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线粒体钠/钙交换器(NCLX)通过钙信号调节基础和饥饿诱导的自噬。

Mitochondrial sodium/calcium exchanger (NCLX) regulates basal and starvation-induced autophagy through calcium signaling.

机构信息

Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, São Paulo, Brazil.

Departamento de Bioquímica, Escola Paulista de Medicina, Universidade Federal de São Paulo, São Paulo, Brazil.

出版信息

FASEB J. 2024 Feb 15;38(3):e23454. doi: 10.1096/fj.202301368RR.

Abstract

Mitochondria shape intracellular Ca signaling through the concerted activity of Ca uptake via mitochondrial calcium uniporters and efflux by Na /Ca exchangers (NCLX). Here, we describe a novel relationship among NCLX, intracellular Ca , and autophagic activity. Conditions that stimulate autophagy in vivo and in vitro, such as caloric restriction and nutrient deprivation, upregulate NCLX expression in hepatic tissue and cells. Conversely, knockdown of NCLX impairs basal and starvation-induced autophagy. Similarly, acute inhibition of NCLX activity by CGP 37157 affects bulk and endoplasmic reticulum autophagy (ER-phagy) without significant impacts on mitophagy. Mechanistically, CGP 37157 inhibited the formation of FIP200 puncta and downstream autophagosome biogenesis. Inhibition of NCLX caused decreased cytosolic Ca levels, and intracellular Ca chelation similarly suppressed autophagy. Furthermore, chelation did not exhibit an additive effect on NCLX inhibition of autophagy, demonstrating that mitochondrial Ca efflux regulates autophagy through the modulation of Ca signaling. Collectively, our results show that the mitochondrial Ca extrusion pathway through NCLX is an important regulatory node linking nutrient restriction and autophagy regulation.

摘要

线粒体通过协同作用调节细胞内 Ca 信号:通过线粒体钙单向转运体摄取 Ca 和通过钠/钙交换器(NCLX)排出 Ca。在这里,我们描述了 NCLX、细胞内 Ca 和自噬活性之间的一种新关系。在体内和体外刺激自噬的条件,如热量限制和营养缺乏,会上调肝组织和细胞中的 NCLX 表达。相反,NCLX 的敲低会损害基础和饥饿诱导的自噬。同样,急性抑制 NCLX 活性通过 CGP 37157 影响大自噬和内质网自噬(ER-phagy),而对线粒体自噬没有显著影响。在机制上,CGP 37157 抑制了 FIP200 斑点的形成和下游自噬体生物发生。NCLX 的抑制导致胞质 Ca 水平降低,而细胞内 Ca 螯合同样抑制自噬。此外,螯合对 NCLX 抑制自噬没有相加作用,表明线粒体 Ca 外排通过调节 Ca 信号来调节自噬。总之,我们的结果表明,通过 NCLX 的线粒体 Ca 外排途径是连接营养限制和自噬调节的重要调节节点。

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