Mi So Lee, Mi Woo Lee, Mi Young Lee, Mi-Jin Lee, Mi-Kyeong Lee, Mi-Kyung Lee, Mi-Ni Lee, Mi-Ock Lee, Mi-Sun Lee, Mi-Yeon Lee, Mianne Lee, Michael L Lee, Michael Lee, Min Hee Lee, Min Jae Lee, Min Ji Lee, Min Jin Lee, Min Jung Lee, Min Soo Lee, Min Young Lee, Min-Ai Lee, Min-Ho Lee, Ming Ta Michael Lee, Ming Tatt Lee, Ming-Che Lee, Ming-Cheng Lee, Ming-Fen Lee, Ming-Jen Lee, Mingyu Lee, Minhee Lee, Minji K Lee, Minju Lee, Minsup Lee, Minwook Lee, Minyoung Lee, Miriam Lee, Misu Lee, Miyoung Lee, Moa P Lee, Mon-Juan Lee, Myeong-Sok Lee, Myoung-Hee Lee, Myoung-Hwa Lee, Myoungsook Lee, Myung Shin Lee, Na Eun Lee, Na-Kyoung Lee, Na-Rang Lee, Nam K Lee, Nancy Y Lee, Nanette R Lee, Nathan Lee, Nathan V Lee, Nathanael Y J Lee, Nayoung Lee, Ni-Chung Lee, Nikki P Lee, Noelle N Lee, Norman H Lee, Ok Joo Lee, Ok-Jun Lee, Oscar Kuang-Sheng Lee, Oukseub Lee, P J Lee, Paul C Lee, Paul R Lee, Peng Lee, Peter L Lee, Peter Lee, Philbert Lee, Pil Lee, Pui Y Lee, Pureunchowon Lee, R L Lee, Rami Lee, Rebecca A Lee, Rebecca Lee, Richard F Lee, Richard G Lee, Richard K Lee, Richard L Lee, Richard T Lee, Ro-Po Lee, S H Lee, S Hong Lee, S J van der Lee, S-H Lee, Sae Bom Lee, Sae Byul Lee, Sae Hwan Lee, Sae-Mi Lee, Sae-Won Lee, Sam W Lee, Samantha Sze-Yee Lee, Samuel Lee, Sandy Lee, Sang Chul Lee, Sang Gyu Lee, Sang H Lee, Sang Haak Lee, Sang Hak Lee, Sang Hoon Lee, Sang Hyuk Lee, Sang In Lee, Sang Jin Lee, Sang Joon Lee, Sang Kook Lee, Sang Youn Lee, Sang-Bin Lee, Sang-Chol Lee, Sang-Guk Lee, Sang-Hak Lee, Sang-Han Lee, Sang-Hoon Lee, Sang-Hyun Lee, Sang-Kyu Lee, Sang-Rok Lee, Sang-Seop Lee, Sang-Wha Lee, Sang-Won Lee, Sang-Yeol Lee, Sang-Yoon Lee, SangHoon Lee, Sanghoo Lee, Sanghun Lee, Sanghyuk Lee, Sangkil Lee, Sangmin Lee, Sangwoo Lee, Sarah S Lee, Se-In Lee, Se-Jin Lee, Se-Yong Lee, Sean M Lee, Sejoon Lee, Seok-Geun Lee, Seolha Lee, Seon-Hyeong Lee, Seong Eun Lee, Seong-No Lee, Seongju Lee, Seongsin Lee, Seongsoo Lee, Seonok Lee, Seoyeon Lee, Seul Ji Lee, Seulah Lee, Seung Bum Lee, Seung Eun Lee, Seung Hun Lee, Seung Hyuk T Lee, Seung Jae Lee, Seung Mi Lee, Seung Won Lee, Seung-Min Lee, Seung-Pyo Lee, Seung-Ryeol Lee, Seung-Tae Lee, Seung-Taek Lee, Seungbum Lee, Seungdon Lee, Seungheon Lee, Seunghoon Lee, Seungkoo Lee, Seungkyu Lee, Seungyeon Lee, Shannon Lee, Shao-Chen Lee, Shawn Lee, Sheng-Chung Lee, Shih-Ching Lee, Shih-Chun Lee, Shih-Huang Lee, Shin Hyung Lee, Shin-Da Lee, Shinrye Lee, Shui-Shan Lee, Shwu-Hua Lee, Shyh-Jye Lee, Simon Lee, Simon Ming-Yuen Lee, Sindre Lee, Siwoo Lee, So Rok Lee, So Yeong Lee, So Young Lee, So-Min Lee, So-Young Lee, Soah Lee, Sohyun Lee, Sojin Lee, Song Eun Lee, Song-Hee Lee, Soo Bin Lee, Soo Ji Lee, Soo Youn Lee, Soo-Youn Lee, Soojin Lee, Sook-Whan Lee, Soonduck Lee, Soung-Hun Lee, Soyoun Lee, Stephen D Lee, Steven J Lee, Su-Been Lee, Su-Jin Lee, Sua Lee, Sug Hyung Lee, Suk Kyung Lee, Suman Lee, Sun Kyong Lee, Sun Young Lee, Sun-Hee Lee, Sun-Mee Lee, Sung Ki Lee, Sung Sik Lee, Sung-Han Lee, Sung-Hyen Lee, Sung-Joon Lee, Sung-Wei Lee, Sunghee Lee, Sungjin Lee, Sunju Lee, Sunmi Lee, Sunwoo Lee, Susan Shin-Jung Lee, Sven J van der Lee, Syann Lee, T Lee, T-S Lee, Tae Ho Lee, Tae Jin Lee, Tae Young Lee, Tae-Gul Lee, Tae-Ho Lee, Tae-Hoon Lee, Tae-Rim Lee, Taeheon Lee, Tai-Ping Lee, Tatia M C Lee, Thomas Domin Lee, Thomas Lee, Tih-Shih Lee, Tin-Lap Lee, Tricia Lee, Tsong-Hai Lee, Tsung-Lin Lee, Tsung-Lun Lee, Tzong-Shyuan Lee, Tzu-Lin Lee, Tzu-Yi