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Identification of twenty-three mutations in fission yeast Scap that constitutively activate SREBP

机译:鉴定裂殖酵母Scap中23个组成性激活SREBP的突变

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摘要

The endoplasmic reticulum membrane protein SREBP cleavage-activating protein (Scap) senses sterols and regulates activation of sterol-regulatory element binding proteins (SREBPs), membrane-bound transcription factors that control lipid homeostasis in fission yeast and mammals. Transmembrane segments 2–6 of Scap function as a sterol-sensing domain (SSD) that recognizes changes in cellular sterols and facilitates activation of SREBP. Previous studies identified conserved mutations Y298C, L315F, and D443N in the SSD of mammalian Scap and fission yeast Scap (Scp1) that render cells insensitive to sterols and cause constitutive SREBP activation. In this study, we utilized fission yeast genetics to identify additional functionally important residues in the SSD of Scp1 and Scap. Using a site-directed mutagenesis selection, we sampled all possible amino acid substitutions at 50 conserved residues in the SSD of Scp1 for their effects on yeast SREBP (Sre1) activation. We found mutations at 23 different amino acids in Scp1 that rendered Scp1 insensitive to sterols and caused constitutive activation of Sre1. To our surprise, the majority of the homologous Scap mutants displayed wild-type function, and only one mutation, V439G, caused constitutive activation of SREBP in mammals. These results suggest that the sterol-sensing mechanism of Scap and the functional requirements for SREBP activation are different between fission yeast and mammals.
机译:内质网膜蛋白SREBP裂解激活蛋白(Scap)感知固醇并调节固醇调节元件结合蛋白(SREBPs)的激活,这是膜结合的转录因子,可控制裂变酵母和哺乳动物体内脂质的稳态。 Scap的跨膜段2–6充当固醇感应域(SSD),可识别细胞固醇的变化并促进SREBP的激活。先前的研究在哺乳动物Scap和裂变酵母Scap(Scp1)的SSD中鉴定了保守的Y298C,L315F和D443N突变,这些突变使细胞对固醇不敏感并引起组成型SREBP活化。在这项研究中,我们利用裂变酵母遗传学来鉴定Scp1和Scap的SSD中其他功能上重要的残基。使用定点诱变选择,我们采样了Scp1的SSD中50个保守残基上所有可能的氨基酸取代,以评估它们对酵母SREBP(Sre1)活化的影响。我们发现Scp1中23个不同氨基酸处的突变使Scp1对固醇不敏感并引起Sre1的组成型激活。令我们惊讶的是,大多数同源的Scap突变体表现出野生型功能,只有一个突变V439G引起哺乳动物SREBP的组成型激活。这些结果表明,裂殖酵母和哺乳动物之间Scap的固醇感应机制和SREBP激活的功能要求是不同的。

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