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PINK1 is required for timely cell-type specific mitochondrial clearance during Drosophila midgut metamorphosis

机译:果蝇中肠变态期间及时细胞类型特异性线粒体清除需要PINK1

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Mitophagy is the selective degradation of mitochondria by autophagy, which is an important mitochondrial quality and quantity control process. During Drosophila metamorphosis, the degradation of midgut involves a large change in length and organization, which is mediated by autophagy. Here we noticed a cell-type specific mitochondria] clearance process that occurs in enterocytes (ECs), while most mitochondria remain in intestinal stem cells (ISCs) during metamorphosis. Although PINK]/PARKIN represent the canonical pathway for the elimination of impaired mitochondria in varied pathological conditions, their roles in developmental processes or normal physiological conditions have been less studied. To examine the potential contribution of PINK1 in developmental processes, we monitored the dynamic expression pattern of PINKI in the midgut development by taking advantage of a newly CRISPR/Cas9 generated knock-in fly strain expressing PINK1-mCherry fusion protein that presumably recapitulates the endogenous expression pattern of PINK1. We disclosed a spatiotemporal correlation between the expression pattern of PINKI and the mitochondrial clearance or persistence in ECs or ISCs respectively. By mosaic genetic analysis, we then demonstrated that PINK1 and PARKIN function epistatically to mediate the specific timely removal of mitochondria, and are involved in global autophagy in ECs during Drosophila midgut metamorphosis, with kinase-dead PINKI exerting dominant negative effects. Taken together, our studies concluded that the PINK1/PARKIN is crucial for timely cell-type specific mitophagy under physiological conditions and demonstrated again that Drosophila midgut metamorphosis might serve as an elegant in vivo model to study autophagy. (C) 2016 Elsevier Inc. All rights reserved.
机译:线粒体吞噬是通过自噬选择性地降解线粒体,这是重要的线粒体质和量控制过程。在果蝇变态过程中,中肠的降解涉及长度和组织的巨大变化,这是由自噬介导的。在这里,我们注意到细胞类型特异性线粒体清除过程发生在肠上皮细胞(EC)中,而大多数线粒体在变态过程中仍保留在肠干细胞(ISC)中。尽管PINK] / PARKIN代表了在各种病理条件下消除受损线粒体的经典途径,但它们在发育过程或正常生理条件下的作用还很少研究。为了检查PINK1在发育过程中的潜在贡献,我们通过利用新的CRISPR / Cas9产生的敲入果蝇菌株表达PINK1-mCherry融合蛋白来监测PINKI在中肠发育中的动态表达模式,该蛋白可能概括了内源表达PINK1的模式。我们公开了PINKI的表达方式与ECs或ISCs中线粒体清除或持久性之间的时空相关性。通过镶嵌遗传分析,我们然后证明PINK1和PARKIN在上位性功能上介导线粒体的特定及时清除,并在果蝇中肠变态期间参与EC的整体自噬,而激酶死亡的PINKI发挥主要的负面作用。两者合计,我们的研究得出结论,PINK1 / PARKIN对于在生理条件下及时进行细胞类型特异性线粒体吞噬至关重要,并再次证明果蝇中肠变态可能是研究自噬的优雅体内模型。 (C)2016 Elsevier Inc.保留所有权利。

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