Mishra Ritu, Smaczynska-de Rooij Iwona I, Goldberg Martin W, Ayscough Kathryn R
School of Biological and Biomedical Sciences; Durham University; Durham, UK.
Commun Integr Biol. 2011 Jan;4(1):115-7. doi: 10.4161/cib.4.1.14206.
The dynamin proteins have been associated with the process of endocytosis for many years. Until recently it was considered that yeast dynamin-related proteins did not play a role in endocytosis and the proposed scission function of dynamin was attributed to another group of proteins, the amphiphysins. However, it has now been shown that the yeast dynamin-like protein Vps1 shows a transient burst of localization to sites of endocytosis. Vps1 assembles at cortical sites at the time when actin polymerization is proposed to drive plasma membrane invagination. In concert with the amphiphysins Vps1 is then thought to function in the scission step to release a formed vesicle. It was shown that a mutation preventing self assembly of Vps1 caused a defect in endocytosis but not in other functions with which Vps1 is associated. Using electron microscopy we now show that this mutation I649K, corresponding to I690K in human Dyn1, causes formation of long endocytic invaginations. The data suggest that an ability of Vps1 to self assemble and to thereby stimulate its GTPase activity is critical for the 'pinching-off' stage of endocytosis to form a vesicle.
动力蛋白与胞吞作用过程相关已有多年。直到最近,人们还认为酵母中与动力蛋白相关的蛋白质在胞吞作用中不起作用,并且动力蛋白所具有的推测的切割功能被归因于另一组蛋白质——发动蛋白。然而,现在已经表明,酵母中类似动力蛋白的蛋白质Vps1在内吞作用位点表现出短暂的定位激增。当推测肌动蛋白聚合驱动质膜内陷时,Vps1在皮质位点组装。然后,Vps1与发动蛋白协同作用,被认为在切割步骤中发挥作用以释放形成的囊泡。研究表明,阻止Vps1自我组装的突变会导致胞吞作用缺陷,但不会影响Vps1所关联的其他功能。现在我们通过电子显微镜观察发现,这种对应于人类Dyn1中I690K的I649K突变会导致长的内吞性内陷的形成。数据表明,Vps1自我组装并由此刺激其GTP酶活性的能力对于胞吞作用中形成囊泡的“掐断”阶段至关重要。