Quaking–cZFP609 Axis Remedies Aberrant Plasticity of Vascular Smooth Muscle Cells via Mediating Platelet-Derived Growth Factor Receptor β Degradation

IF 10.7 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
MedComm Pub Date : 2025-04-16 DOI:10.1002/mco2.70167
Yong-Qing Dou, Xiao-Yun Zhang, Rui-Juan Guo, Xiao-Fu Huang, Yu Song, Xin-Long Liu, Jie Shi, Fan-Qin Li, Dan-Dan Zhang, Peng Kong, Lei Nie, Han Li, Fan Zhang, Mei Han
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Abstract

Vascular smooth muscle cell (VSMC) plasticity is crucial for the repair after vascular injury. However, the high plasticity of VSMCs may make them transform into pathogenic phenotypes. Here, we show that VSMCs overexpressing Sirtuin 1 (SIRT1) exhibit a reduced phenotypic plasticity in the context of platelet-derived growth factor (PDGF)-BB treatment. SIRT1 activated Quaking (QKI)–cZFP609 axis is involved in the plasticity regulation in the VSMCs. Mechanically, SIRT1 deacetylates K133 and K134 of QKI and mediates its activation. Activated QKI binds the QKI response elements located in the upstream and downstream of the cZFP609-forming exons in ZFP609 pre-mRNA to mediate cZFP609 production. Furthermore, the acetylation of QKI is increased by inhibiting SIRT1 with the selective and potent inhibitor EX527 or deletion of SIRT1, accompanied with parallel decrease in cZFP609 formation. Final, we identify that cZFP609 directs PDGF receptor (PDGFR)β sorting into endosomal/lysosomal pathway and degradation by bridging PDGFRβ and Rab7, resulted in attenuating Raf–MEK–ERK cascade activation downstream of PDGFRβ signaling. Overexpression of cZFP609 remedies aberrant plasticity and overproliferation of VSMCs, and ameliorates neointimal formation. Together, these results highlight that modulating the QKI–cZFP609 axis may help propel repair without stenosis as a therapeutic strategy in vascular injury.

Abstract Image

颤- czfp609轴通过介导血小板源性生长因子受体β降解治疗血管平滑肌细胞可塑性异常
血管平滑肌细胞(VSMC)的可塑性对血管损伤后的修复至关重要。然而,VSMCs的高可塑性可能使其转化为致病性表型。在这里,我们发现过表达Sirtuin 1 (SIRT1)的VSMCs在血小板衍生生长因子(PDGF)-BB治疗的背景下表现出表型可塑性降低。SIRT1激活的颤振(QKI) -cZFP609轴参与VSMCs的可塑性调节。机械上,SIRT1使QKI的K133和K134去乙酰化并介导其激活。激活的QKI结合位于ZFP609前mrna中cZFP609形成外显子上下游的QKI响应元件,介导cZFP609的产生。此外,QKI的乙酰化通过选择性强效抑制剂EX527抑制SIRT1或SIRT1的缺失而增加,同时cZFP609的形成也相应减少。最后,我们发现cZFP609引导PDGFR受体(PDGFR)β进入内体/溶酶体途径,并通过桥接PDGFRβ和Rab7进行降解,从而减弱PDGFRβ信号下游的Raf-MEK-ERK级联激活。过表达cZFP609可改善vsmc的异常可塑性和过度增殖,改善新生内膜的形成。总之,这些结果强调,调节QKI-cZFP609轴可能有助于促进血管损伤的无狭窄修复作为一种治疗策略。
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来源期刊
CiteScore
6.70
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0.00%
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10 weeks
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