LONP1 alleviates ageing-related renal fibrosis by maintaining mitochondrial homeostasis

IF 5.3
Congxiao Zhang, Siman Shen, Li Xu, Man Li, Binyao Tian, Li Yao, Xinwang Zhu
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Abstract

Mitochondrial dysfunction is a pivotal event contributing to the development of ageing-related kidney disorders. Lon protease 1 (LONP1) has been reported to be responsible for ageing-related renal fibrosis; however, the underlying mechanism(s) of LONP1-driven kidney ageing with respect to mitochondrial disturbances remains to be further explored. The level of LONP1 was tested in the kidneys of aged humans and mice. Renal fibrosis and mitochondrial quality control were confirmed in the kidneys of aged mice. Effects of LONP1 silencing or overexpression on renal fibrosis and mitochondrial quality control were explored. In addition, N6-methyladenosine (m6A) modification and methyltransferase like 3 (METTL3) levels, the relationship between LONP1 and METTL3, and the impacts of METTL3 overexpression on mitochondrial functions were confirmed. Furthermore, the expression of insulin-like growth factor 2 mRNA binding protein 2 (IGF2BP2) and the regulatory effects of IGF2BP2 on LONP1 were confirmed in vitro. LONP1 expression was reduced in the kidneys of aged humans and mice, accompanied by renal fibrosis and mitochondrial dysregulation. Overexpression of LONP1 alleviated renal fibrosis and maintained mitochondrial homeostasis, while silencing of LONP1 had the opposite effect. Impaired METTL3-m6A signalling contributed at least in part to ageing-induced LONP1 modification, reducing subsequent degradation in an IGF2BP2-dependent manner. Moreover, METTL3 overexpression alleviated proximal tubule cell injury, preserved mitochondrial stability, inhibited LONP1 degradation, and protected mitochondrial functions. LONP1 mediates mitochondrial function in kidney ageing and that targeting LONP1 may be a potential therapeutic strategy for improving ageing-related renal fibrosis.

Abstract Image

LONP1 通过维持线粒体稳态缓解与衰老相关的肾脏纤维化
线粒体功能障碍是导致与衰老相关的肾脏疾病发展的关键事件。据报道,Lon蛋白酶1(LONP1)是导致与衰老有关的肾脏纤维化的元凶;然而,LONP1驱动肾脏衰老与线粒体紊乱有关的内在机制仍有待进一步探索。我们检测了老龄人类和小鼠肾脏中 LONP1 的水平。在老龄小鼠的肾脏中证实了肾脏纤维化和线粒体质量控制。探讨了 LONP1 沉默或过表达对肾脏纤维化和线粒体质量控制的影响。此外,还证实了N6-甲基腺苷(m6A)修饰和类似甲基转移酶3(METTL3)的水平、LONP1和METTL3之间的关系以及METTL3过表达对线粒体功能的影响。此外,体外实验还证实了胰岛素样生长因子 2 mRNA 结合蛋白 2(IGF2BP2)的表达以及 IGF2BP2 对 LONP1 的调控作用。LONP1 在衰老的人类和小鼠肾脏中表达减少,并伴有肾脏纤维化和线粒体失调。过量表达 LONP1 可减轻肾脏纤维化并维持线粒体平衡,而沉默 LONP1 则效果相反。METTL3-m6A信号受损至少部分导致了老化诱导的LONP1修饰,以IGF2BP2依赖的方式减少了随后的降解。此外,过表达 METTL3 可减轻近端肾小管细胞损伤、保持线粒体稳定性、抑制 LONP1 降解并保护线粒体功能。LONP1在肾脏衰老过程中介导线粒体功能,靶向LONP1可能是改善衰老相关肾脏纤维化的潜在治疗策略。
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来源期刊
CiteScore
11.50
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0.00%
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期刊介绍: The Journal of Cellular and Molecular Medicine serves as a bridge between physiology and cellular medicine, as well as molecular biology and molecular therapeutics. With a 20-year history, the journal adopts an interdisciplinary approach to showcase innovative discoveries. It publishes research aimed at advancing the collective understanding of the cellular and molecular mechanisms underlying diseases. The journal emphasizes translational studies that translate this knowledge into therapeutic strategies. Being fully open access, the journal is accessible to all readers.
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