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DOI10.1126/science.aba8740
The histone H3-H4 tetramer is a copper reductase enzyme
Attar N.; Campos O.A.; Vogelauer M.; Cheng C.; Xue Y.; Schmollinger S.; Salwinski L.; Mallipeddi N.V.; Boone B.A.; Yen L.; Yang S.; Zikovich S.; Dardine J.; Carey M.F.; Merchant S.S.; Kurdistani S.K.
发表日期2020
ISSN10959203
起始页码59
结束页码64
卷号369期号:6499
英文摘要Eukaryotic histone H3-H4 tetramers contain a putative copper (Cu2+) binding site at the H3-H3' dimerization interface with unknown function. The coincident emergence of eukaryotes with global oxygenation, which challenged cellular copper utilization, raised the possibility that histones may function in cellular copper homeostasis. We report that the recombinant Xenopus laevis H3-H4 tetramer is an oxidoreductase enzyme that binds Cu2+ and catalyzes its reduction to Cu1+ in vitro. Loss- and gain-of-function mutations of the putative active site residues correspondingly altered copper binding and the enzymatic activity, as well as intracellular Cu1+ abundance and copper-dependent mitochondrial respiration and Sod1 function in the yeast Saccharomyces cerevisiae The histone H3-H4 tetramer, therefore, has a role other than chromatin compaction or epigenetic regulation and generates biousable Cu1+ ions in eukaryotes. Copyright © 2020, American Association for the Advancement of Science.
关键词coppercopper oxidasecopper zinc superoxide dismutasehistoneMAC1 protein, S cerevisiaenuclear proteinoxidoreductaserecombinant proteinSaccharomyces cerevisiae proteintranscription factoranimalbiocatalysischemistryenzyme active siteenzymologygain of function mutationgeneticsmetabolismmitochondrionprotein multimerizationSaccharomyces cerevisiaeXenopus laevisAnimalsBiocatalysisCatalytic DomainCopperGain of Function MutationHistonesMitochondriaNuclear ProteinsOxidoreductasesProtein MultimerizationRecombinant ProteinsSaccharomyces cerevisiaeSaccharomyces cerevisiae ProteinsSuperoxide Dismutase-1Transcription FactorsXenopus laevis
语种英语
来源机构Science (New York, N.Y.)
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/133378
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GB/T 7714
Attar N.,Campos O.A.,Vogelauer M.,et al. The histone H3-H4 tetramer is a copper reductase enzyme[J]. Science (New York, N.Y.),2020,369(6499).
APA Attar N..,Campos O.A..,Vogelauer M..,Cheng C..,Xue Y..,...&Kurdistani S.K..(2020).The histone H3-H4 tetramer is a copper reductase enzyme.,369(6499).
MLA Attar N.,et al."The histone H3-H4 tetramer is a copper reductase enzyme".369.6499(2020).
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