VEGFR3 mitigates hypertensive nephropathy by enhancing mitophagy via regulating crotonylation of HSPA1L.

IF 8.2 2区 生物学 Q1 CELL BIOLOGY Cell Communication and Signaling Pub Date : 2025-01-28 DOI:10.1186/s12964-025-02045-x
Qiuwen Wu, Jiaxin Fu, Bin Zhu, Wei Meng, Jingyi Ma, Ying Lv, Wenqi Zhao, Fan Wang, Jingjin Liu, Yongshun Wang, Cong Peng, Shuo Zhang
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Abstract

Oxidative stress-associated proximal tubular cells (PTCs) damage is an important pathogenesis of hypertensive renal injury. We previously reported the protective effect of VEGFR3 in salt-sensitive hypertension. However, the specific mechanism underlying the role of VEGFR3 in kidney during the overactivation of the renin-angiotensin-aldosterone system remains unclear. In the present study, hypertensive nephropathy was established by angiotensin II (Ang II). We found that VEGFR3 was highly increased in PTCs of Ang II-infused mice. Activation of VEGFR3 mitigated renal dysfunction, pathological damage, and oxidative stress in Ang II-induced hypertensive mice. Moreover, we found that VEGFR3 restored mitophagy deficiency induced by Ang II both in vivo and in vitro to alleviate oxidative stress injury in PTCs. Furthermore, in vitro experiment demonstrated that VEGFR3 improved abnormal mitophagy by enhancing PARKIN mitochondrial translocation. LC-MS/MS and Co-IP assays identified HSPA1L as the interacted protein of VEGFR3, which promoted the mitochondrial translocation of PARKIN. Mechanistically, VEGFR3 disorder domain bound to HSPA1L, and crotonylation modification of HSPA1L at K130 by VEGFR3 was required for mitophagy regulation in the context of Ang II-induced PTCs. Finally, the protective effect of VEGFR3 on mitophagy and oxidative stress were attenuated by transfection K130 (HSPA1L-K130R) mutant plasmid in vivo and in vitro. These findings indicated that VEGFR3 alleviated oxidative stress by promoting PARKIN-dependent mitophagy pathway via regulating HSPA1L crotonylation at K130 site in Ang II-induced PTCs, which provided a mechanistic basis for the therapeutic target in hypertensive renal injury.

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VEGFR3通过调节HSPA1L的crotonylation促进线粒体自噬从而减轻高血压肾病。
氧化应激相关的近端肾小管细胞损伤是高血压肾损伤的重要发病机制。我们之前报道了VEGFR3在盐敏感性高血压中的保护作用。然而,在肾素-血管紧张素-醛固酮系统过度激活过程中,VEGFR3在肾脏中作用的具体机制尚不清楚。在本研究中,高血压肾病是由血管紧张素II (Ang II)建立的,我们发现在注入Ang II的小鼠ptc中VEGFR3高度升高。在angii诱导的高血压小鼠中,VEGFR3的激活减轻了肾功能障碍、病理损伤和氧化应激。此外,我们发现VEGFR3在体内和体外均能恢复Ang II诱导的线粒体自噬缺陷,从而减轻ptc的氧化应激损伤。此外,体外实验表明,VEGFR3通过增强PARKIN线粒体易位来改善异常的线粒体自噬。LC-MS/MS和Co-IP检测发现HSPA1L是VEGFR3的相互作用蛋白,促进了PARKIN的线粒体易位。在机制上,VEGFR3紊乱结构域与HSPA1L结合,并且在Ang ii诱导的ptc中,VEGFR3在K130位点对HSPA1L进行crotonylation修饰是调节自噬的必要条件。最后,通过转染K130 (HSPA1L-K130R)突变质粒,在体内和体外减弱VEGFR3对线粒体自噬和氧化应激的保护作用。上述结果表明,VEGFR3通过调控Ang ii诱导的ptc中K130位点HSPA1L的crotonylation,促进parkin依赖性线粒体自噬通路,从而缓解氧化应激,为其治疗靶点高血压肾损伤提供了机制依据。
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来源期刊
CiteScore
11.00
自引率
0.00%
发文量
180
期刊介绍: Cell Communication and Signaling (CCS) is a peer-reviewed, open-access scientific journal that focuses on cellular signaling pathways in both normal and pathological conditions. It publishes original research, reviews, and commentaries, welcoming studies that utilize molecular, morphological, biochemical, structural, and cell biology approaches. CCS also encourages interdisciplinary work and innovative models, including in silico, in vitro, and in vivo approaches, to facilitate investigations of cell signaling pathways, networks, and behavior. Starting from January 2019, CCS is proud to announce its affiliation with the International Cell Death Society. The journal now encourages submissions covering all aspects of cell death, including apoptotic and non-apoptotic mechanisms, cell death in model systems, autophagy, clearance of dying cells, and the immunological and pathological consequences of dying cells in the tissue microenvironment.
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