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A cloning method to identify caspases and their regulators in yeast: Identification of Drosophila IAP1 as an inhibitor of the Drosophila caspase DCP-1

机译:一种鉴定酵母中胱天蛋白酶及其调节剂的克隆方法:鉴定果蝇IAP1作为果蝇胱天蛋白酶DCP-1的抑制剂

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摘要

Site-specific proteases play critical roles in regulating many cellular processes. To identify novel site-specific proteases, their regulators, and substrates, we have designed a general reporter system in Saccharomyces cerevisiae in which a transcription factor is linked to the intracellular domain of a transmembrane protein by protease cleavage sites. Here, we explore the efficacy of this approach by using caspases, a family of aspartate-specific cysteine proteases, as a model. Introduction of an active caspase into cells that express a caspase-cleavable reporter results in the release of the transcription factor from the membrane and subsequent activation of a nuclear reporter. We show that known caspases activate the reporter, that an activator of caspase activity stimulates reporter activation in the presence of an otherwise inactive caspase, and that caspase inhibitors suppress caspase-dependent reporter activity. We also find that, although low or moderate levels of active caspase expression do not compromise yeast cell growth, higher level expression leads to lethality. We have exploited this observation to isolate clones from a Drosophila embryo cDNA library that block DCP-1 caspase-dependent yeast cell death. Among these clones, we identified the known cell death inhibitor DIAP1. We showed, by using bacterially synthesized proteins, that glutathione S-transferase–DIAP1 directly inhibits DCP-1 caspase activity but that it had minimal effect on the activity of a predomainless version of a second Drosophila caspase, drICE.
机译:位点特异性蛋白酶在调节许多细胞过程中起关键作用。为了鉴定新颖的位点特异性蛋白酶,其调节剂和底物,我们在酿酒酵母中设计了一种通用的报道系统,其中转录因子通过蛋白酶切割位点与跨膜蛋白的胞内域相连。在这里,我们通过使用半胱氨酸天冬氨酸特异性半胱氨酸蛋白酶家族的半胱氨酸蛋白酶来研究这种方法的功效。将活性半胱天冬酶引入表达半胱天冬酶可裂解的报道分子的细胞中导致转录因子从膜中释放并随后激活核报道分子。我们表明已知的胱天蛋白酶激活记者,caspase活性的激活剂会在其他情况下不活跃的caspase的存在下刺激记者的激活,并且caspase抑制剂抑制caspase依赖的记者的活性。我们还发现,尽管低水平或中等水平的活性caspase表达不会损害酵母细胞的生长,但较高水平的表达会导致致死性。我们已经利用这一观察结果从果蝇胚胎cDNA文库中分离出了阻止DCP-1 caspase依赖性酵母细胞死亡的克隆。在这些克隆中,我们确定了已知的细胞死亡抑制剂DIAP1。我们通过使用细菌合成的蛋白质显示,谷胱甘肽S-转移酶–DIAP1直接抑制DCP-1半胱天冬酶的活性,但对第二种果蝇半胱天冬酶drICE的无域前版本的活性影响最小。

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