Lehman K, Rossi G, Adamo J E, Brennwald P
Department of Cell Biology, Weill Medical College of Cornell University, New York, New York 10021, USA.
J Cell Biol. 1999 Jul 12;146(1):125-40. doi: 10.1083/jcb.146.1.125.
We have identified a pair of related yeast proteins, Sro7p and Sro77p, based on their ability to bind to the plasma membrane SNARE (SNARE) protein, Sec9p. These proteins show significant similarity to the Drosophila tumor suppressor, lethal giant larvae and to the neuronal syntaxin-binding protein, tomosyn. SRO7 and SRO77 have redundant functions as loss of both gene products leads to a severe cold-sensitive growth defect that correlates with a severe defect in exocytosis. We show that similar to Sec9, Sro7/77 functions in the docking and fusion of post-Golgi vesicles with the plasma membrane. In contrast to a previous report, we see no defect in actin polarity under conditions where we see a dramatic effect on secretion. This demonstrates that the primary function of Sro7/77, and likely all members of the lethal giant larvae family, is in exocytosis rather than in regulating the actin cytoskeleton. Analysis of the association of Sro7p and Sec9p demonstrates that Sro7p directly interacts with Sec9p both in the cytosol and in the plasma membrane and can associate with Sec9p in the context of a SNAP receptor complex. Genetic analysis suggests that Sro7 and Sec9 function together in a pathway downstream of the Rho3 GTPase. Taken together, our studies suggest that members of the lethal giant larvae/tomosyn/Sro7 family play an important role in polarized exocytosis by regulating SNARE function on the plasma membrane.
我们基于与质膜SNARE(可溶性N-乙基马来酰亚胺敏感因子附着蛋白受体)蛋白Sec9p的结合能力,鉴定出一对相关的酵母蛋白Sro7p和Sro77p。这些蛋白与果蝇肿瘤抑制因子致死巨幼虫以及神经元Syntaxin结合蛋白tomosyn具有显著相似性。SRO7和SRO77具有冗余功能,因为这两种基因产物的缺失都会导致严重的冷敏感生长缺陷,这与胞吐作用的严重缺陷相关。我们发现,与Sec9类似,Sro7/77在高尔基体后囊泡与质膜的对接和融合过程中发挥作用。与之前的一份报告不同,在我们观察到对分泌有显著影响的条件下,我们未发现肌动蛋白极性存在缺陷。这表明Sro7/77以及可能致死巨幼虫家族的所有成员的主要功能在于胞吐作用,而非调节肌动蛋白细胞骨架。对Sro7p和Sec9p关联的分析表明,Sro7p在细胞质和质膜中均能直接与Sec9p相互作用,并且可以在SNAP受体复合物的背景下与Sec9p结合。遗传分析表明,Sro7和Sec9在Rho3 GTP酶下游的一条途径中共同发挥作用。综上所述,我们的研究表明,致死巨幼虫/tomosyn/Sro7家族成员通过调节质膜上的SNARE功能,在极化胞吐作用中发挥重要作用。