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线粒体钙单向转运蛋白通过诱导线粒体钙介导的肾小管细胞衰老促进小鼠肾脏衰老。

Mitochondrial calcium uniporter promotes kidney aging in mice through inducing mitochondrial calcium-mediated renal tubular cell senescence.

机构信息

State Key Laboratory of Organ Failure Research, National Clinical Research Center of Kidney Disease, Guangdong Provincial Clinical Research Center for Kidney Disease, Guangdong Provincial Key Laboratory of Nephrology / Division of Nephrology, Nanfang Hospital, Southern Medical University, Guangzhou, 510515, China.

出版信息

Acta Pharmacol Sin. 2024 Oct;45(10):2149-2162. doi: 10.1038/s41401-024-01298-5. Epub 2024 May 24.

Abstract

Renal tubular epithelial cell senescence plays a critical role in promoting and accelerating kidney aging and age-related renal fibrosis. Senescent cells not only lose their self-repair ability, but also can transform into senescence-associated secretory phenotype (SASP) to trigger inflammation and fibrogenesis. Recent studies show that mitochondrial dysfunction is critical for renal tubular cell senescence and kidney aging, and calcium overload and abnormal calcium-dependent kinase activities are involved in mitochondrial dysfunction-associated senescence. In this study we investigated the role of mitochondrial calcium overload and mitochondrial calcium uniporter (MCU) in kidney aging. By comparing the kidney of 2- and 24-month-old mice, we found calcium overload in renal tubular cells of aged kidney, accompanied by significantly elevated expression of MCU. In human proximal renal tubular cell line HK-2, pretreatment with MCU agonist spermine (10 μM) significantly increased mitochondrial calcium accumulation, and induced the production of reactive oxygen species (ROS), leading to renal tubular cell senescence and age-related kidney fibrosis. On the contrary, pretreatment with MCU antagonist RU360 (10 μM) or calcium chelator BAPTA-AM (10 μM) diminished D-gal-induced ROS generation, restored mitochondrial homeostasis, retarded cell senescence, and protected against kidney aging in HK-2 cells. In a D-gal-induced accelerated aging mice model, administration of BAPTA (100 μg/kg. i.p.) every other day for 8 weeks significantly alleviated renal tubuarl cell senescence and fibrosis. We conclude that MCU plays a key role in promoting renal tubular cell senescence and kidney aging. Targeting inhibition on MCU provides a new insight into the therapeutic strategy against kidney aging.

摘要

肾小管上皮细胞衰老在促进和加速肾脏衰老和与年龄相关的肾纤维化中起着关键作用。衰老细胞不仅失去了自我修复能力,还可以转化为衰老相关分泌表型(SASP),引发炎症和纤维发生。最近的研究表明,线粒体功能障碍对于肾小管细胞衰老和肾脏衰老至关重要,钙超载和异常的钙依赖性激酶活性参与了与线粒体功能障碍相关的衰老。在这项研究中,我们研究了线粒体钙超载和线粒体钙单向转运体(MCU)在肾脏衰老中的作用。通过比较 2 个月和 24 个月大的小鼠的肾脏,我们发现衰老肾脏的肾小管细胞中存在钙超载,同时 MCU 的表达明显升高。在人近端肾小管细胞系 HK-2 中,MCU 激动剂亚精胺(10μM)预处理显著增加线粒体钙积累,并诱导活性氧(ROS)的产生,导致肾小管细胞衰老和与年龄相关的肾脏纤维化。相反,MCU 拮抗剂 RU360(10μM)或钙螯合剂 BAPTA-AM(10μM)预处理可减少 D-半乳糖诱导的 ROS 产生,恢复线粒体稳态,延缓细胞衰老,并在 HK-2 细胞中防止肾脏衰老。在 D-半乳糖诱导的加速衰老小鼠模型中,每隔一天腹腔注射 BAPTA(100μg/kg)8 周可显著减轻肾小管细胞衰老和纤维化。我们的结论是,MCU 在促进肾小管细胞衰老和肾脏衰老中起着关键作用。针对 MCU 的抑制作用为治疗肾脏衰老提供了新的思路。

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