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二氯钼茂与含半胱氨酸肽的相互作用:配位、区域选择性水解及分子内氨解反应

Interaction of molybdocene dichloride with cysteine-containing peptides: coordination, regioselective hydrolysis, and intramolecular aminolysis.

作者信息

Erxleben Andrea

机构信息

Fachbereich Chemie, Universität Dortmund, Otto-Hahn-Strasse 6, 44221 Dortmund, Germany.

出版信息

Inorg Chem. 2005 Feb 21;44(4):1082-94. doi: 10.1021/ic048824v.

Abstract

Reactions of the organometallic compound molybdocene dichloride (Cp2MoCl2, Cp = eta5-cyclopentadienyl) with the cysteine-containing peptides L-cysteinylglycine (Cys-Gly), N-acetyl-L-cysteine (AcCys), glycyl-L-cysteine (Gly-Cys), glycyl-L-cysteinylglycine (Gly-Cys-Gly), and gamma-L-glutamyl-L-cysteinylglycine (glutathione, GSH) have been studied in aqueous solution in the pH range 2-9. The dipeptides Cys-Gly and Gly-Cys and the acetylated amino acid AcCys form 1:1 and 2:1 complexes of composition [Cp2Mo(peptide-S)(OH(2))]n+/- and [Cp2Mo(peptide-S)2]n+/- as well as the chelates [Cp2Mo(AcCys-S,O)], [Cp2Mo(Gly-Cys-S,O)]+, and [Cp2Mo(Cys-Gly-S,N)] with the Cp2Mo2+ unit binding to the deprotonated thiolate group and the free amino or carboxylate group of the cysteine residue. Upon treatment of Gly-Cys-Gly and the naturally occurring tripeptide GSH with Cp2MoCl2 at elevated temperature, release of free glycine was observed. The Cp2Mo2+ entity coordinates to the thiolate group of GSH and mediates regioselective hydrolysis of the Cys-Gly peptide bond by intramolecular metal hydroxide activation. Cp2Mo2+-promoted hydrolysis of GSH was followed at pD 7.4 and 5.2 and 40 and 60 degrees C. By contrast, the Cys-Gly bond in [Cp2Mo(Gly-Cys-Gly-S,N)] is cleaved by intramolecular aminolysis at pD > or = 7.4 and 60 degrees C leading to glycine and the Cp2Mo2+ complex of the 2,5-diketopiperazine derivative cyclo-(Gly-Cys). Chelating coordination of the Cp2Mo2+ moiety to the thiolate group and to the deprotonated amide nitrogen of the tripeptide changes the configuration of the peptide bond from (preferred) trans to cis, thus enabling nucleophilic attack of the primary amino group at the Cys-Gly bond. The reaction product [Cp2Mo{cyclo-(Gly-Cys)}] x 2H2O has been characterized by X-ray crystallography.

摘要

研究了有机金属化合物二氯茂钼(Cp2MoCl2,Cp = η5-环戊二烯基)与含半胱氨酸的肽L-半胱氨酰甘氨酸(Cys-Gly)、N-乙酰-L-半胱氨酸(AcCys)、甘氨酰-L-半胱氨酸(Gly-Cys)、甘氨酰-L-半胱氨酰甘氨酸(Gly-Cys-Gly)和γ-L-谷氨酰-L-半胱氨酰甘氨酸(谷胱甘肽,GSH)在pH值为2至9的水溶液中的反应。二肽Cys-Gly和Gly-Cys以及乙酰化氨基酸AcCys形成了组成分别为[Cp2Mo(肽-S)(OH(2))]n+/-和[Cp2Mo(肽-S)2]n+/-的1:1和2:1配合物,以及螯合物[Cp2Mo(AcCys-S,O)]、[Cp2Mo(Gly-Cys-S,O)]+和[Cp2Mo(Cys-Gly-S,N)],其中Cp2Mo2+单元与去质子化的硫醇盐基团以及半胱氨酸残基的游离氨基或羧酸盐基团结合。在高温下用Cp2MoCl2处理Gly-Cys-Gly和天然存在的三肽GSH时,观察到游离甘氨酸的释放。Cp2Mo2+实体与GSH的硫醇盐基团配位,并通过分子内金属氢氧化物活化介导Cys-Gly肽键的区域选择性水解。在pD 7.4、5.2以及40和60℃下跟踪了Cp2Mo2+促进的GSH水解。相比之下,[Cp2Mo(Gly-Cys-Gly-S,N)]中的Cys-Gly键在pD≥7.4和60℃下通过分子内氨解作用断裂,生成甘氨酸和2,5-二酮哌嗪衍生物环-(Gly-Cys)的Cp2Mo2+配合物。Cp2Mo2+部分与三肽的硫醇盐基团和去质子化的酰胺氮的螯合配位将肽键的构型从(优选的)反式变为顺式,从而使伯氨基能够对Cys-Gly键进行亲核攻击。反应产物[Cp2Mo{环-(Gly-Cys)}]·2H2O已通过X射线晶体学进行了表征。

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