Lee, Tzu-Yin Lee, Vanessa G Lee, Vanessa Lin Lin Lee, Vannajan Sanghiran Lee, Vern Chien Lee, Victor Ho Fun Lee, Vincent Lee, Virginia M-Y Lee, Virginia Man-Yee Lee, Viveca Lee, W J Lee, W Lee, Wan-Ping Lee, Wan-Ru Lee, Wang Ka Lee, Wang-Fat Fred Lee, Warren L Lee, Warren Lee, Wei Shern Lee, Wei-Chieh Lee, Wei-Jei Lee, Wei-Jiunn Lee, Wei-Ting Lee, Wen Xing Lee, Wen-Jane Lee, Wendy Lee, Weontae Lee, Will M Lee, William Lee, William M Lee, Won Jun Lee, Won Seok Lee, Won-Jae Lee, Won-Suk Lee, Won-Woo Lee, Won-Young Lee, Won-Yung Lee, Wonseok Lee, Woo Je Lee, Woo Jin Lee, Woochang Lee, Woong Jin Lee, Xinhua Lee, Y S Lee, Ye-Ji Lee, Yee-Ki Lee, Yeji Lee, Yen-Mei Lee, Yena Lee, Yenna Lee, Yeon J Lee, Yeon-Su Lee, Yeong Chan Lee, Yeong-Geun Lee, Yeongyeong Lee, Yeonmi Lee, Yeow Siong Lee, Yi-Jung Lee, Yi-Ting Lee, Yi-Ying Lee, Yiju Lee, Ying Lee, Ying-Chu Lee, Ying-Hui Lee, Ying-Shiung Lee, Yong Seok Lee, Yong Sup Lee, Yong-Ho Lee, Yong-Soo Lee, Yongjae Lee, Yongjin Lee, Yoo Jin Lee, Yoon-Jin Lee, Yoonseok Lee, Yoontae Lee, You Mie Lee, Youn-Kyoung Lee, Young Chul Lee, Young Han Lee, Young Jae Lee, Young Jin Lee, Young Joo Lee, Young Lee, Young Mok Lee, Young-Ae Lee, Young-Ho Lee, Young-Joo Lee, Young-Ju Lee, Young-Sup Lee, Youngseok Lee, Yu Jin Lee, Yu Joo Lee, Yu-Bin Lee, Yu-Cheng Lee, Yu-Chi Lee, Yu-Chieh Lee, Yu-Ching Lee, Yu-Ri Lee, Yuan T Lee, Yuan-Kun Lee, Yuan-Teh Lee, Yuan-Ti Lee, Yujeong Lee, Yujin Lee, Yun Kyung Lee, Yun-Hee Lee, Yun-Il Lee, Yun-Mi Lee, Yun-Sang Lee, Yun-Sil Lee, Yun-Tzai Lee, Yuna Lee, Yunbeom Lee, Yung Seng Lee, Yung-Chun Lee, Yung-Kuo Lee, Yunjong Lee, Yunkyoung Lee, Yunna Lee, Yunsang Lee, Yurim Lee, Yvonne K Lee, Z P Lee, Zang Hee Lee
articles
Y Kato, R I Tapping, S Huang +3 more · 1998 · Nature · Nature · added 2026-04-24
Epidermal growth factor (EGF) induces cell proliferation in a variety of cell types by binding to a prototype transmembrane tyrosine kinase receptor. Ligation of this receptor by EGF activates Erk1 an Show more
Epidermal growth factor (EGF) induces cell proliferation in a variety of cell types by binding to a prototype transmembrane tyrosine kinase receptor. Ligation of this receptor by EGF activates Erk1 and Erk2, members of the mitogen-activated protein (MAP) kinase family, through a Ras-dependent signal transduction pathway. Despite our detailed understanding of these events, the exact mechanism by which EGF causes cells to proliferate is unclear. Big MAP kinase (Bmk1), also known as Erk5, is a member of the MAP kinase family that is activated in cells in response to oxidative stress, hyperosmolarity and treatment with serum. Here we show that EGF is a potent activator of Bmk1. In contrast to Erk1/2, EGF-mediated activation of Bmk1 occurs independently of Ras and requires the MAP-kinase kinase Mek5. Expression of a dominant-negative form of Bmk1 blocks EGF-induced cell proliferation and prevents cells from entering the S phase of the cell cycle. These results demonstrate that Bmk1 is part of a distinct MAP-kinase signalling pathway that is required for EGF-induced cell proliferation and progression through the cell cycle. Show less
no PDF DOI: 10.1038/27234
MAP2K5
L Zeng, F Fagotto, T Zhang +7 more · 1997 · Cell · Elsevier · added 2026-04-24
Mutations at the mouse Fused locus have pleiotropic developmental effects, including the formation of axial duplications in homozygous embryos. The product of the Fused locus, Axin, displays similarit Show more
