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Differential regulation of hair cell actin cytoskeleton mediated by SRF and MRTFB

Differential regulation of hair cell actin cytoskeleton mediated by SRF and MRTFB

FromPaperPlayer biorxiv cell biology


Differential regulation of hair cell actin cytoskeleton mediated by SRF and MRTFB

FromPaperPlayer biorxiv cell biology

ratings:
Length:
20 minutes
Released:
Jun 26, 2023
Format:
Podcast episode

Description

Link to bioRxiv paper:
http://biorxiv.org/cgi/content/short/2023.06.26.546585v1?rss=1

Authors: Wu, H., Zhou, L.-Y., Jin, C.-X., Wang, W.-X., Song, L., Shin, J.-B., Du, T.-T.

Abstract:
The MRTF-SRF pathway has been extensively studied for its crucial role in driving the expression of a large number of genes involved in actin cytoskeleton of various cell types. However, the specific contribution of MRTF-SRF in hair cells remains unknown. In this study, we showed that hair cell-specific deletion of Srf or Mrtfb, but not Mrtfa, leads to similar defects in the development of stereocilia dimensions and the maintenance of cuticular plate integrity. We used FACS-based hair cell RNA-seq analysis to investigate the mechanistic underpinnings of the changes observed in Srf and Mrtfb mutants, respectively. Interestingly, the transcriptome analysis revealed distinct profiles of genes regulated by Srf and Mrtfb, suggesting different transcriptional regulation mechanisms of actin cytoskeleton activities mediated by Srf and Mrtfb. Exogenous delivery of calponin 2 using Adeno-associated virus transduction in Srf mutants partially rescued the impairments of stereocilia dimensions and the F-actin intensity of cuticular plate, suggesting the involvement of Cnn2, as an Srf downstream target, in regulating the hair bundle morphology and cuticular plate actin cytoskeleton organization. Our study uncovers, for the first time, the unexpected differential transcriptional regulation of actin cytoskeleton mediated by Srf and Mrtfb in hair cells, and also demonstrates the critical role of SRF-CNN2 in modulating actin dynamics of the stereocilia and cuticular plate, providing new insights into the molecular mechanism underlying hair cell development and maintenance.

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Podcast created by Paper Player, LLC
Released:
Jun 26, 2023
Format:
Podcast episode

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