Huang K M, D'Hondt K, Riezman H, Lemmon S K
Case Western Reserve University, Department of Molecular Biology and Microbiology, Cleveland, OH 44106-4960, USA.
EMBO J. 1999 Jul 15;18(14):3897-908. doi: 10.1093/emboj/18.14.3897.
The major coat proteins of clathrin-coated vesicles are the clathrin triskelion and heterotetrameric associated protein (AP) complexes. The APs are thought to be involved in cargo capture and recruitment of clathrin to the membrane during endocytosis and sorting in the trans-Golgi network/endosomal system. AP180 is an abundant coat protein in brain clathrin-coated vesicles, and it has potent clathrin assembly activity. In Saccharomyces cerevisiae, there are 13 genes encoding homologs of heterotetrameric AP subunits and two genes encoding AP180-related proteins. To test the model that clathrin function is dependent on the heterotetrameric APs and/or AP180 homologs, yeast strains containing multiple disruptions in AP subunit genes, as well as in the two YAP180 genes, were constructed. Surprisingly, the AP deletion strains did not display the phenotypes associated with clathrin deficiency, including slowed growth and endocytosis, defective late Golgi protein retention and impaired cytosol to vacuole/autophagy function. Clathrin-coated vesicles isolated from multiple AP deletion mutants were morphologically indistinguishable from those from wild-type cells. These results indicate that clathrin function and recruitment onto membranes are not dependent upon heterotetrameric adaptors or AP180 homologs in yeast. Therefore, alternative mechanisms for clathrin assembly and coated vesicle formation, as well as the role of AP complexes and AP180-related proteins in these processes, must be considered.
网格蛋白包被小泡的主要外壳蛋白是网格蛋白三脚复合体和异源四聚体相关蛋白(AP)复合体。AP被认为在内吞作用以及反式高尔基体网络/内体系统的分选过程中参与货物捕获和网格蛋白向膜的募集。AP180是脑网格蛋白包被小泡中一种丰富的外壳蛋白,并且具有强大的网格蛋白组装活性。在酿酒酵母中,有13个基因编码异源四聚体AP亚基的同源物,还有两个基因编码与AP180相关的蛋白。为了验证网格蛋白功能依赖于异源四聚体AP和/或AP180同源物的模型,构建了在AP亚基基因以及两个YAP180基因中存在多个缺失的酵母菌株。令人惊讶的是,AP缺失菌株并未表现出与网格蛋白缺乏相关的表型,包括生长缓慢和内吞作用、晚期高尔基体蛋白保留缺陷以及胞质溶胶到液泡/自噬功能受损。从多个AP缺失突变体中分离出的网格蛋白包被小泡在形态上与野生型细胞的小泡没有区别。这些结果表明,在酵母中网格蛋白的功能以及在膜上的募集并不依赖于异源四聚体衔接蛋白或AP180同源物。因此,必须考虑网格蛋白组装和包被小泡形成的替代机制,以及AP复合体和AP180相关蛋白在这些过程中的作用。