Versele Matthias, Gullbrand Björn, Shulewitz Mark J, Cid Victor J, Bahmanyar Shirin, Chen Raymond E, Barth Patrick, Alber Tom, Thorner Jeremy
Division of Biochemistry and Molecular Biology, Department of Molecular and Cell Biology, University of California, Berkeley, CA 94720-3202, USA.
Mol Biol Cell. 2004 Oct;15(10):4568-83. doi: 10.1091/mbc.e04-04-0330. Epub 2004 Jul 28.
Mitotic yeast (Saccharomyces cerevisiae) cells express five related septins (Cdc3, Cdc10, Cdc11, Cdc12, and Shs1) that form a cortical filamentous collar at the mother-bud neck necessary for normal morphogenesis and cytokinesis. All five possess an N-terminal GTPase domain and, except for Cdc10, a C-terminal extension (CTE) containing a predicted coiled coil. Here, we show that the CTEs of Cdc3 and Cdc12 are essential for their association and for the function of both septins in vivo. Cdc10 interacts with a Cdc3-Cdc12 complex independently of the CTE of either protein. In contrast to Cdc3 and Cdc12, the Cdc11 CTE, which recruits the nonessential septin Shs1, is dispensable for its function in vivo. In addition, Cdc11 forms a stoichiometric complex with Cdc12, independent of its CTE. Reconstitution of various multiseptin complexes and electron microscopic analysis reveal that Cdc3, Cdc11, and Cdc12 are all necessary and sufficient for septin filament formation, and presence of Cdc10 causes filament pairing. These data provide novel insights about the connectivity among the five individual septins in functional septin heteropentamers and the organization of septin filaments.
有丝分裂酵母(酿酒酵母)细胞表达五种相关的隔膜蛋白(Cdc3、Cdc10、Cdc11、Cdc12和Shs1),它们在母细胞-芽颈处形成一个皮质丝状环,这对于正常的形态发生和胞质分裂是必需的。所有这五种蛋白都具有一个N端GTP酶结构域,除了Cdc10外,还有一个包含预测的卷曲螺旋的C端延伸(CTE)。在这里,我们表明Cdc3和Cdc12的CTE对于它们的结合以及这两种隔膜蛋白在体内的功能至关重要。Cdc10与Cdc3-Cdc12复合物相互作用,而不依赖于任何一种蛋白的CTE。与Cdc3和Cdc12不同,招募非必需隔膜蛋白Shs1的Cdc11 CTE在其体内功能中是可有可无的。此外,Cdc11与Cdc12形成化学计量复合物,不依赖于其CTE。各种多隔膜蛋白复合物的重组和电子显微镜分析表明,Cdc3、Cdc11和Cdc12对于隔膜蛋白丝的形成都是必需且充分的,并且Cdc10的存在会导致丝配对。这些数据为功能性隔膜蛋白异戊五聚体中五个单独的隔膜蛋白之间的连接以及隔膜蛋白丝的组织提供了新的见解。