Logo image
Sign in
POU4F3 pioneer activity enables ATOH1 to drive diverse mechanoreceptor differentiation through a feed-forward epigenetic mechanism
Journal article   Peer reviewed

POU4F3 pioneer activity enables ATOH1 to drive diverse mechanoreceptor differentiation through a feed-forward epigenetic mechanism

H. V. Yu, L. Tao, J. Llamas, X. Wang, J. D. Nguyen, T. Trecek and N. Segil
Proceedings of the National Academy of Sciences of the United States of America, Vol.118(29)
2021

Abstract

Feed-forward epigenetic transcriptional control | ATOH1 and POU4F3 | inner ear hair cells | Merkel cells | mechanoreceptor evolution basic helix loop helix transcription factor transcription factor ATOH1 transcription factor GATA 3 transcription factor POU4F3 transcription factor Six1 unclassified drug Atoh1 protein, mouse homeodomain protein Pou4f3 protein, mouse animal cell animal experiment Article binding site cell differentiation cell lineage cell maturation chromatin controlled study embryo embryo development enhancer region epidermis epigenetics feed forward neural network gene loss gene regulatory network hair cell (inner ear) histone modification mechanoreceptor mechanotransduction Merkel cell molecular evolution mouse nonhuman nuclear reprogramming Pou4f3 gene promoter region protein binding protein DNA binding protein expression protein function protein motif regulatory sequence RNA sequencing stem cell structure analysis transcription regulation upregulation animal cochlea cochlear hair cell cytology genetic epigenesis genetics human metabolism Animals Basic Helix-Loop-Helix Transcription Factors Enhancer Elements, Genetic Epigenesis, Genetic Hair Cells, Auditory Homeodomain Proteins Humans Mechanoreceptors Merkel Cells Mice Transcription Factor Brn-3C
url
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85110731089&doi=10.1073%2fpnas.2105137118&partnerID=40&md5=fb076d99aa99b602f103d106e4bf17b8View

Metrics

1 Record Views

Details