Sato Keisuke, Roboti Peristera, Mironov Alexander A, Lowe Martin
Faculty of Life Sciences, University of Manchester, Manchester M13 9PT, United Kingdom.
Faculty of Life Sciences, University of Manchester, Manchester M13 9PT, United Kingdom
Mol Biol Cell. 2015 Feb 1;26(3):537-53. doi: 10.1091/mbc.E14-10-1450. Epub 2014 Dec 3.
Golgins are extended coiled-coil proteins believed to participate in membrane-tethering events at the Golgi apparatus. However, the importance of golgin-mediated tethering remains poorly defined, and alternative functions for golgins have been proposed. Moreover, although golgins bind to Rab GTPases, the functional significance of Rab binding has yet to be determined. In this study, we show that depletion of the golgin GMAP-210 causes a loss of Golgi cisternae and accumulation of numerous vesicles. GMAP-210 function in vivo is dependent upon its ability to tether membranes, which is mediated exclusively by the amino-terminal ALPS motif. Binding to Rab2 is also important for GMAP-210 function, although it is dispensable for tethering per se. GMAP-210 length is also functionally important in vivo. Together our results indicate a key role for GMAP-210-mediated membrane tethering in maintaining Golgi structure and support a role for Rab2 binding in linking tethering with downstream docking and fusion events at the Golgi apparatus.
高尔基体蛋白是一种延伸的卷曲螺旋蛋白,被认为参与高尔基体的膜系留事件。然而,高尔基体蛋白介导的系留作用的重要性仍未明确界定,并且有人提出了高尔基体蛋白的其他功能。此外,尽管高尔基体蛋白与Rab GTP酶结合,但其结合的功能意义尚未确定。在本研究中,我们表明高尔基体蛋白GMAP - 210的缺失会导致高尔基体潴泡的丧失和大量小泡的积累。GMAP - 210在体内的功能取决于其系留膜的能力,这完全由氨基末端的ALPS基序介导。与Rab2的结合对GMAP - 210的功能也很重要,尽管它对系留本身并非必需。GMAP - 210的长度在体内功能上也很重要。我们的结果共同表明GMAP - 210介导的膜系留在维持高尔基体结构中起关键作用,并支持Rab2结合在将系留与高尔基体下游对接和融合事件联系起来方面的作用。