Kanki Tomotake, Furukawa Kentaro, Yamashita Shun-ichi
Laboratory of Biosignaling, Niigata University Graduate School of Medical and Dental Sciences, 1-757 Asahimachi-dori, Chuo-ku, Niigata 951-8510, Japan.
Laboratory of Biosignaling, Niigata University Graduate School of Medical and Dental Sciences, 1-757 Asahimachi-dori, Chuo-ku, Niigata 951-8510, Japan.
Biochim Biophys Acta. 2015 Oct;1853(10 Pt B):2756-65. doi: 10.1016/j.bbamcr.2015.01.005. Epub 2015 Jan 17.
Mitochondria autophagy (mitophagy) is a process that selectively degrades mitochondria via autophagy. Recently, there has been significant progress in the understanding of mitophagy in yeast. Atg32, a mitochondrial outer membrane receptor, is indispensable for mitophagy. Phosphorylation of Atg32 is an initial cue for selective mitochondrial degradation. Atg32 expression and phosphorylation regulate the induction and efficiency of mitophagy. In addition to Atg32-related processes, recent studies have revealed that mitochondrial fission and the mitochondria-endoplasmic reticulum (ER) contact site may play important roles in mitophagy. Mitochondrial fission is required to regulate mitochondrial size. Mitochondria-ER contact is mediated by the ER-mitochondria encounter structure and is important to supply lipids from the ER for autophagosome biogenesis for mitophagy. Mitophagy is physiologically important for regulating the number of mitochondria, diminishing mitochondrial production of reactive oxygen species, and extending chronological lifespan under caloric restriction. These findings suggest that mitophagy contributes to maintain mitochondrial homeostasis. However, whether mitophagy selectively degrades damaged or dysfunctional mitochondria in yeast is unknown.
线粒体自噬是一种通过自噬选择性降解线粒体的过程。最近,在酵母线粒体自噬的理解方面取得了重大进展。Atg32是一种线粒体外膜受体,对线粒体自噬不可或缺。Atg32的磷酸化是选择性线粒体降解的初始信号。Atg32的表达和磷酸化调节线粒体自噬的诱导和效率。除了与Atg32相关的过程外,最近的研究表明线粒体分裂和线粒体 - 内质网(ER)接触位点可能在线粒体自噬中起重要作用。线粒体分裂对于调节线粒体大小是必需的。线粒体 - ER接触由ER - 线粒体相遇结构介导,对于从ER供应脂质用于线粒体自噬的自噬体生物合成很重要。线粒体自噬在生理上对于调节线粒体数量、减少线粒体活性氧的产生以及在热量限制下延长时序寿命很重要。这些发现表明线粒体自噬有助于维持线粒体稳态。然而,线粒体自噬在酵母中是否选择性降解受损或功能失调的线粒体尚不清楚。