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铜(I)与链长不同的粟酒裂殖酵母γ-谷氨酰肽的结合。

Cu(I) binding to the Schizosaccharomyces pombe gamma-glutamyl peptides varying in chain lengths.

作者信息

Mehra R K, Winge D R

机构信息

Department of Medicine, University of Utah Medical Center, Salt Lake City 84132.

出版信息

Arch Biochem Biophys. 1988 Sep;265(2):381-9. doi: 10.1016/0003-9861(88)90141-5.

DOI:10.1016/0003-9861(88)90141-5
PMID:3421713
Abstract

The metal-gamma-glutamyl peptide complex of Schizosaccharomyces pombe is an oligomer of peptides of the general structure (gamma-Glu-Cys)n-Gly with n defining the number of dipeptide repeats. The complexes induced with either cadmium or copper salts are heterogeneous with respect to the number of repeat units or n. Peptides isolated from two preparations of the Cd-gamma-Glu complex by reverse-phase HPLC at low pH were of an n range of 2 to 6 with n3 and n4 peptides being predominant. In addition to peptides of the mentioned structure, peptides of n3 and n4 without the terminal Gly were isolated. These n3 and n4 desGly peptides were present in an abundance of about 10-20% of the concentration of the parent peptide. Peptides of unique n were studied in Cu(I) reconstitution experiments in an attempt to understand the significance of the peptide length heterogeneity in the oligomeric metal-thiolate cluster. Cu-gamma-Glu complexes were formed with each peptide as determined by the characteristic 260-nm shoulder in the ultraviolet absorption spectrum and luminescence indicative of Cu(I)-thiolate coordination in a solvent-inaccessible environment. Cluster formation also occurs with desGly peptides, so the carboxyl-terminal Gly is not critical for cluster formation. Maximal Cu binding stoichiometry with n3 and n4 peptides was markedly less than the maximal Cu(I) stoichiometry of a peptide mixture or the native complex. Cu ions in complexes formed with unique n peptides were more reactive with bathocuproine than Cu ions in complexes with a peptide n mixture. The results suggest that metal-peptide complexes consisting of peptides differing in n probably exist and not all metal-peptide complexes have the same n peptide constituents.

摘要

粟酒裂殖酵母的金属 -γ-谷氨酰肽复合物是一般结构为(γ-Glu-Cys)n-Gly的肽的寡聚物,其中n定义二肽重复的数量。由镉盐或铜盐诱导形成的复合物在重复单元数量或n方面是异质的。在低pH值下通过反相高效液相色谱法从两种镉 -γ-谷氨酰复合物制剂中分离出的肽,其n范围为2至6,其中n3和n4肽占主导。除了上述结构的肽外,还分离出了不含末端Gly的n3和n4肽。这些n3和n4去Gly肽的含量约为母体肽浓度的10 - 20%。在铜(I)重构实验中研究了具有独特n的肽,以试图了解寡聚金属硫醇盐簇中肽长度异质性的意义。通过紫外吸收光谱中特征性的260nm肩峰以及在溶剂不可及环境中表明铜(I) - 硫醇配位的发光确定,每种肽都形成了铜 -γ-谷氨酰复合物。去Gly肽也会形成簇,因此羧基末端的Gly对于簇的形成并不关键。与n3和n4肽的最大铜结合化学计量明显小于肽混合物或天然复合物的最大铜(I)化学计量。与具有独特n肽形成的复合物中的铜离子比与肽n混合物形成的复合物中的铜离子对浴铜灵更具反应性。结果表明,可能存在由n不同的肽组成的金属 - 肽复合物,并且并非所有金属 - 肽复合物都具有相同的n肽成分。

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