Mechanosensitive channel Piezo1 is required for pulmonary artery smooth muscle cell proliferation

Jiyuan Chen(University of California San Diego), Marisela Rodriguez(University of California San Diego), Jinrui Miao(First Affiliated Hospital of Guangzhou Medical University), Jing Liao(First Affiliated Hospital of Guangzhou Medical University), Pritesh Jain(University of California San Diego), Manjia Zhao(University of California San Diego), Tengteng Zhao(University of California San Diego), Aleksandra Babicheva(University of California San Diego), Ziyi Wang(University of California San Diego), Sophia Parmisano(University of California San Diego), Ryan Powers(University of California San Diego), Moreen Matti(University of California San Diego), Cole Paquin(University of California San Diego), Zahra Soroureddin(University of California San Diego), John Y.-J. Shyy(University of California San Diego), Patricia A. Thistlethwaite(University of California San Diego), Ayako Makino(University of California San Diego), Jian Wang(University of California San Diego), Jason X.‐J. Yuan(University of California San Diego)
American Journal of Physiology-Lung Cellular and Molecular Physiology
March 23, 2022
Cited by 62Open Access
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Abstract

Concentric pulmonary vascular wall thickening due partially to increased pulmonary artery (PA) smooth muscle cell (PASMC) proliferation contributes to elevating pulmonary vascular resistance (PVR) in patients with pulmonary hypertension (PH). Although pulmonary vasoconstriction may be an early contributor to increasing PVR, the transition of contractile PASMCs to proliferative PASMCs may play an important role in the development and progression of pulmonary vascular remodeling in PH. A rise in cytosolic Ca 2+ concentration ([Ca 2+ ] cyt ) is a trigger for PASMC contraction and proliferation. Here, we report that upregulation of Piezo1, a mechanosensitive cation channel, is involved in the contractile-to-proliferative phenotypic transition of PASMCs and potential development of pulmonary vascular remodeling. By comparing freshly isolated PA (contractile PASMCs) and primary cultured PASMCs (from the same rat) in a growth medium (proliferative PASMCs), we found that Piezo1, Notch2/3, and CaSR protein levels were significantly higher in proliferative PASMCs than in contractile PASMCs. Upregulated Piezo1 was associated with an increase in expression of PCNA, a marker for cell proliferation, whereas downregulation (with siRNA) or inhibition (with GsMTx4) of Piezo1 attenuated PASMC proliferation. Furthermore, Piezo1 in the remodeled PA from rats with experimental PH was upregulated compared with PA from control rats. These data indicate that PASMC contractile-to-proliferative phenotypic transition is associated with the transition or adaptation of membrane channels and receptors. Upregulated Piezo1 may play a critical role in PASMC phenotypic transition and PASMC proliferation. Upregulation of Piezo1 in proliferative PASMCs may likely be required to provide sufficient Ca 2+ to assure nuclear/cell division and PASMC proliferation, contributing to the development and progression of pulmonary vascular remodeling in PH.


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