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CD9 regulates keratinocyte differentiation and motility by recruiting E-cadherin to the plasma membrane and activating the PI3K/Akt pathway.

Authors :
Jiang, Xupin
Teng, Miao
Ji, Ran
Zhang, Dongxia
Zhang, Ze
Lv, Yanling
Zhang, Qiong
Zhang, Jiaping
Huang, Yuesheng
Source :
BBA - Molecular Cell Research. Feb2020, Vol. 1867 Issue 2, pN.PAG-N.PAG. 1p.
Publication Year :
2020

Abstract

During keratinocyte stratification and wound healing, keratinocytes undergo a switch between differentiation and motility. However, limited knowledge exists on the mechanisms of the switch. We have previously demonstrated that the expression of CD9 was changed in different wound stages and involved in the regulation of keratinocyte migration. In this study, we showed that CD9 expression was increased in both human and mouse keratinocytes undergoing differentiation. CD9 overexpression in keratinocytes stimulated terminal differentiation and reduced cell motility. CD9 silencing inhibited calcium-induced keratinocyte differentiation and increased cell motility. Furthermore, CD9 overexpression recruited E-cadherin to the plasma membrane and subsequently activated PI3K/Akt signaling, while CD9 knockdown inhibited the recruitment of E-cadherin to the plasma membrane and PI3K/Akt activation. Importantly, silencing E-cadherin expression or inhibiting PI3K/Akt signaling reversed CD9 overexpression-induced differentiation and -reduced motility. These results demonstrate that CD9 acts as an important node that regulates keratinocyte differentiation and motility. The recruitment of E-cadherin to the plasma membrane and activation of the PI3K/Akt signaling pathway mediated by CD9 play an important role in these processes. • CD9 expression is increased in keratinocytes undergoing differentiation. • CD9 acts as an important node that regulates keratinocyte differentiation and motility. • CD9 recruits E-cadherin to the plasma membrane and activates PI3K/Akt signaling. • E-cadherin/PI3K/Akt pathway is involved in CD9-regulated keratinocyte differentiation and motility. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01674889
Volume :
1867
Issue :
2
Database :
Academic Search Index
Journal :
BBA - Molecular Cell Research
Publication Type :
Academic Journal
Accession number :
140845987
Full Text :
https://doi.org/10.1016/j.bbamcr.2019.118574