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酿酒酵母中参与芽殖位点选择和芽殖位点组装的蛋白质之间的相互作用。

Interactions among proteins involved in bud-site selection and bud-site assembly in Saccharomyces cerevisiae.

作者信息

Zheng Y, Bender A, Cerione R A

机构信息

Department of Pharmacology, Cornell University, Ithaca, New York 14850.

出版信息

J Biol Chem. 1995 Jan 13;270(2):626-30. doi: 10.1074/jbc.270.2.626.

Abstract

Bud formation in yeast involves the actions of the Ras-type GTPase Rsr1, which is required for the proper selection of the bud site, and the Rho-type GTPase Cdc42, which is necessary for the assembly of cytoskeletal structures at that site. The Cdc24 protein is required both for proper bud-site selection and bud-site assembly and has been recently shown to display guanine-nucleotide-exchange factor (GEF) activity toward Cdc42. Here, we demonstrate, using recombinant proteins, that Cdc24 can also bind directly to Rsr1. This binding has no effect on the ability of Rsr1 to undergo intrinsic or GEF-stimulated GDP-GTP exchange. However, Cdc24 can inhibit both the intrinsic and GTPase-activating protein-stimulated GTPase activity of Rsr1 and thereby acts as a GTPase-inhibitor protein for Rsr1. Cdc24 thus appears to bind preferentially to the activated form of Rsr1. The SH3 domain-containing bud-site assembly protein Bem1 also binds directly to Cdc24, and we show here that this interaction is inhibited by Ca2+. Neither Bem1 nor Cdc42 affects the GTPase-inhibitor protein activity of Cdc24 toward Rsr1, and neither Bem1 nor Rsr1 affects the GEF activity of Cdc24 toward Cdc42. Taken together, these results suggest that Cdc24 enables the direct convergence of a Ras-like protein (Rsr1) and a Rho-like protein (Cdc42) with the SH3-domain-containing protein (Bem1) and that independent domains of Cdc24 are responsible for these different interactions. These results also suggest that rather than directly controlling the GEF activity of Cdc24, the primary roles of Rsr1 and Bem1 might be to control the positioning of Cdc24 within the cell.

摘要

酵母中的芽形成涉及Ras型GTP酶Rsr1的作用,它是正确选择芽位点所必需的,以及Rho型GTP酶Cdc42,它是在该位点组装细胞骨架结构所必需的。Cdc24蛋白对于正确的芽位点选择和芽位点组装都是必需的,并且最近已显示其对Cdc42具有鸟嘌呤核苷酸交换因子(GEF)活性。在这里,我们使用重组蛋白证明,Cdc24也可以直接与Rsr1结合。这种结合对Rsr1进行内在的或GEF刺激的GDP-GTP交换的能力没有影响。然而,Cdc24可以抑制Rsr1的内在的和GTP酶激活蛋白刺激的GTP酶活性,从而作为Rsr1的GTP酶抑制蛋白起作用。因此,Cdc24似乎优先与Rsr1的活化形式结合。含SH3结构域的芽位点组装蛋白Bem1也直接与Cdc24结合,并且我们在此表明这种相互作用受到Ca2+的抑制。Bem1和Cdc42都不影响Cdc24对Rsr1的GTP酶抑制蛋白活性,并且Bem1和Rsr1都不影响Cdc24对Cdc42的GEF活性。综上所述,这些结果表明,Cdc24能够使类Ras蛋白(Rsr1)和类Rho蛋白(Cdc42)与含SH3结构域的蛋白(Bem1)直接汇聚,并且Cdc24的独立结构域负责这些不同的相互作用。这些结果还表明,Rsr1和Bem1的主要作用可能不是直接控制Cdc24的GEF活性,而是控制Cdc24在细胞内的定位。

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