šŸ‘¤ Rebeca Kawahara

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4
Articles
4
Name variants
Also published as: Eigo Kawahara, Katsumasa Kawahara, Takashi Kawahara
articles
Sahoko Ninomiya, Yukari Ishiguro, Hisashi Hasumi +8 more Ā· 2025 Ā· Cancers Ā· MDPI Ā· added 2026-04-24
šŸ“„ PDF DOI: 10.3390/cancers17213588
FGFR1
Eigo Kawahara, Mitsuki Azuma, Hiroyuki Nagashima +10 more Ā· 2022 Ā· Journal of immunology (Baltimore, Md. : 1950) Ā· added 2026-04-24
TNF receptor-associated factor 5 (TRAF5) restrains early signaling activity of the IL-6 receptor in naive CD4
no PDF DOI: 10.4049/jimmunol.2001358
IL27
Rebeca Kawahara, Saulo Recuero, Fabio C S Nogueira +5 more Ā· 2019 Ā· Proteomics Ā· Wiley Ā· added 2026-04-24
The histology-based Gleason score (GS) of prostate cancer (PCa) tissue biopsy is the most accurate predictor of disease aggressiveness and an important measure to guide treatment strategies and patien Show more
The histology-based Gleason score (GS) of prostate cancer (PCa) tissue biopsy is the most accurate predictor of disease aggressiveness and an important measure to guide treatment strategies and patient management. The variability associated with PCa tumor sampling and the subjective determination of the GS are challenges that limit accurate diagnostication and prognostication. Thus, novel molecular signatures are needed to distinguish between indolent and aggressive forms of PCa for better patient management and outcomes. Herein, label-free LC-MS/MS proteomics is used to profile the proteome of 50 PCa tissues spanning five grade groups (nĀ =Ā 10 per group) relative to tissues from individuals with benign prostatic hyperplasia (BPH). Over 2000 proteins are identified albeit at different levels between and within the patient groups, revealing biological processes associated with specific grades. A panel of 11 prostate-derived proteins including IGKV3D-20, RNASET2, TACC2, ANXA7, LMOD1, PRCP, GYG1, NDUFV1, H1FX, APOBEC3C, and CTSZ display the potential to stratify patients from low and high PCa grade groups. Parallel reaction monitoring of the same sample cohort validate the differential expression of LMOD1, GYG1, IGKV3D-20, and RNASET2. The four proteins associated with low and high PCa grades reported here warrant further exploration as candidate biomarkers for PCa aggressiveness. Show less
no PDF DOI: 10.1002/pmic.201900174
LMOD1
Junji Yamauchi, Yuki Miyamoto, Hajime Hamasaki +9 more Ā· 2011 Ā· The Journal of neuroscience : the official journal of the Society for Neuroscience Ā· Society for Neuroscience Ā· added 2026-04-24
In development of the peripheral nervous system, Schwann cells proliferate, migrate, and ultimately differentiate to form myelin sheath. In all of the myelination stages, Schwann cells continuously un Show more
In development of the peripheral nervous system, Schwann cells proliferate, migrate, and ultimately differentiate to form myelin sheath. In all of the myelination stages, Schwann cells continuously undergo morphological changes; however, little is known about their underlying molecular mechanisms. We previously cloned the dock7 gene encoding the atypical Rho family guanine-nucleotide exchange factor (GEF) and reported the positive role of Dock7, the target Rho GTPases Rac/Cdc42, and the downstream c-Jun N-terminal kinase in Schwann cell migration (Yamauchi et al., 2008). We investigated the role of Dock7 in Schwann cell differentiation and myelination. Knockdown of Dock7 by the specific small interfering (si)RNA in primary Schwann cells promotes dibutyryl cAMP-induced morphological differentiation, indicating the negative role of Dock7 in Schwann cell differentiation. It also results in a shorter duration of activation of Rac/Cdc42 and JNK, which is the negative regulator of myelination, and the earlier activation of Rho and Rho-kinase, which is the positive regulator of myelination. To obtain the in vivo evidence, we generated Dock7 short hairpin (sh)RNA transgenic mice. They exhibited a decreased expression of Dock7 in the sciatic nerves and enhanced myelin thickness, consistent with in vitro observation. The effects of the in vivo knockdown on the signals to Rho GTPases are similar to those of the in vitro knockdown. Collectively, the signaling through Dock7 negatively regulates Schwann cell differentiation and the onset of myelination, demonstrating the unexpected role of Dock7 in the interplay between Schwann cell migration and myelination. Show less
no PDF DOI: 10.1523/JNEUROSCI.2738-11.2011
DOCK7