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Downregulation of SPIN90 promotes fibroblast activation via periostin-FAK-ROCK signaling module

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Abstract
Alterations in mechanical properties in the extracellular matrix are modulated by myofibroblasts and are required for progressive fibrotic diseases. Recently, we reported that fibroblasts depleted of SPIN90 showed enhanced differentiation into myofibroblasts via increased acetylation of microtubules in the soft matrix; the mechanisms of the underlying signaling network, however, remain unclear. In this study, we determine the effect of depletion of SPIN90 on FAK/ROCK signaling modules. Transcriptome analysis of Spin90 KO mouse embryonic fibroblasts (MEF) and fibroblasts activated by TGF-beta revealed that Postn is the most significantly upregulated gene. Knockdown of Postn by small interfering RNA suppressed cell adhesion and myofibroblastic differentiation and downregulated FAK activity in Spin90 KO MEF. Our results indicate that SPIN90 depletion activates FAK/ROCK signaling, induced by Postn expression, which is critical for myofibroblastic differentiation on soft matrices mimicking the mechanical environment of a normal tissue.
Author(s)
You, EunaeHuh, Yun-HyunLee, JieunKo, PanseonJeong, JanghoKeum, SeulaKim, JaeguKwon, AhreumSong, Woo KeunRhee, Sangmyung
Issued Date
2019-06
Type
Article
DOI
10.1002/jcp.27600
URI
https://scholar.gist.ac.kr/handle/local/12704
Publisher
John Wiley & Sons Inc.
Citation
Journal of Cellular Physiology, v.234, no.6, pp.9216 - 9224
ISSN
0021-9541
Appears in Collections:
Department of Life Sciences > 1. Journal Articles
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