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KCNJ8/ABCC9-containing K-ATP channel modulates brain vascular smooth muscle development and neurovascular coupling

Authors :
Koji Ando
Lei Tong
Di Peng
Elisa Vázquez-Liébanas
Hirohisa Chiyoda
Liqun He
Jianping Liu
Koichi Kawakami
Naoki Mochizuki
Shigetomo Fukuhara
Jaime Grutzendler
Christer Betsholtz
Source :
Developmental cell. 57(11)
Publication Year :
2021

Abstract

Loss- or gain-of-function mutations in ATP-sensitive potassium channel (K-ATP)-encoding genes, KCNJ8 and ABCC9, cause human central nervous system disorders with unknown pathogenesis. Here, using mice, zebrafish, and cell culture models, we investigated cellular and molecular causes of brain dysfunctions derived from altered K-ATP channel function. We show that genetic/chemical inhibition or activation of KCNJ8/ABCC9-containing K-ATP channel function leads to brain-selective suppression or promotion of arterial/arteriolar vascular smooth muscle cell (VSMC) differentiation, respectively. We further show that brain VSMCs develop from KCNJ8/ABCC9-containing K-ATP channel-expressing mural cell progenitor and that K-ATP channel cell autonomously regulates VSMC differentiation through modulation of intracellular Ca

Details

ISSN :
18781551
Volume :
57
Issue :
11
Database :
OpenAIRE
Journal :
Developmental cell
Accession number :
edsair.doi.dedup.....157e1667f0ed5c3ca5b0dd794aeec0a9