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α,β-脱氢-3,4-二羟基苯丙氨酸衍生物:天然复合材料中潜在的硬化中间体。

alpha,beta-Dehydro-3,4-dihydroxyphenylalanine derivatives: potential schlerotization intermediates in natural composite materials.

作者信息

Rzepecki L M, Nagafuchi T, Waite J H

机构信息

College of Marine Studies, University of Delaware, Lewes 19958.

出版信息

Arch Biochem Biophys. 1991 Feb 15;285(1):17-26. doi: 10.1016/0003-9861(91)90323-b.

Abstract

Proteins containing the post-translationally modified amino acid L-3,4-dihydroxyphenylalanine (DOPA) undergo autosclerotization as a means of assuring cohesive resilience in many structural matrices found in nature. To explore the chemical mechanism of sclerotization, we examined the oxidation products of relatively simple analogs of a peptidyl DOPA residue, such as N-acetylDOPA ethyl ester and N-acetyldopamide, together with those of several oligopeptides. Oxidation, induced by either of two catecholoxidases or by sodium periodate, resulted in the Lewis base catalyzed formation of derivatives of the unusual amino acid 3,4-dihydroxy-alpha,beta-dehydroDOPA (delta DOPA). The N-acetyl delta DOPA ethyl ester representative of this group of derivatives was characterized by NMR and uv spectroscopy. A variety of peptides developed analogous uv spectra upon oxidation. A similar reaction was observed upon oxidation of 3,4-dihydroxyphenylpropanoic (dihydrocaffeic) acid, but not after oxidation of N-acetyldopamine. Evidence is presented that this conversion is the result of a rearrangement of the DOPA quinone moiety to its delta DOPA tautomer, and that this tautomerization can be a dominant fate for peptidyl DOPA quinone, provided a Lewis base catalyst is available and competing reactions are minimized. Formation of delta DOPA in natural or synthetic polymers would increase the variety of crosslinks available to sclerotizing matrices. delta DOPA has been found in naturally occurring oligopeptides isolated by other workers from several marine species.

摘要

含有翻译后修饰氨基酸L-3,4-二羟基苯丙氨酸(多巴)的蛋白质会发生自硬化,这是一种在自然界许多结构基质中确保内聚弹性的方式。为了探究硬化的化学机制,我们研究了肽基多巴残基相对简单类似物的氧化产物,如N-乙酰多巴乙酯和N-乙酰多巴胺,以及几种寡肽的氧化产物。由两种儿茶酚氧化酶之一或高碘酸钠诱导的氧化,导致在路易斯碱催化下形成不寻常氨基酸3,4-二羟基-α,β-脱氢多巴(δ-多巴)的衍生物。该组衍生物的代表N-乙酰δ-多巴乙酯通过核磁共振和紫外光谱进行了表征。多种肽在氧化后呈现出类似的紫外光谱。在3,4-二羟基苯丙酸(二氢咖啡酸)氧化时观察到类似反应,但在N-乙酰多巴胺氧化后未观察到。有证据表明,这种转化是多巴醌部分重排为其δ-多巴互变异构体的结果,并且只要有路易斯碱催化剂且竞争反应最小化,这种互变异构化可能是肽基多巴醌的主要归宿。在天然或合成聚合物中形成δ-多巴会增加可用于硬化基质的交联种类。其他研究人员从几种海洋物种中分离出的天然存在的寡肽中发现了δ-多巴。

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