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Organ of Corti size is governed by yap/tead-mediated progenitor self-renewal
Journal article   Open access  Peer reviewed

Organ of Corti size is governed by yap/tead-mediated progenitor self-renewal

K. Gnedeva, X. Wang, M. M. McGovern, M. Barton, L. Tao, T. Trecek, T. O. Monroe, J. Llamas, W. Makmura, J. F. Martin, …
Proceedings of the National Academy of Sciences of the United States of America, Vol.117(24), pp.13552-13561
2020

Abstract

Hippo signaling pathway Inner ear Organ of corti Taz Yap transcription factor transcription factor Sox2 transcription factor Tead transcription factor YAP unclassified drug cell cycle protein protein binding signal transducing adaptor protein Sox2 protein, mouse transcription factor Sox Yap protein, mouse animal cell animal tissue Article auditory sensory epithelium cell cycle cell cycle reentry cell loss cell proliferation cell regeneration cell size chromatin immunoprecipitation controlled study Corti organ down regulation gene gene loss gene targeting hair cell immunohistochemistry mouse neuroepithelium nonhuman priority journal protein degradation RNA sequence RNA sequencing sensory nerve cell stem cell upregulation vestibular sensory epithelium Yap5S gene animal cell differentiation cell self-renewal cochlear hair cell cytology embryology gene expression regulation genetics metabolism Adaptor Proteins, Signal Transducing Animals Cell Cycle Proteins Cell Self Renewal Gene Expression Regulation, Developmental Hair Cells, Auditory Mice SOXB1 Transcription Factors Stem Cells Transcription Factors
url
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85086683055&doi=10.1073%2fpnas.2000175117&partnerID=40&md5=a65e09e3bd7fe8381085f2d0d5b813abView
url
https://doi.org/10.1073/pnas.2000175117View
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