Mutations at the mouse Fused locus have pleiotropic developmental effects, including the formation of axial duplications in homozygous embryos. The product of the Fused locus, Axin, displays similarities to RGS (Regulators of G-Protein Signaling) and Dishevelled proteins. Mutant Fused alleles that cause axial duplications disrupt the major mRNA, suggesting that Axin negatively regulates the response to an axis-inducing signal. Injection of Axin mRNA into Xenopus embryos inhibits dorsal axis formation by interfering with signaling through the Wnt pathway. Furthermore, ventral injection of an Axin mRNA lacking the RGS domain induces an ectopic axis, apparently through a dominant-negative mechanism. Thus, Axin is a novel inhibitor of Wnt signaling and regulates an early step in embryonic axis formation in mammals and amphibians. Show less
no PDF DOI: 10.1016/s0092-8674(00)80324-4
AXIN1
V Measday, L Moore, R Retnakaran +4 more · 1997 · Molecular and cellular biology · added 2026-04-24
In budding yeast, entry into the mitotic cell cycle, or Start, requires the Cdc28 cyclin-dependent kinase (Cdk) and one of its three associated G1 cyclins, Cln1, Cln2, or Cln3. In addition, two other Show more
In budding yeast, entry into the mitotic cell cycle, or Start, requires the Cdc28 cyclin-dependent kinase (Cdk) and one of its three associated G1 cyclins, Cln1, Cln2, or Cln3. In addition, two other G1 cyclins, Pcl1 and Pcl2, associate with a second Cdk, Pho85, to contribute to Start. Although Pho85 is not essential for viability, Pcl1,2-Pho85 kinase complexes become essential for Start in the absence of Cln1,2-Cdc28 kinases. In addition, Pho85 interacts with a third cyclin, Pho80, to regulate acid phosphatase gene expression. Other cellular roles for Pho85 cyclin-Cdk complexes are suggested by the multiple phenotypes associated with deletion of PHO85, in addition to Start defects and deregulated acid phosphatase gene expression. Strains with pho80, pcl1, and pcl2 deletions show only a subset of the pho85 mutant phenotypes, suggesting the existence of additional Pho85 cyclins (Pcls). We used two-hybrid screening and database searching to identify seven additional cyclin-related genes that may interact with Pho85. We found that all of the new genes encode proteins that interacted with Pho85 in an affinity chromatography assay. One of these genes, CLG1, was previously suggested to encode a cyclin, based on the protein's sequence homology to Pcl1 and Pcl2. We have named the other genes PCL5, PCL6, PCL7, PCL8, PCL9, and PCL10. On the basis of sequence similarities, the PCLs can be divided into two subfamilies: the Pcl1,2-like subfamily and the Pho80-like subfamily. We found that deletion of members of the Pcl1,2 class of genes resulted in pronounced morphological abnormalities. In addition, we found that expression of one member of the Pcl1,2 subfamily, PCL9, is cell cycle regulated and is decreased in cells arrested in G1 by pheromone treatment. Our studies suggest that Pho85 associates with multiple cyclins and that subsets of cyclins may direct Pho85 to perform distinct roles in cell growth and division. Show less
no PDF DOI: 10.1128/MCB.17.3.1212
CLN3
Z Piao, H Kim, B K Jeon +2 more · 1997 · Cancer · added 2026-04-24
Hepatocellular carcinoma (HCC) is one of the most common human tumors in Asia and Africa. The molecular genetic changes involving both protooncogenes and tumor suppressor genes are known to be involve Show more
