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Role of PCK2 in the proliferation of vascular smooth muscle cells in neointimal hyperplasiaopen access

Authors
Ko, Dai SikKang, JunhoHeo, Hye JinKim, Eun KyoungKim, KihunKang, Jin MoJung, YunJaeBaek, Seung EunKim, Yun Hak
Issue Date
Aug-2022
Publisher
IVYSPRING INT PUBL
Keywords
vascular smooth muscle cell proliferation; neointimal hyperplasia; atherosclerosis; PCK2; Akt-FoxO-PCK2 pathway
Citation
INTERNATIONAL JOURNAL OF BIOLOGICAL SCIENCES, v.18, no.13, pp.5154 - 5167
Journal Title
INTERNATIONAL JOURNAL OF BIOLOGICAL SCIENCES
Volume
18
Number
13
Start Page
5154
End Page
5167
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/85568
DOI
10.7150/ijbs.75577
ISSN
1449-2288
Abstract
Vascular smooth muscle cell (VSMC) proliferation is a hallmark of neointimal hyperplasia (NIH) in atherosclerosis and restenosis post-balloon angioplasty and stent insertion. Although numerous cytotoxic and cytostatic therapeutics have been developed to reduce NIH, it is improbable that a multifactorial disease can be successfully treated by focusing on a preconceived hypothesis. We, therefore, aimed to identify key molecules involved in NIH via a hypothesis-free approach. We analyzed four datasets (GSE28829, GSE43292, GSE100927, and GSE120521), evaluated differentially expressed genes (DEGs) in wire-injured femoral arteries of mice, and determined their association with VSMC proliferation in vitro. Moreover, we performed RNA sequencing on carboxykinase 2 (PCK2) knockdown and investigated pathways associated with PCK2. Finally, we assessed NIH formation in Pck2 knockout (KO) mice by wire injury and identified PCK2 expression in human femoral artery atheroma. Among six DEGs, only PCK2 and RGS1 showed identical expression patterns between wire-injured femoral arteries of mice and gene expression datasets. PDGF-induced VSMC proliferation was attenuated when hVSMCs were transfected with PCK2 siRNA. RNA sequencing of PCK2 siRNA-treated hVSMCs revealed the involvement of the Akt-FoxO-PCK2 pathway in VSMC proliferation via Akt2, Akt3, FoxO1, and FoxO3. Additionally, NIH was attenuated in the wire-injured femoral artery of Pck2-KO mice and PCK2 was expressed in human femoral atheroma. PCK2 regulates VSMC proliferation in response to vascular injury via the Akt-FoxO-PCK2 pathway. Targeting PCK2, a downstream signaling mediator of VSMC proliferation, may be a novel therapeutic approach to modulate VSMC proliferation in atherosclerosis.
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