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胰腺β细胞线粒体自噬作为一种对代谢应激的适应性反应,其涉及溶酶体钙释放的潜在机制。

Pancreatic β-cell mitophagy as an adaptive response to metabolic stress and the underlying mechanism that involves lysosomal Ca release.

机构信息

Soonchunhyang Institute of Medi-bio Science and Division of Endocrinology, Department of Internal Medicine, Soonchunhyang University College of Medicine, Cheonan, 31151, Korea.

Heart-Immune-Brain Network Research Center, Department of Life Science, Ewha Womans University, Seoul, 03767, Korea.

出版信息

Exp Mol Med. 2023 Sep;55(9):1922-1932. doi: 10.1038/s12276-023-01055-4. Epub 2023 Sep 1.

Abstract

Mitophagy is an excellent example of selective autophagy that eliminates damaged or dysfunctional mitochondria, and it is crucial for the maintenance of mitochondrial integrity and function. The critical roles of autophagy in pancreatic β-cell structure and function have been clearly shown. Furthermore, morphological abnormalities and decreased function of mitochondria have been observed in autophagy-deficient β-cells, suggesting the importance of β-cell mitophagy. However, the role of authentic mitophagy in β-cell function has not been clearly demonstrated, as mice with pancreatic β-cell-specific disruption of Parkin, one of the most important players in mitophagy, did not exhibit apparent abnormalities in β-cell function or glucose homeostasis. Instead, the role of mitophagy in pancreatic β-cells has been investigated using β-cell-specific Tfeb-knockout mice (Tfeb mice); Tfeb is a master regulator of lysosomal biogenesis or autophagy gene expression and participates in mitophagy. Tfeb mice were unable to adaptively increase mitophagy or mitochondrial complex activity in response to high-fat diet (HFD)-induced metabolic stress. Consequently, Tfeb mice exhibited impaired β-cell responses and further exacerbated metabolic deterioration after HFD feeding. TFEB was activated by mitochondrial or metabolic stress-induced lysosomal Ca release, which led to calcineurin activation and mitophagy. After lysosomal Ca release, depleted lysosomal Ca stores were replenished by ER Ca through ER→lysosomal Ca refilling, which supplemented the low lysosomal Ca capacity. The importance of mitophagy in β-cell function was also demonstrated in mice that developed β-cell dysfunction and glucose intolerance after treatment with a calcineurin inhibitor that hampered TFEB activation and mitophagy.

摘要

自噬是一种选择性自噬的极好例子,它可以消除受损或功能失调的线粒体,对于维持线粒体的完整性和功能至关重要。自噬在胰腺β细胞结构和功能中的关键作用已经得到了明确的证明。此外,在自噬缺陷的β细胞中观察到线粒体的形态异常和功能下降,这表明β细胞自噬的重要性。然而,真正的自噬在β细胞功能中的作用尚未得到明确证明,因为胰腺β细胞特异性敲除Parkin(自噬过程中最重要的参与者之一)的小鼠β细胞功能或葡萄糖稳态并没有明显异常。相反,使用β细胞特异性 Tfeb 敲除小鼠(Tfeb 小鼠)研究了自噬在胰腺β细胞中的作用;Tfeb 是溶酶体生物发生或自噬基因表达的主要调节因子,参与自噬。Tfeb 小鼠无法适应高脂饮食(HFD)诱导的代谢应激而增加自噬或线粒体复合物活性。因此,Tfeb 小鼠表现出β细胞反应受损,在 HFD 喂养后进一步加剧代谢恶化。TFEB 被线粒体或代谢应激诱导的溶酶体 Ca 释放激活,导致钙调神经磷酸酶激活和自噬。溶酶体 Ca 释放后,通过 ER→溶酶体 Ca 再填充耗尽的溶酶体 Ca 储存被 ER Ca 补充,这补充了低溶酶体 Ca 容量。在使用钙调神经磷酸酶抑制剂治疗后导致β细胞功能障碍和葡萄糖不耐受的小鼠中,也证明了自噬在β细胞功能中的重要性,该抑制剂阻碍了 TFEB 的激活和自噬。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abc2/10545665/5b6bbf087c47/12276_2023_1055_Fig1_HTML.jpg

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