Suppr超能文献

氮和硫亲核试剂对源自毒橡树/毒漆树儿茶酚(漆酚)及其类似物的醌的区域特异性攻击,作为漆酚 - 蛋白质共轭物形成的模型。

Regiospecific attack of nitrogen and sulfur nucleophiles on quinones derived from poison oak/ivy catechols (urushiols) and analogues as models for urushiol-protein conjugate formation.

作者信息

Liberato D J, Byers V S, Dennick R G, Castagnoli N

出版信息

J Med Chem. 1981 Jan;24(1):28-33. doi: 10.1021/jm00133a007.

Abstract

Attempts to characterize potential biologically important covalent interactions between electrophilic quinones derived from catechols present in poison oak/ivy (urushiol) and biomacromolecules have led to the analysis of model reactions involving sulfur and amino nucleophiles with 3-heptadecylbenzoquinone. Characterization of the reaction products indicates that this quinone undergoes regiospecific attack by (S)-N-acetylcysteine at C-6 and by 1-aminopentane at C-5. The red solid obtained with 1-aminopentane proved to be 3-heptadecyl-5-(pentylamino)-1,2-benzoquinone. Analogous aminobenzoquinones were obtained with the quinones derived from the 4- and 6-methyl analogues of 3-pentadecylcatechol. All three adducts absorbed visible light at different wavelengths. When the starting catechols were incubated with human serum albumin almost identical chromophores were formed. These results establish that cathechols responsible for the production of the poison oak/ivy contact dermatitis in humans undergo a sequence of reactions in the presence of human serum albumin that lead to covalent attachment of the catechols to the protein via carbon-nitrogen bonds. Estimations of the extent of this binding indicate that, at least with human serum albumin, the reaction is quantitative.

摘要

人们试图对源自毒橡树/毒常春藤(漆酚)中的儿茶酚的亲电醌与生物大分子之间潜在的重要生物共价相互作用进行表征,这促使人们对涉及硫和氨基亲核试剂与3-十七烷基苯醌的模型反应进行分析。反应产物的表征表明,该醌在C-6位受到(S)-N-乙酰半胱氨酸的区域特异性攻击,在C-5位受到1-氨基戊烷的区域特异性攻击。用1-氨基戊烷得到的红色固体被证明是3-十七烷基-5-(戊基氨基)-1,2-苯醌。用3-十五烷基儿茶酚的4-甲基和6-甲基类似物衍生的醌也得到了类似的氨基苯醌。所有这三种加合物在不同波长下吸收可见光。当起始儿茶酚与人血清白蛋白一起孵育时,形成了几乎相同的发色团。这些结果表明,导致人类毒橡树/毒常春藤接触性皮炎的儿茶酚在人血清白蛋白存在下会发生一系列反应,导致儿茶酚通过碳氮键与蛋白质共价结合。对这种结合程度的估计表明,至少与人血清白蛋白反应时,反应是定量的。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验