Department of Biology/Chemistry, University of Osnabrück, 49076 Osnabrück, Germany.
Mol Biol Cell. 2010 Jul 15;21(14):2425-33. doi: 10.1091/mbc.e10-01-0080. Epub 2010 May 26.
Ste24 is a membrane-integral CaaX metalloprotease residing in the endoplasmic reticulum (ER). In yeast, the only known substrate of Ste24 is the mating factor a precursor. A global screening for protein-protein interactions indicated that Ste24 interacts with chitin synthesis deficient (Chs)3, an enzyme required for chitin synthesis. We confirmed this interaction by yeast two-hybrid analyses and mapped the interacting cytoplasmic domains. Next, we investigated the influence of Ste24 on chitin synthesis. In sterile (ste)24Delta mutants, we observed resistance to calcofluor white (CFW), which was also apparent when the cells expressed a catalytically inactive version of Ste24. In addition, ste24Delta cells showed a decrease in chitin levels and Chs3-green fluorescent protein localized less frequently at the bud neck. Overexpression of STE24 resulted in hypersensitivity to CFW and a slight increase in chitin levels. The CFW phenotype of ste24Delta cells could be rescued by its human and insect orthologues. Although Chs3 binds to Ste24, it seems not to be a substrate for this protease. Instead, our data suggest that Chs3 and Ste24 form a complex in the ER that facilitates protease action on prenylated Chs4, a known activator of Chs3 with a C-terminal CaaX motif, leading to a more efficient localization of Chs3 at the plasma membrane.
Ste24 是一种位于内质网 (ER) 中的膜整合 CaaX 金属蛋白酶。在酵母中,Ste24 唯一已知的底物是交配因子 a 前体。一项针对蛋白质-蛋白质相互作用的全球筛选表明,Ste24 与几丁质合成缺陷 (Chs)3 相互作用,Chs3 是几丁质合成所必需的酶。我们通过酵母双杂交分析证实了这种相互作用,并绘制了相互作用的细胞质结构域图。接下来,我们研究了 Ste24 对几丁质合成的影响。在无菌 (ste)24Delta 突变体中,我们观察到对 Calcofluor White (CFW) 的抗性,当细胞表达 Ste24 的催化失活版本时,这种抗性也很明显。此外,ste24Delta 细胞的几丁质水平降低,Chs3-绿色荧光蛋白在芽颈处的定位也不那么频繁。STE24 的过表达导致对 CFW 的敏感性增加和几丁质水平略有增加。Ste24Delta 细胞的 CFW 表型可以通过其人和昆虫的同源物挽救。尽管 Chs3 与 Ste24 结合,但它似乎不是这种蛋白酶的底物。相反,我们的数据表明 Chs3 和 Ste24 在 ER 中形成复合物,促进蛋白酶对 prenylated Chs4 的作用,Chs4 是 Chs3 的已知激活剂,具有 C 末端 CaaX 基序,导致 Chs3 更有效地定位在质膜上。