Tamura Yasushi, Endo Toshiya
Department of Material and Biological Chemistry, Faculty of Science, Yamagata University, Yamagata, 990-8560, Japan.
Faculty of Life Sciences, Kyoto Sangyo University, Kamigamo-motoyama, Kita-ku, Kyoto, 603-8555, Japan.
Adv Exp Med Biol. 2017;997:121-133. doi: 10.1007/978-981-10-4567-7_9.
Eukaryotic cells exhibit intracellular compartments called organelles wherein various specialized enzymatic reactions occur. Despite the specificity of the characteristic functions of organelles, recent studies have shown that distinct organelles physically connect and communicate with each other to maintain the integrity of their functions. In yeast, multiple inter- and intramitochondrial membrane contact sites (MCSs) were identified to date and were proposed to be involved in phospholipid biogenesis. In the present article, we focus on inter- and intra-organellar MCSs involving mitochondria and their tethering factors, such as the ERMES (endoplasmic reticulum (ER)-mitochondria encounter structure) complex and EMC (conserved ER membrane protein complex) between mitochondria and the ER, vCLAMP (vacuole and mitochondria patch) between mitochondria and vacuoles, and the MICOS (mitochondrial contact site) complex between the mitochondrial outer and inner membranes (MOM and MIM). All of these membrane-tethering factors were proposed to be involved in phospholipid biogenesis. Furthermore, the existence of functional interconnections among multiple organelle contact sites is suggested. In the present article, we summarize the latest discoveries in regard to MCSs and MCS-forming factors involving mitochondria and discuss their molecular functions, with particular focus on phospholipid metabolism in yeast.
真核细胞具有称为细胞器的细胞内区室,各种特定的酶促反应在其中发生。尽管细胞器的特征功能具有特异性,但最近的研究表明,不同的细胞器会在物理上相互连接并进行通信,以维持其功能的完整性。在酵母中,迄今为止已鉴定出多个线粒体内外膜接触位点(MCSs),并认为它们参与磷脂生物合成。在本文中,我们重点关注涉及线粒体的细胞器间和线粒体内MCSs及其系留因子,例如线粒体与内质网(ER)之间的ERMES(内质网-线粒体相遇结构)复合体和EMC(保守的内质网膜蛋白复合体)、线粒体与液泡之间的vCLAMP(液泡和线粒体斑块),以及线粒体外膜和内膜(MOM和MIM)之间的MICOS(线粒体接触位点)复合体。所有这些膜系留因子都被认为参与磷脂生物合成。此外,还表明多个细胞器接触位点之间存在功能上的相互联系。在本文中,我们总结了有关涉及线粒体的MCSs和MCS形成因子的最新发现,并讨论了它们的分子功能,特别关注酵母中的磷脂代谢。