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Sec4蛋白对GTP的水解在囊泡运输中起重要作用,并且在酿酒酵母中受到一种GTP酶激活蛋白的刺激。

Hydrolysis of GTP by Sec4 protein plays an important role in vesicular transport and is stimulated by a GTPase-activating protein in Saccharomyces cerevisiae.

作者信息

Walworth N C, Brennwald P, Kabcenell A K, Garrett M, Novick P

机构信息

Department of Cell Biology, Yale University School of Medicine, New Haven, Connecticut 06510.

出版信息

Mol Cell Biol. 1992 May;12(5):2017-28. doi: 10.1128/mcb.12.5.2017-2028.1992.

Abstract

Sec4, a GTP-binding protein of the ras superfamily, is required for exocytosis in the budding yeast Saccharomyces cerevisiae. To test the role of GTP hydrolysis in Sec4 function, we constructed a mutation, Q-79----L, analogous to the oncogenic mutation of Q-61----L in Ras, in a region of Sec4 predicted to interact with the phosphoryl group of GTP. The sec4-leu79 mutation lowers the intrinsic hydrolysis rate to unmeasurable levels. A component of a yeast lysate specifically stimulates the hydrolysis of GTP by Sec4, while the rate of hydrolysis of GTP by Sec4-Leu79 can be stimulated by this GAP activity to only 30% of the stimulated hydrolysis rate of the wild-type protein. The decreased rate of hydrolysis results in the accumulation of the Sec4-Leu79 protein in its GTP-bound form in an overproducing yeast strain. The sec4-leu79 allele can function as the sole copy of sec4 in yeast cells. However, it causes recessive, cold-sensitive growth, a slowing of invertase secretion, and accumulation of secretory vesicles and displays synthetic lethality with a subset of other secretory mutants, indicative of a partial loss of Sec4 function. While the level of Ras function reflects the absolute level of GTP-bound protein, our results suggest that the ability of Sec4 to cycle between its GTP and GDP bound forms is important for its function in vesicular transport, supporting a mechanism for Sec4 function which is distinct from that of the Ras protein.

摘要

Sec4是一种Ras超家族的GTP结合蛋白,在出芽酵母酿酒酵母的胞吐作用中是必需的。为了测试GTP水解在Sec4功能中的作用,我们构建了一个突变体Q-79----L,类似于Ras中致癌突变Q-61----L,位于Sec4中预测与GTP磷酸基团相互作用的区域。sec4-leu79突变将内在水解速率降低到无法测量的水平。酵母裂解物的一个组分特异性地刺激Sec4对GTP的水解,而Sec4-Leu79对GTP的水解速率仅能被这种GAP活性刺激到野生型蛋白刺激水解速率的30%。水解速率的降低导致Sec4-Leu79蛋白在其GTP结合形式下在过量表达的酵母菌株中积累。sec4-leu79等位基因可以作为酵母细胞中sec4的唯一拷贝发挥作用。然而,它会导致隐性、冷敏感生长,蔗糖酶分泌减慢,分泌囊泡积累,并与其他一些分泌突变体表现出合成致死性,表明Sec4功能部分丧失。虽然Ras功能水平反映了GTP结合蛋白的绝对水平,但我们的结果表明,Sec4在其GTP和GDP结合形式之间循环的能力对其在囊泡运输中的功能很重要,这支持了一种与Ras蛋白不同的Sec4功能机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28e9/364372/7aa411fa5793/molcellb00027-0129-a.jpg

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