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Synthesis and nucleophilic reactivity of a series of glutathione analogues modified at the gamma-glutamyl moiety.

机译:一系列在γ-谷氨酰基部分修饰的谷胱甘肽类似物的合成和亲核反应性。

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摘要

A series of GSH analogues with modifications at the gamma-glutamyl moiety was synthesized and purified by following peptide chemistry methodology. Benzyl, benzyloxycarbonyl and t-butyloxycarbonyl protective groups were used to protect individual amino acid functional groups. The formation of peptide bonds was accomplished through coupling of free amino groups with active esters, generated by reaction of the carboxylate functions with dicyclohexylcarbodi-imide and 1-hydroxybenzotriazole. The protecting groups in the tripeptides were removed in a single step by using Na in liquid NH3. Precautions were taken in order to prevent oxidation of the thiol function in the cysteine residue. Thus GSH analogues containing both L- and D-glutamic acid and L- and D-aspartic acid, coupled to cysteinylglycine through both the alpha- and the omega-carboxylate group, were synthesized. Also, decarboxy-GSH and deamino-GSH, lacking one functional group in the glutamate moiety, were prepared. The spontaneous non-enzyme-catalysed nucleophilic reaction of these GSH analogues with the electrophilic model substrate 1-chloro-2,4-dinitrobenzene showed appreciable rate differences, indicating the importance of intramolecular interactions in determining the nucleophilic reactivity of the thiol function in the cysteine residue. In particular, the free amino group in the gamma-L-glutamic acid residue appears to play a crucial role in activating the thiol group in GSH. In an adjacent paper [Adang, Brussee, Meyer, Coles, Ketterer, van der Gen & Mulder (1988) Biochem. J. 255, 721-724] these results are compared with those obtained in a study on the ability of these GSH analogues to act as a co-substrate in the glutathione S-transferase-catalysed conjugation reaction with 1-chloro-2,4-dinitrobenzene.
机译:通过以下肽化学方法合成和纯化了一系列在γ-谷氨酰基部分具有修饰的GSH类似物。苄基,苄氧羰基和叔丁氧羰基保护基用于保护各个氨基酸官能团。肽键的形成是通过使游离氨基与活性酯偶合而完成的,后者是由羧酸酯官能团与二环己基碳二亚胺和1-羟基苯并三唑反应生成的。通过使用液态NH3中的Na一步除去三肽中的保护基。采取预防措施以防止半胱氨酸残基中的硫醇功能被氧化。因此,合成了既包含L-谷氨酸和D-谷氨酸,又包含L-天冬氨酸和D-天冬氨酸的GSH类似物,其通过α-和ω-羧酸酯基团与半胱氨酸甘氨酸偶联。同样,制备了在谷氨酸部分中缺少一个官能团的脱羧-GSH和脱氨基-GSH。这些GSH类似物与亲电模型底物1-氯-2,4-二硝基苯的自发性非酶催化亲核反应显示出明显的速率差异,表明分子内相互作用在确定半胱氨酸中巯基功能的亲核反应性方面的重要性残留物。特别地,γ-L-谷氨酸残基中的游离氨基似乎在活化GSH中的巯基中起关键作用。在相邻的论文中[Adang,Brussee,Meyer,Coles,Ketterer,van der Gen&Mulder(1988)生物化学。 J. 255,721-724]将这些结果与研究这些GSH类似物在谷胱甘肽S-转移酶催化的与1-chloro-2,4的共轭反应中作为共底物的能力的研究相比较。 -二硝基苯。

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