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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Role of the Unfolded Protein Response Pathway in Regulation of INO1 and in the sec14 Bypass Mechanism in Saccharomyces cerevisiae
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Role of the Unfolded Protein Response Pathway in Regulation of INO1 and in the sec14 Bypass Mechanism in Saccharomyces cerevisiae

机译:展开的蛋白质反应途径在酿酒酵母中调控INO1和sec14旁路机制中的作用。

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摘要

INO1 , encoding inositol 1-phosphate synthase, is the most highly regulated of a class of genes containing the repeated element, UAS INO , in their promoters. Transcription of UAS INO -containing genes is modulated by the availability of exogenous inositol and by signals generated by alteration of phospholipid metabolism. The unfolded protein response (UPR) pathway also is involved in INO1 expression and the ire1 Δ and hac1 Δ mutants are inositol auxotrophs. We examined the role of the UPR in transmitting a signal generated in response to inositol deprivation and to alteration of phospholipid biosynthesis created in the sec14ts cki1 Δ genetic background. We report that the UPR is required for sustained high-level INO1 expression in wild-type strains, but not for transient derepression in response to inositol deprivation. Moreover, the UPR is not required for expression or regulation of INO1 in response to the change in lipid metabolism that occurs in the sec14ts cki1 Δ genetic background. Thus, the UPR signal transduction pathway is not involved directly in transcriptional regulation of INO1 and other UAS INO -containing genes. However, we discovered that inactivation of Sec14p leads to activation of the UPR, and that sec14 cki1 strains exhibit defective vacuolar morphology, suggesting that the mechanism by which the cki1 Δ mutation suppresses the growth and secretory defect of sec14 does not fully restore wild-type morphology. Finally, synthetic lethality involving sec14 and UPR mutations suggests that the UPR plays an essential role in survival of sec14 cki1 strains.
机译:编码肌醇1-磷酸合酶的INO1是在其启动子中包含重复元素UAS INO的一类基因中受最高调控的。含有UAS INO的基因的转录受外源肌醇的可用性和磷脂代谢改变产生的信号的调节。未折叠的蛋白应答(UPR)途径也与INO1表达有关,而ire1Δ和hac1Δ突变体是肌醇营养缺陷型。我们检查了UPR在传递响应肌醇剥夺和sec14ts cki1Δ遗传背景中产生的磷脂生物合成改变而产生的信号中的作用。我们报告说,UPR是在野生型菌株中持续高水平INO1表达所必需的,但对于响应肌醇剥夺的短暂抑制作用则不是必需的。此外,响应于sec14ts cki1Δ遗传背景中发生的脂质代谢变化,不需要UPR来表达或调节INO1。因此,UPR信号转导途径不直接参与INO1和其他UAS含INO基因的转录调控。然而,我们发现Sec14p的失活导致UPR的激活,而sec14 cki1菌株表现出缺陷的液泡形态,表明cki1Δ突变抑制sec14的生长和分泌缺陷的机制不能完全恢复野生型。形态学。最后,涉及sec14和UPR突变的合成杀伤力表明,UPR在sec14 cki1菌株的存活中起着至关重要的作用。

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