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抗坏血酸/Cu(II)体系对牛[Cu-Zn]-超氧化物歧化酶的独特氧化裂解和修饰:超氧化物歧化酶分子上新铜结合位点的鉴定。

Distinct oxidative cleavage and modification of bovine [Cu- Zn]-SOD by an ascorbic acid/Cu(II) system: Identification of novel copper binding site on SOD molecule.

作者信息

Uehara Hiroshi, Luo Shen, Aryal Baikuntha, Levine Rodney L, Rao V Ashutosh

机构信息

Laboratory of Applied Biochemistry, Division of Biotechnology Review and Research III, Office of Biotechnology Products, Office of Pharmaceutical Quality, Center for Drug Evaluation and Research, Food and Drug Administration, White Oak, MD 20993, USA.

Laboratory of Biochemistry, National Heart, Lung, and Blood Institute, Bethesda, MD 20892, USA.

出版信息

Free Radic Biol Med. 2016 May;94:161-73. doi: 10.1016/j.freeradbiomed.2016.01.020. Epub 2016 Feb 10.

Abstract

We investigated the combined effect of ascorbate and copper [Asc/Cu(II)] on the integrity of bovine [Cu-Zn]-superoxide dismutase (bSOD1) as a model system to study the metal catalyzed oxidation (MCO) and fragmentation of proteins. We found Asc/Cu(II) mediates specific cleavage of bSOD1 and generates 12.5 and 3.2kDa fragments in addition to oxidation/carbonylation of the protein. The effect of other tested transition metals, a metal chelator, and hydrogen peroxide on the cleavage and oxidation indicated that binding of copper to a previously unknown site on SOD1 is responsible for the Asc/Cu(II) specific cleavage and oxidation. We utilized tandem mass spectrometry to identify the specific cleavage sites of Asc/Cu(II)-treated bSOD1. Analyses of tryptic- and AspN-peptides have demonstrated the cleavage to occur at Gly31 with peptide bond breakage with Thr30 and Ser32 through diamide and α-amidation pathways, respectively. The three-dimensional structure of bSOD1 reveals the imidazole ring of His19 localized within 5Å from the α-carbon of Gly31 providing a structural basis that copper ion, most likely coordinated by His19, catalyzes the specific cleavage reaction.

摘要

我们研究了抗坏血酸盐和铜[Asc/Cu(II)]对牛[Cu-Zn]超氧化物歧化酶(bSOD1)完整性的联合作用,以此作为研究金属催化氧化(MCO)和蛋白质片段化的模型系统。我们发现Asc/Cu(II)介导了bSOD1的特异性切割,除了使蛋白质发生氧化/羰基化外,还产生了12.5 kDa和3.2 kDa的片段。其他测试的过渡金属、一种金属螯合剂和过氧化氢对切割和氧化的影响表明,铜与SOD1上一个先前未知的位点结合是Asc/Cu(II)特异性切割和氧化的原因。我们利用串联质谱法鉴定了经Asc/Cu(II)处理的bSOD1的特异性切割位点。对胰蛋白酶肽段和天冬酰胺肽段的分析表明,切割分别通过二酰胺和α-酰胺化途径在Gly31处发生,肽键分别与Thr30和Ser32断裂。bSOD1的三维结构显示,His19的咪唑环位于距Gly31的α-碳原子5Å范围内,这为铜离子(很可能由His19配位)催化特异性切割反应提供了结构基础。

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