ALDH4A1 knockdown inhibits in vitro atherosclerosis model by modulating Trim28-mediated P53 ubiquitination to suppress ferroptosis of vascular endothelial cells.

IF 1.7 4区 生物学 Q4 CELL BIOLOGY
Xiaoyong Xu, Xiaorong Xu, Wangzhuo Zhou, Wenwen Wang, Bin Lin, Xumei Huang, Shan Chen
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引用次数: 0

Abstract

Atherosclerosis (AS) is a primary contributor to cardiovascular disease (CVD), resulting in high mortality. Ferroptosis, triggered by lipid peroxidation, contribute to AS development. This study aimed to explore the regulatory relationships of Trim28, ALDH4A1, P53, and ferroptosis in the pathogenesis of AS. The AS cell model was constructed by treating HUVECs with oxidized low-density lipoprotein (ox-LDL). The roles of Trim28 overexpression in regulating AS development, P53 ubiquitination, and ferroptosis of vascular endothelial cells were investigated. Moreover, the interaction between Trim28 and ALDH4A1 was explored, followed by analyzing the effect of ALDH4A1 knockdown on P53 ubiquitination. Additionally, the impact of ALDH4A1 knockdown and P53 overexpression on AS development and ferroptosis of vascular endothelial cells was explored. Reduced Trim28 expression and increased ALDH4A1 and P53 expression were observed in HUVECs after treatment with ox-LDL. Overexpression of Trim28 mitigated AS development, promoted P53 ubiquitination, and suppressed ferroptosis of vascular endothelial cells. Additionally, ALDH4A1 could interact with Trim28, and ALDH4A1 knockdown enhanced P53 ubiquitination. Moreover, P53 overexpression reversed the inhibitory effects of ALDH4A1 knockdown on AS development and ferroptosis of vascular endothelial cells. Our findings indicate that Trim28, ALDH4A1, and P53 may be key regulators in AS development. Silencing of ALDH4A1 may alleviate AS development through regulating Trim28-mediated P53 ubiquitination to inhibit ferroptosis of vascular endothelial cells. These molecules may by promising therapeutic targets for AS and related CVD.

ALDH4A1敲低通过调节trim28介导的P53泛素化抑制血管内皮细胞铁凋亡,抑制体外动脉粥样硬化模型。
动脉粥样硬化(AS)是心血管疾病(CVD)的主要诱因,导致高死亡率。脂质过氧化引发的铁下垂有助于AS的发展。本研究旨在探讨Trim28、ALDH4A1、P53和铁下垂在AS发病中的调控关系。用氧化低密度脂蛋白(ox-LDL)处理HUVECs,构建AS细胞模型。研究了Trim28过表达在AS发育、P53泛素化和血管内皮细胞铁凋亡中的作用。此外,我们还探讨了Trim28与ALDH4A1的相互作用,并分析了ALDH4A1敲低对P53泛素化的影响。此外,我们还探讨了ALDH4A1敲低和P53过表达对AS发展和血管内皮细胞铁下垂的影响。ox-LDL治疗后,HUVECs中Trim28表达降低,ALDH4A1和P53表达升高。过表达Trim28可减轻AS的发展,促进P53泛素化,抑制血管内皮细胞的铁下垂。此外,ALDH4A1可与Trim28相互作用,敲低ALDH4A1可增强P53泛素化。此外,P53过表达逆转了ALDH4A1敲低对AS发展和血管内皮细胞铁下垂的抑制作用。我们的研究结果表明Trim28, ALDH4A1和P53可能是AS发展的关键调节因子。ALDH4A1的沉默可能通过调节trim28介导的P53泛素化来抑制血管内皮细胞的铁下垂,从而减轻AS的发展。这些分子可能是AS和相关CVD的有希望的治疗靶点。
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来源期刊
CiteScore
3.70
自引率
4.80%
发文量
96
审稿时长
3 months
期刊介绍: In Vitro Cellular & Developmental Biology - Animal is a journal of the Society for In Vitro Biology (SIVB). Original manuscripts reporting results of research in cellular, molecular, and developmental biology that employ or are relevant to organs, tissue, tumors, and cells in vitro will be considered for publication. Topics covered include: Biotechnology; Cell and Tissue Models; Cell Growth/Differentiation/Apoptosis; Cellular Pathology/Virology; Cytokines/Growth Factors/Adhesion Factors; Establishment of Cell Lines; Signal Transduction; Stem Cells; Toxicology/Chemical Carcinogenesis; Product Applications.
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