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Spatial and Functional Aspects of ER-Golgi Rabs and Tethers

机译:ER-高尔基体和系绳的空间和功能方面

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Two conserved Rab GTPases, Rab1 and Rab2, play important roles in biosynthetic-secretory trafficking between the endoplasmic reticulum (ER) and the Golgi apparatus in mammalian cells. Both are expressed as two isoforms that regulate anterograde transport via the intermediate compartment (IC) to the Golgi, but are also required for transport in the retrograde direction. Moreover, Rab1 has been implicated in the formation of autophagosomes. Rab1 and Rab2 have numerous effectors or partners that function in membrane tethering, but also have other roles. These include the coiled-coil proteins p115, GM130, giantin, golgin-84 and GMAP-210, as well as the multisubunit COG (conserved oligomeric Golgi) and TRAPP (transport protein particle) tethering complexes. TRAPP also acts as the GTP exchange factor (GEF) in the activation of Rab1. According to the traditional view of the IC elements as motile, transient structures, the functions of the Rabs could take place at the two ends of the ER-Golgi itinerary, i.e. at ER exit sites (ERES) and/or cis-Golgi. However, there is considerable evidence for their specific association with the IC, including its recently identified pericentrosomal domain (pcIC), where many of the effectors turn out to be present, thus being able to exert their functions at the pre-Golgi level. The IC localization of these proteins is of particular interest based on the imaging of Rab1 dynamics, indicating that the IC is a stable organelle that bidirectionally communicates with the ER and Golgi, and is functionally linked to the endosomal system via the pcIC.
机译:两种保守的Rab GTPases Rab1和Rab2在哺乳动物细胞内质网(ER)与高尔基体之间的生物合成分泌运输中起重要作用。两者都表示为两个同工型,它们调节通过中间隔室(IC)到高尔基的顺行运输,但也需要逆行运输。此外,Rab1与自噬小体的形成有关。 Rab1和Rab2具有许多在膜系留中起作用的效应子或伴侣,但也具有其他作用。这些包括卷曲螺旋蛋白p115,GM130,巨蛋白,golgin-84和GMAP-210,以及多亚基COG(保守的低聚高尔基体)和TRAPP(运输蛋白颗粒)束缚复合物。 TRAPP在Rab1激活中也充当GTP交换因子(GEF)。根据传统的将IC元素视为运动,瞬态结构的观点,Rabs的功能可能发生在ER-高尔基路线的两端,即ER出口(ERES)和/或顺式高尔基。但是,有大量证据表明它们与IC有特定的联系,包括其最近确定的中心体周围结构域(pcIC),其中发现了许多效应子,因此能够在高尔基前水平发挥其功能。基于Rab1动力学的成像,这些蛋白质的IC定位特别受关注,表明该IC是一种稳定的细胞器,可与ER和Golgi双向通讯,并通过pcIC功能连接至内体系统。

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