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Ste24p在酵母a因子成熟过程中的双重作用:氨基末端蛋白水解和羧基末端CAAX加工。

Dual roles for Ste24p in yeast a-factor maturation: NH2-terminal proteolysis and COOH-terminal CAAX processing.

作者信息

Tam A, Nouvet F J, Fujimura-Kamada K, Slunt H, Sisodia S S, Michaelis S

机构信息

Department of Cell Biology and Anatomy, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

J Cell Biol. 1998 Aug 10;142(3):635-49. doi: 10.1083/jcb.142.3.635.

Abstract

Maturation of the Saccharomyces cerevisiae a-factor precursor involves COOH-terminal CAAX processing (prenylation, AAX tripeptide proteolysis, and carboxyl methylation) followed by cleavage of an NH2-terminal extension (two sequential proteolytic processing steps). The aim of this study is to clarify the precise role of Ste24p, a membrane-spanning zinc metalloprotease, in the proteolytic processing of the a-factor precursor. We demonstrated previously that Ste24p is necessary for the first NH2-terminal processing step by analysis of radiolabeled a-factor intermediates in vivo (Fujimura-Kamada, K., F.J. Nouvet, and S. Michaelis. 1997. J. Cell Biol. 136:271-285). In contrast, using an in vitro protease assay, others showed that Ste24p (Afc1p) and another gene product, Rce1p, share partial overlapping function as COOH-terminal CAAX proteases (Boyartchuk, V.L., M.N. Ashby, and J. Rine. 1997. Science. 275:1796-1800). Here we resolve these apparently conflicting results and provide compelling in vivo evidence that Ste24p indeed functions at two steps of a-factor maturation using two methods. First, direct analysis of a-factor biosynthetic intermediates in the double mutant (ste24Delta rce1Delta) reveals a previously undetected species (P0*) that fails to be COOH terminally processed, consistent with redundant roles for Ste24p and Rce1p in COOH-terminal CAAX processing. Whereas a-factor maturation appears relatively normal in the rce1Delta single mutant, the ste24Delta single mutant accumulates an intermediate that is correctly COOH terminally processed but is defective in cleavage of the NH2-terminal extension, demonstrating that Ste24p is also involved in NH2-terminal processing. Together, these data indicate dual roles for Ste24p and a single role for Rce1p in a-factor processing. Second, by using a novel set of ubiquitin-a-factor fusions to separate the NH2- and COOH-terminal processing events of a-factor maturation, we provide independent evidence for the dual roles of Ste24p. We also report here the isolation of the human (Hs) Ste24p homologue, representing the first human CAAX protease to be cloned. We show that Hs Ste24p complements the mating defect of the yeast double mutant (ste24Delta rce1Delta) strain, implying that like yeast Ste24p, Hs Ste24p can mediate multiple types of proteolytic events.

摘要

酿酒酵母a因子前体的成熟过程包括COOH末端CAAX加工(异戊二烯化、AAX三肽蛋白水解和羧甲基化),随后是NH2末端延伸的切割(两个连续的蛋白水解加工步骤)。本研究的目的是阐明跨膜锌金属蛋白酶Ste24p在a因子前体蛋白水解加工中的精确作用。我们之前通过体内放射性标记a因子中间体的分析证明,Ste24p是第一个NH2末端加工步骤所必需的(Fujimura-Kamada, K., F.J. Nouvet, and S. Michaelis. 1997. J. Cell Biol. 136:271 - 285)。相比之下,其他人使用体外蛋白酶测定法表明,Ste24p(Afc1p)和另一个基因产物Rce1p作为COOH末端CAAX蛋白酶具有部分重叠功能(Boyartchuk, V.L., M.N. Ashby, and J. Rine. 1997. Science. 275:1796 - 1800)。在这里,我们解决了这些明显相互矛盾的结果,并使用两种方法提供了令人信服的体内证据,证明Ste24p确实在a因子成熟的两个步骤中发挥作用。首先,对双突变体(ste24Delta rce1Delta)中a因子生物合成中间体的直接分析揭示了一种以前未检测到的物种(P0*),该物种未能进行COOH末端加工,这与Ste24p和Rce1p在COOH末端CAAX加工中的冗余作用一致。虽然在rce1Delta单突变体中a因子成熟似乎相对正常,但ste24Delta单突变体积累了一种中间体,该中间体COOH末端加工正确,但在NH2末端延伸的切割方面存在缺陷,表明Ste24p也参与NH2末端加工。总之,这些数据表明Ste24p具有双重作用,而Rce1p在a因子加工中具有单一作用。其次,通过使用一组新的泛素 - a因子融合体来分离a因子成熟的NH2末端和COOH末端加工事件,我们为Ste24p的双重作用提供了独立证据。我们还在此报告了人类(Hs)Ste24p同源物的分离,这是第一个被克隆的人类CAAX蛋白酶。我们表明Hs Ste24p弥补了酵母双突变体(ste24Delta rce1Delta)菌株的交配缺陷,这意味着像酵母Ste24p一样,Hs Ste24p可以介导多种类型的蛋白水解事件。

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