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酿酒酵母中p21rap1A与出芽途径成分之间的功能相互作用。

Functional interaction between p21rap1A and components of the budding pathway in Saccharomyces cerevisiae.

作者信息

McCabe P C, Haubruck H, Polakis P, McCormick F, Innis M A

机构信息

Department of Molecular Biology, Cetus Corporation, Emeryville, California 94608.

出版信息

Mol Cell Biol. 1992 Sep;12(9):4084-92. doi: 10.1128/mcb.12.9.4084-4092.1992.

Abstract

The rap1A gene encodes a 21-kDa, ras-related GTP-binding protein (p21rap1A) of unknown function. A close structural homolog of p21rap1A (65% identity in the amino-terminal two-thirds) is the RSR1 gene product (Rsr1p) of Saccharomyces cerevisiae. Although Rsr1p is not essential for growth, its presence is required for nonrandom selection of bud sites. To assess the similarity of these proteins at the functional level, wild-type and mutant forms of p21rap1A were tested for complementation of activities known to be fulfilled by Rsr1p. Expression of p21rap1A, like multicopy expression of RSR1, suppressed the conditional lethality of a temperature-sensitive cdc24 mutation. Point mutations predicted to affect the localization of p21rap1A or its ability to cycle between GDP and GTP-bound states disrupted suppression of cdc24ts, while other mutations in the 61-65 loop region improved suppression. Expression of p21rap1A could not, however, suppress the random budding phenotype of rsr1 cells. p21rap1A also apparently interfered with the normal activity of Rsrlp, causing random budding in diploid wild-type cells, suggesting an inability of p21rap1A to interact appropriately with Rsr1p regulatory proteins. Consistent with this hypothesis, we found an Rsr1p-specific GTPase-activating protein (GAP) activity in yeast membranes which was not active toward p21rap1A, indicating that p21rap1A may be predominantly GTP bound in yeast cells. Coexpression of human Rap1-specific GAP suppressed the random budding due to expression of p21rap1A or its derivatives, including Rap1AVal-12. Although Rap1-specific GAP stimulated the GTPase of Rsr1p in vitro, it did not dominantly interfere with Rsr1p function in vivo. A chimera consisting of Rap1A1-165::Rsr1p166-272 did not exhibit normal Rsr1p function in the budding pathway. These results indicated that p21rap1A and Rsr1p share at least partial functional homology, which may have implications for p21rap1A function in mammalian cells.

摘要

rap1A基因编码一种功能未知的21 kDa、与ras相关的GTP结合蛋白(p21rap1A)。p21rap1A的一个紧密结构同源物(在氨基末端三分之二区域有65%的同一性)是酿酒酵母的RSR1基因产物(Rsr1p)。虽然Rsr1p对生长不是必需的,但其存在对于芽位点的非随机选择是必需的。为了在功能水平上评估这些蛋白质的相似性,对p21rap1A的野生型和突变形式进行了测试,以检测其对已知由Rsr1p完成的活性的互补作用。p21rap1A的表达,如同RSR1的多拷贝表达一样,抑制了温度敏感型cdc24突变的条件致死性。预测会影响p21rap1A定位或其在GDP和GTP结合状态之间循环能力的点突变破坏了对cdc24ts的抑制,而61 - 65环区域的其他突变则增强了抑制作用。然而,p21rap1A的表达不能抑制rsr1细胞的随机出芽表型。p21rap1A显然还干扰了Rsrlp的正常活性,导致二倍体野生型细胞随机出芽,这表明p21rap1A无法与Rsr1p调节蛋白进行适当的相互作用。与这一假设一致,我们在酵母膜中发现了一种Rsr1p特异性的GTP酶激活蛋白(GAP)活性,该活性对p21rap1A无活性,这表明p21rap1A在酵母细胞中可能主要处于GTP结合状态。人Rap1特异性GAP的共表达抑制了因p21rap1A或其衍生物(包括Rap1AVal - 12)的表达而导致的随机出芽。虽然Rap1特异性GAP在体外刺激了Rsr1p的GTP酶活性,但它在体内并未显著干扰Rsr1p的功能。由Rap1A1 - 165::Rsr1p166 - 272组成的嵌合体在出芽途径中未表现出正常的Rsr1p功能。这些结果表明p21rap1A和Rsr1p至少共享部分功能同源性,这可能对p21rap1A在哺乳动物细胞中的功能有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/522b/360304/c2a2e0018ecc/molcellb00132-0430-a.jpg

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