Hepatocellular carcinoma (HCC) is one of the most common human tumors in Asia and Africa. The molecular genetic changes involving both protooncogenes and tumor suppressor genes are known to be involved in hepatocarcinogenesis, but the roles of the known tumor suppressor genes in hepatocarcinogenesis are not fully elucidated. In this study, the authors analyzed the loss of heterozygosity (LOH) of known tumor suppressor genes in HCC and evaluated the relationship between LOH of tumor suppressor genes and clinicopathologic features. The authors assessed the LOH of the 10 known tumor suppressor genes (VHL, APC, EXT1, WT1, Rb1, p53, BRCA1, nm23, DPC4, and DCC) with microsatellite markers in 29 consecutively resected HCC specimens. The authors found frequent LOH of tumor suppressor genes in HCC. Twenty five of 29 cases (86%) had LOH of tumor suppressor genes and 17 cases (59%) had LOHs involving 2-4 tumor suppressor genes. Among the tumor suppressor genes, frequent LOH was noted in the p53 (66%), Rb1 (33%), EXT1 (33%), and APC (20%) genes. LOH of the p53 gene and multiple LOH of the tumor suppressor genes were more frequent in poorly differentiated HCCs (P = 0.02). The LOH of tumor suppressor genes is frequent in HCCs and LOH of the p53 gene and accumulated LOHs are related to poorly differentiated HCC. Abnormalities of the p53 gene or the accumulated abnormalities of the tumor suppressor genes may play a role in the aggressive progression of HCC. Show less
no PDF
EXT1
Y Kato, V V Kravchenko, R I Tapping +3 more · 1997 · The EMBO journal · Oxford University Press · added 2026-04-24
Big MAP kinase 1 (BMK1), also known as ERK5, is a mitogen-activated protein (MAP) kinase member whose biological role is largely undefined. We have shown previously that the activity of BMK1 in rat sm Show more
Big MAP kinase 1 (BMK1), also known as ERK5, is a mitogen-activated protein (MAP) kinase member whose biological role is largely undefined. We have shown previously that the activity of BMK1 in rat smooth muscle cells is up-regulated by oxidants. Here, we describe a constitutively active form of the MAP kinase kinase, MEK5(D), which selectively activates BMK1 but not other MAP kinases in vivo. Through utilization of MEK5(D), we have determined that a member of the MEF2 transcription factor family, MEF2C, is a protein substrate of BMK1. BMK1 dramatically enhances the transactivation activity of MEF2C by phosphorylating a serine residue at amino acid position 387 in this transcription factor. Serum is also a potent stimulator of BMK1-induced MEF2C phosphorylation, since a dominant-negative form of BMK1 specifically inhibits serum-induced activation of MEF2C. One consequence of MEF2C activation is increased transcription of the c-jun gene. Taken together, these results strongly suggest that in some cell types the MEK5/BMK1 MAP kinase signaling pathway regulates serum-induced early gene expression through the transcription factor MEF2C. Show less
no PDF DOI: 10.1093/emboj/16.23.7054
MAP2K5
J Lee, A Romeo, D J Kosman · 1996 · The Journal of biological chemistry · American Society for Biochemistry and Molecular Biology · added 2026-04-24
Saccharomyces cerevisiae, which lack a functional SOD1 gene, encoding the cytosolic Cu,Zn-superoxide dismutase (SOD1), exhibit a variety of metabolic defects in aerobic but not in anaerobic growth. We Show more
