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Cell-cell contacts via N-cadherin induce a regulatory renin secretory phenotype in As4.1 cells

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Abstract
The lack of a clonal renin-secreting cell line has greatly hindered the investigation of the regulatory mechanisms of renin secretion at the cellular, biochemical, and molecular levels. In the present study, we investigated whether it was possible to induce phenotypic switching of the renin-expressing clonal cell line As4.1 from constitutive inactive renin secretion to regulated active renin secretion. When grown to postconfluence for at least two days in media containing fetal bovine serum or insulin-like growth factor-1, the formation of cell-cell contacts via N-cadherin triggered downstream cellular signaling cascades and activated smooth muscle-specific genes, culminating in phenotypic switching to a regulated active renin secretion phenotype, including responding to the key stimuli of active renin secretion. With the use of phenotype-switched As4.1 cells, we provide the first evidence that active renin secretion via exocytosis is regulated by phosphorylation/dephosphorylation of the 20 kDa myosin light chain. The molecular mechanism of phenotypic switching in As4.1 cells described here could serve as a working model for full phenotypic modulation of other secretory cell lines with incomplete phenotypes.
Author(s)
Jai Won ChangSoohyun KimEun Young LeeChae Hun LeemSuhn Hee KimChun Sik Park
Issued Date
2022
Type
Article
Keyword
MRTF-AMyosin light chainMyosin light chain phosohatase-1Myosin light-chain kinaseN-cadherinPhenotype switching
DOI
10.4196/kjpp.2022.26.6.479
URI
https://oak.ulsan.ac.kr/handle/2021.oak/14360
Publisher
KOREAN JOURNAL OF PHYSIOLOGY & PHARMACOLOGY
Language
영어
ISSN
1226-4512
Citation Volume
26
Citation Number
6
Citation Start Page
479
Citation End Page
499
Appears in Collections:
Medicine > Nursing
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