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本文引用的文献

1
Ybp1 is required for the hydrogen peroxide-induced oxidation of the Yap1 transcription factor.Ybp1是过氧化氢诱导的Yap1转录因子氧化所必需的。
J Biol Chem. 2003 Aug 15;278(33):30896-904. doi: 10.1074/jbc.M303542200. Epub 2003 May 12.
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Genetics and the specificity of the aging process.遗传学与衰老过程的特异性
Science. 2003 Feb 28;299(5611):1351-4. doi: 10.1126/science.1082358.
3
Intravacuolar membrane lysis in Saccharomyces cerevisiae. Does vacuolar targeting of Cvt17/Aut5p affect its function?酿酒酵母中的液泡内膜裂解。Cvt17/Aut5p的液泡靶向作用是否会影响其功能?
J Biol Chem. 2003 Mar 7;278(10):7810-21. doi: 10.1074/jbc.M209309200. Epub 2002 Dec 22.
4
A thiol peroxidase is an H2O2 receptor and redox-transducer in gene activation.硫醇过氧化物酶是基因激活过程中的一种过氧化氢受体和氧化还原转导器。
Cell. 2002 Nov 15;111(4):471-81. doi: 10.1016/s0092-8674(02)01048-6.
5
FunSpec: a web-based cluster interpreter for yeast.FunSpec:一款基于网络的酵母聚类解释工具。
BMC Bioinformatics. 2002 Nov 13;3:35. doi: 10.1186/1471-2105-3-35.
6
Yeast as a model to study apoptosis?酵母作为研究细胞凋亡的模型?
Biosci Rep. 2002 Feb;22(1):59-79. doi: 10.1023/a:1016013123094.
7
Dissection of transient oxidative stress response in Saccharomyces cerevisiae by using DNA microarrays.利用DNA微阵列剖析酿酒酵母中的瞬时氧化应激反应。
Mol Biol Cell. 2002 Aug;13(8):2783-94. doi: 10.1091/mbc.e02-02-0075.
8
Systematic screen for human disease genes in yeast.酵母中人类疾病基因的系统筛选。
Nat Genet. 2002 Aug;31(4):400-4. doi: 10.1038/ng929. Epub 2002 Jul 22.
9
Transcriptional response of Saccharomyces cerevisiae to DNA-damaging agents does not identify the genes that protect against these agents.酿酒酵母对DNA损伤剂的转录反应无法识别出抵御这些损伤剂的基因。
Proc Natl Acad Sci U S A. 2002 Jun 25;99(13):8778-83. doi: 10.1073/pnas.132275199. Epub 2002 Jun 19.
10
Mitochondrial reactive oxygen species in cell death signaling.细胞死亡信号传导中的线粒体活性氧
Biochimie. 2002 Feb-Mar;84(2-3):131-41. doi: 10.1016/s0300-9084(02)01369-x.

细胞具有不同的机制来维持对不同活性氧的防护:氧化应激反应基因。

Cells have distinct mechanisms to maintain protection against different reactive oxygen species: oxidative-stress-response genes.

作者信息

Thorpe Geoffrey W, Fong Chii S, Alic Nazif, Higgins Vincent J, Dawes Ian W

机构信息

Ramaciotti Centre for Gene Function Analysis, School of Biotechnology and Biomolecular Sciences, University of New South Wales, Sydney NSW 2052, Australia.

出版信息

Proc Natl Acad Sci U S A. 2004 Apr 27;101(17):6564-9. doi: 10.1073/pnas.0305888101. Epub 2004 Apr 15.

DOI:10.1073/pnas.0305888101
PMID:15087496
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC404085/
Abstract

The complete set of viable deletion strains in Saccharomyces cerevisiae was screened for sensitivity of mutants to five oxidants to identify cell functions involved in resistance to oxidative stress. This screen identified a unique set of mainly constitutive functions providing the first line of defense against a particular oxidant; these functions are very dependent on the nature of the oxidant. Most of these functions are distinct from those involved in repair and recovery from damage, which are generally induced in response to stress, because there was little correlation between mutant sensitivity and the reported transcriptional response to oxidants of the relevant gene. The screen identified 456 mutants sensitive to at least one of five different types of oxidant, and these were ranked in order of sensitivity. Many genes identified were not previously known to have a role in resistance to reactive oxygen species. These encode functions including protein sorting, ergosterol metabolism, autophagy, and vacuolar acidification. Only two mutants were sensitive to all oxidants examined, only 12 were sensitive to at least four, and different oxidants had very different spectra of deletants that were sensitive. These findings highlight the specificity of cellular responses to different oxidants: No single oxidant is representative of general oxidative stress. Mitochondrial respiratory functions were overrepresented in mutants sensitive to H(2)O(2), and vacuolar protein-sorting mutants were enriched in mutants sensitive to diamide. Core functions required for a broad range of oxidative-stress resistance include transcription, protein trafficking, and vacuolar function.

摘要

对酿酒酵母中完整的可行缺失菌株集进行了筛选,以检测突变体对五种氧化剂的敏感性,从而确定参与抗氧化应激的细胞功能。该筛选确定了一组独特的主要组成型功能,它们构成了针对特定氧化剂的第一道防线;这些功能非常依赖于氧化剂的性质。这些功能中的大多数与参与损伤修复和恢复的功能不同,后者通常是在应激反应中被诱导的,因为突变体敏感性与相关基因报道的对氧化剂的转录反应之间几乎没有相关性。该筛选确定了456个对五种不同类型氧化剂中的至少一种敏感的突变体,并按敏感性顺序对它们进行了排序。许多被鉴定出的基因以前并不被认为在抗活性氧中起作用。这些基因编码的功能包括蛋白质分选、麦角固醇代谢、自噬和液泡酸化。只有两个突变体对所有检测的氧化剂敏感,只有12个对至少四种氧化剂敏感,并且不同的氧化剂具有非常不同的敏感缺失菌株谱。这些发现突出了细胞对不同氧化剂反应的特异性:没有一种单一的氧化剂能代表一般的氧化应激。对过氧化氢敏感的突变体中,线粒体呼吸功能占比过高,而对二酰胺敏感的突变体中,液泡蛋白质分选突变体富集。广泛的抗氧化应激所需的核心功能包括转录、蛋白质运输和液泡功能。