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完整的线粒体底物外排对于以性别依赖方式预防肾小管损伤是必需的。

Intact mitochondrial substrate efflux is essential for prevention of tubular injury in a sex-dependent manner.

机构信息

Oxidative Stress and Disease Laboratory.

Immunogenetics Laboratory, and.

出版信息

JCI Insight. 2022 Apr 8;7(7):e150696. doi: 10.1172/jci.insight.150696.

Abstract

The importance of healthy mitochondrial function is implicated in the prevention of chronic kidney disease (CKD) and diabetic kidney disease (DKD). Sex differences also play important roles in DKD. Our previous studies revealed that mitochondrial substrate overload (modeled by homozygous deletion of carnitine acetyl-transferase [CrAT]) in proximal tubules causes renal injury. Here, we demonstrate the importance of intact mitochondrial substrate efflux by titrating the amount of overload through the generation of a heterozygous CrAT-KO model (PT-CrATHET mouse). Intriguingly, these animals developed renal injury similarly to their homozygous counterparts. Mitochondria were structurally and functionally impaired in both sexes. Transcriptomic analyses, however, revealed striking sex differences. Male mice shut down fatty acid oxidation and several other metabolism-related pathways. Female mice had a significantly weaker transcriptional response in metabolism, but activation of inflammatory pathways was prominent. Proximal tubular cells from PT-CrATHET mice of both sexes exhibited a shift toward a more glycolytic phenotype, but female mice were still able to oxidize fatty acid-based substrates. Our results demonstrate that maintaining mitochondrial substrate metabolism balance is crucial to satisfying proximal tubular energy demand. Our findings have potentially broad implications, as both the glycolytic shift and the sexual dimorphisms discovered herein offer potentially new modalities for future interventions for treating kidney disease.

摘要

健康的线粒体功能对于预防慢性肾脏病 (CKD) 和糖尿病肾病 (DKD) 至关重要。性别差异在 DKD 中也起着重要作用。我们之前的研究表明,近端肾小管中线粒体底物过载(通过肉碱乙酰转移酶 [CrAT] 纯合缺失模拟)会导致肾脏损伤。在这里,我们通过生成杂合 CrAT-KO 模型(PT-CrATHET 小鼠)来滴定过载的程度,证明了完整的线粒体底物外排的重要性。有趣的是,这些动物的肾脏损伤与纯合子相似。线粒体在两性中均存在结构和功能障碍。然而,转录组分析显示出明显的性别差异。雄性小鼠关闭了脂肪酸氧化和其他几种与代谢相关的途径。雌性小鼠的代谢转录反应明显较弱,但炎症途径的激活则较为明显。来自 PT-CrATHET 小鼠的近端肾小管细胞表现出向更糖酵解表型的转变,但雌性小鼠仍能够氧化基于脂肪酸的底物。我们的研究结果表明,维持线粒体底物代谢平衡对于满足近端肾小管的能量需求至关重要。我们的发现具有广泛的潜在意义,因为在这里发现的糖酵解转变和性别二态性为未来治疗肾脏疾病的干预措施提供了新的可能途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f999/9057616/7959958d8138/jciinsight-7-150696-g144.jpg

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