KLF13 promotes VSMCs phenotypic dedifferentiation by directly binding to the SM22α promoter

Author:

Yuan Xiaofan1ORCID,Jiang Chuan2,Xue Yuzhou3,Guo Fuqiang4,Luo Minghao5,Guo Lei4,Gao Yang1,Yuan Tongling1,Xu Hui1,Chen Hong1

Affiliation:

1. Department of General Practice Sichuan Provincial People's Hospital, School of Medicine, University of Electronic Science and Technology of China Chengdu Sichuan China

2. Department of Neurosurgery The Southwest Medical University Luzhou Sichuan China

3. Department of Cardiology Peking University Third Hospital Beijing China

4. Department of Neurology Sichuan Provincial People's Hospital, School of Medicine, University of Electronic Science and Technology of China Chengdu Sichuan China

5. Department of Cardiology The First Affiliated Hospital of Chongqing Medical University Chongqing China

Abstract

AbstractKrüppel‐like factor 13 (KLF13), a zinc finger transcription factor, is considered as a potential regulator of cardiomyocyte differentiation and proliferation during heart morphogenesis. However, its precise role in the dedifferentiation of vascular smooth muscle cells (VSMCs) during atherosclerosis and neointimal formation after injury remains poorly understood. In this study, we investigated the relationship between KLF13 and SM22α expression in normal and atherosclerotic plaques by bioanalysis, and observed a significant increase in KLF13 levels in the atherosclerotic plaques of both human patients and ApoE−/− mice. Knockdown of KLF13 was found to ameliorate intimal hyperplasia following carotid artery injury. Furthermore, we discovered that KLF13 directly binds to the SM22α promoter, leading to the phenotypic dedifferentiation of VSMCs. Remarkably, we observed a significant inhibition of platelet‐derived growth factor BB‐induced VSMCs dedifferentiation, proliferation, and migration when knocked down KLF13 in VSMCs. This inhibitory effect of KLF13 knockdown on VCMC function was, at least in part, mediated by the inactivation of p‐AKT signaling in VSMCs. Overall, our findings shed light on a potential therapeutic target for treating atherosclerotic lesions and restenosis after vascular injury.

Publisher

Wiley

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1. Corrigendum;Journal of Cellular Physiology;2024-06-03

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