👤 Min-Gyu Yoo

🔍 Search 📋 Browse 🏷️ Tags ❤️ Favourites ➕ Add 🧬 Extraction
62
Articles
48
Name variants
Also published as: Byong Chul Yoo, Byung Moo Yoo, Byunggil Yoo, Changwon Yoo, Chong Woo Yoo, Dae Hoon Yoo, Eun-Seon Yoo, Eunsu Yoo, H J Yoo, Hae Young Yoo, Han-Wook Yoo, Heejin Yoo, Hye Jin Yoo, Hyun Ju Yoo, Hyun Jung Yoo, Hyung-Jin Yoo, Hyuntae Yoo, Jae Young Yoo, Jaeeun Yoo, Jaehyuk Yoo, Jaein Yoo, Je-Ok Yoo, Jeasang Yoo, Jeong Eun Yoo, Jeong-Ah Yoo, Jeongwoo Yoo, Ji-Seung Yoo, Ji-Sung Yoo, Jin Yoo, Jiyun Yoo, Joo-Yeon Yoo, Keon Hee Yoo, Kyeong-Won Yoo, Kyung Hyun Yoo, Lindsey G Yoo, Nam Jin Yoo, Sang-Won Yoo, Seung Wan Yoo, Seung-Hee Yoo, Seung-Min Yoo, Seungyeul Yoo, Soo Ji Yoo, Taesun Yoo, Y Yoo, Yeong Du Yoo, Yeong-Min Yoo, Yung-Choon Yoo
articles
Jinjoo Kang, Jaehyuk Yoo, Sunju Lee +10 more · 2010 · Blood · added 2026-04-24
Arteriovenous-lymphatic endothelial cell fates are specified by the master regulators, namely, Notch, COUP-TFII, and Prox1. Whereas Notch is expressed in the arteries and COUP-TFII in the veins, the l Show more
Arteriovenous-lymphatic endothelial cell fates are specified by the master regulators, namely, Notch, COUP-TFII, and Prox1. Whereas Notch is expressed in the arteries and COUP-TFII in the veins, the lymphatics express all 3 cell fate regulators. Previous studies show that lymphatic endothelial cell (LEC) fate is highly plastic and reversible, raising a new concept that all 3 endothelial cell fates may co-reside in LECs and a subtle alteration can result in a reprogramming of LEC fate. We provide a molecular basis verifying this concept by identifying a cross-control mechanism among these cell fate regulators. We found that Notch signal down-regulates Prox1 and COUP-TFII through Hey1 and Hey2 and that activated Notch receptor suppresses the lymphatic phenotypes and induces the arterial cell fate. On the contrary, Prox1 and COUP-TFII attenuate vascular endothelial growth factor signaling, known to induce Notch, by repressing vascular endothelial growth factor receptor-2 and neuropilin-1. We show that previously reported podoplanin-based LEC heterogeneity is associated with differential expression of Notch1 in human cutaneous lymphatics. We propose that the expression of the 3 cell fate regulators is controlled by an exquisite feedback mechanism working in LECs and that LEC fate is a consequence of the Prox1-directed lymphatic equilibrium among the cell fate regulators. Show less
no PDF DOI: 10.1182/blood-2009-11-252270
HEY2
Bon-Kyoung Koo, Hyoung-Soo Lim, Ran Song +11 more · 2005 · Development (Cambridge, England) · added 2026-04-24
The Delta-Notch signaling pathway is an evolutionarily conserved intercellular signaling mechanism essential for cell fate specification. Mind bomb 1 (Mib1) has been identified as a ubiquitin ligase t Show more
The Delta-Notch signaling pathway is an evolutionarily conserved intercellular signaling mechanism essential for cell fate specification. Mind bomb 1 (Mib1) has been identified as a ubiquitin ligase that promotes the endocytosis of Delta. We now report that mice lacking Mib1 die prior to embryonic day 11.5, with pan-Notch defects in somitogenesis, neurogenesis, vasculogenesis and cardiogenesis. The Mib1-/- embryos exhibit reduced expression of Notch target genes Hes5, Hey1, Hey2 and Heyl, with the loss of N1icd generation. Interestingly, in the Mib1-/- mutants, Dll1 accumulated in the plasma membrane, while it was localized in the cytoplasm near the nucleus in the wild types, indicating that Mib1 is essential for the endocytosis of Notch ligand. In accordance with the pan-Notch defects in Mib1-/- embryos, Mib1 interacts with and regulates all of the Notch ligands, jagged 1 and jagged 2, as well as Dll1, Dll3 and Dll4. Our results show that Mib1 is an essential regulator, but not a potentiator, for generating functional Notch ligands to activate Notch signaling. Show less
no PDF DOI: 10.1242/dev.01922
HEY2