Saccharomyces cerevisiae, which lack a functional SOD1 gene, encoding the cytosolic Cu,Zn-superoxide dismutase (SOD1), exhibit a variety of metabolic defects in aerobic but not in anaerobic growth. We test here the hypothesis that some of these defects may be due to specific transcriptional changes programmed for cell survival under dioxygen stress. Analysis of the budding pattern and generation time showed that the slower proliferation of an sod1Delta mutant strain under air was due to an increase from 42 to 89 min spent in the G1 phase of the cell cycle. This delay in G1 was not due to an overall decline in biosynthetic activity since total protein and mRNA synthesis was not reduced even under 100% O2. However, rRNA synthesis was strongly decreased, e.g. by 80% in the mutant under 100% O2 (in comparison to N2). Under these conditions, the mutant permanently arrested in G1; this arrest was due to an inhibition of the Start function that prepares yeast for S phase. This Start arrest was due to an inhibition of transcription of the autoregulated G1 cyclins, CLN1 and CLN2; the transcription of the constitutive G1 cyclin, CLN3, was unaffected by the stress. Expression of a hyperstable Cln3 prevented the G1 arrest, indicating that it was due solely to the inhibition of cell cycle-dependent cyclin expression. This remodeling of transcription in oxidative stress was seen also in the inhibition of glucose derepression of SUC2 expression. In contrast, the signaling and activation of mating pheromone (FUS1) and copper-responsive (CUP1) promoter activity were not affected by dioxygen stress, while genes encoding other anti-oxidant enzymes (SOD2, CTT1 and CTA1) were strongly induced. The UBI loci, encoding ubiquitin, were particularly good examples of this pattern of negative and positive transcriptional response to the stress. UBI1-UBI3 expression was repressed in the mutant under 100% O2, while expression of UBI4 was strongly induced. The data demonstrate that extensive remodeling of transcription occurs in yeast under a strong dioxygen stress. This remodeling results in a pattern of expression of gene products needed for defense and repair, and suppression of activities associated with normal proliferative growth. Show less
no PDF DOI: 10.1074/jbc.271.40.24885
CLN3
R L Lee, K R Johnson, T J Lerner · 1996 · Genomics · added 2026-04-24
We describe the isolation and chromosomal mapping of a mouse homolog of the Batten disease gene, CLN3. Like its human counterpart, the mouse cDNA contains an open reading frame of 1314 bp encoding a p Show more
We describe the isolation and chromosomal mapping of a mouse homolog of the Batten disease gene, CLN3. Like its human counterpart, the mouse cDNA contains an open reading frame of 1314 bp encoding a predicted protein product of 438 amino acids. The mouse and human coding regions are 82 and 85% identical at the nucleic acid and amino acid levels, respectively. The mouse gene maps to distal Chromosome 7, in a region containing genes whose homologs are on human chromosome 16p12, where CLN3 maps. Isolation of a mouse CLN3 homolog will facilitate the creation of a mouse model of Batten disease. Show less
no PDF DOI: 10.1006/geno.1996.0410
CLN3
J Ahn, H J Lüdecke, S Lindow +5 more · 1995 · Nature genetics · Nature · added 2026-04-24
