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甘氨酰甘氨酰-L-组氨酰甘氨酸镍(III)配合物的氧化自分解

Oxidative self-decomposition of the nickel(III) complex of glycylglycyl-L-histidylglycine.

作者信息

Green Brandon J, Tesfai Teweldemedhin M, Xie Yi, Margerum Dale W

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907-2084, USA.

出版信息

Inorg Chem. 2004 Feb 23;43(4):1463-71. doi: 10.1021/ic035034x.

Abstract

Self-decomposition of the nickel(III) doubly deprotonated peptide complex of Gly2HisGly occurs by base-assisted oxidation of the peptide. At < or =p[H+] 7.0, the major pathway is a four-electron oxidation (via 4 Ni(III) complexes) at the alpha carbon of the N-terminal glycyl residue. The product of this oxidation is oxamylglycylhistidylglycine, which hydrolyzes to yield ammonia and oxalylglycylhistidylglycine. Both of these peptide products decompose to give isocyanatoacetylhistidylglycine. A small amount (2%) of oxidative decarboxylation also is observed. In another major pathway above p[H+] 7.0, two Ni(III)-peptide complexes coordinate via an oxo bridge in the axial positions to form a reactive dimer species. This dimer generates two Ni(II)-peptide radical intermediates that cross-link at the alpha carbons of the N-terminal glycyl residues. In 0.13 mM Ni(III)-peptide at p[H+] 10.3, this pathway accounts for 60% of the reaction. The cross-linked peptide is subject to oxidation via atmospheric O2, where the 2,3-diaminobutanedioic acid is converted to a 2,3-diaminobutenedioic acid. The products observed at <p[H+] 7.0 are observed here as well, although in lower yields. The reactivity of Ni(III)(H(-2)Gly2HisGly) is significantly different than that of Cu(III)(H(-2)Gly2HisGly), which undergoes a two-electron oxidation at the histidyl residue with no peptide-peptide cross-linking in basic solution.

摘要

甘氨酰 - 组氨酰 - 甘氨酸的镍(III)双去质子化肽配合物的自分解是通过肽的碱辅助氧化发生的。在pH值≤7.0时,主要途径是在N端甘氨酰残基的α碳上进行四电子氧化(通过4个镍(III)配合物)。这种氧化的产物是草氨酰甘氨酰组氨酰甘氨酸,它水解生成氨和草酰甘氨酰组氨酰甘氨酸。这两种肽产物都会分解生成异氰酸根合乙酰组氨酰甘氨酸。还观察到少量(2%)的氧化脱羧反应。在pH值>7.0的另一个主要途径中,两个镍(III) - 肽配合物在轴向位置通过氧桥配位形成一种反应性二聚体物种。该二聚体产生两个镍(II) - 肽自由基中间体,它们在N端甘氨酰残基的α碳处交联。在pH值为10.3的0.13 mM镍(III) - 肽中,该途径占反应的60%。交联肽会通过大气中的氧气发生氧化,其中2,3 - 二氨基丁二酸会转化为2,3 - 二氨基丁烯二酸。在pH值<7.0时观察到的产物在这里也能观察到,不过产率较低。镍(III)(H(-2)甘氨酰 - 组氨酰 - 甘氨酸)的反应性与铜(III)(H(-2)甘氨酰 - 组氨酰 - 甘氨酸)的反应性显著不同,后者在碱性溶液中在组氨酰残基处进行两电子氧化且没有肽 - 肽交联。

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