Hereditary multiple exostoses is an autosomal dominant disorder that is characterized by short stature and multiple, benign bone tumours. In a majority of families, the genetic defect (EXT1) is linked Show more
Hereditary multiple exostoses is an autosomal dominant disorder that is characterized by short stature and multiple, benign bone tumours. In a majority of families, the genetic defect (EXT1) is linked to the Langer-Giedion syndrome chromosomal region in 8q24.1. From this region we have cloned and characterized a cDNA which spans chromosomal breakpoints previously identified in two multiple exostoses patients. Furthermore, the gene harbours frameshift mutations in affected members of two EXT1 families. The cDNA has a coding region of 2,238 bp with no apparent homology to other known gene sequences and thus its function remains elusive. However, recent studies in sporadic and exostosis-derived chondrosarcomas suggest that the 8q24.1-encoded EXT1 gene may have tumour suppressor function. Show less
no PDF DOI: 10.1038/ng1095-137
EXT1
F S Sharief, H Lee, M M Leuderman +4 more · 1989 · Biochemical and biophysical research communications · Elsevier · added 2026-04-24
The cDNAs encoding human prostatic acid phosphatase were cloned and characterized. The mRNAs contain 3' noncoding regions of heterogeneous sizes 646, 1887 or 1913 nucleotides. A dimer and a monomer of Show more
The cDNAs encoding human prostatic acid phosphatase were cloned and characterized. The mRNAs contain 3' noncoding regions of heterogeneous sizes 646, 1887 or 1913 nucleotides. A dimer and a monomer of the conserved Alu-repeats are present in the longer 3' noncoding sequences. The complete sequence of 354 amino acids for the mature enzyme was determined by sequencing both cDNA and protein. Human prostatic and lysosomal acid phosphatases exhibit 50% sequence homology, including five Cys residues and two putative N-linked glycosylation sites. The Acp-3 gene coding for human prostatic acid phosphatase was mapped onto chromosome 3 in this investigation. The Acp-2 gene coding for lysosomal acid phosphatase has previously been located on chromosome 11, while the Acp-1 gene coding for red blood cell acid phosphatase is on chromosome 2. Show less
no PDF DOI: 10.1016/0006-291x(89)91623-9
ACP2
K W Lam, C Y Li, L T Yam +3 more · 1989 · The Prostate · Wiley · added 2026-04-24
A monoclonal antibody with high affinity to acid phosphatase isoenzyme 2 (Ab-AcP2) was selected to examine its binding to different normal and tumor tissues using the indirect immunohistochemical meth Show more
A monoclonal antibody with high affinity to acid phosphatase isoenzyme 2 (Ab-AcP2) was selected to examine its binding to different normal and tumor tissues using the indirect immunohistochemical method. Both mature prostatic epithelial cells in the prostate and the highly dedifferentiated prostatic cancer cells in the bone marrow showed strong binding to the antibody. Among nonprostatic tissues, only bone marrow, breast, and kidney showed trace staining in some specimens. The specificity of Ab-AcP2 was much better than that of the polyclonal antibody to acid phospatase previously reported. When the antibody to the prostate-specific antigen (Ab-PSA) was used, weak background staining was often encountered, and weak to moderate stains were seen in the prostatic stroma, bone marrow, lung, skin, and melanoma. Show less
no PDF DOI: 10.1002/pros.2990150103
ACP2