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醌和醌甲基化物作为中间过渡态参与烟草天蛾表皮可溶性酶对N-酰基多巴胺衍生物侧链的羟基化反应。

Quinone and quinone methide as transient intermediates involved in the side chain hydroxylation of N-acyldopamine derivatives by soluble enzymes from Manduca sexta cuticle.

作者信息

Saul S J, Dali H, Sugumaran M

机构信息

Department of Biology, University of Massachusetts, Boston 02125.

出版信息

Arch Insect Biochem Physiol. 1991;16(2):123-38. doi: 10.1002/arch.940160205.

DOI:10.1002/arch.940160205
PMID:1799673
Abstract

Proteins solubilized from the pharate cuticle of Manduca sexta were fractionated by ammonium sulfate precipitation and activated by the endogenous enzymes. The activated fraction readily converted exogenously supplied N-acetyldopamine (NADA) to N-acetylnorepinephrine (NANE). Either heat treatment (70 degrees C for 10 min) or addition of phenylthiourea (2.5 microM) caused total inhibition of the side chain hydroxylation. If chemically prepared NADA quinone was supplied instead of NADA to the enzyme solution containing phenylthiourea, it was converted to NANE. Presence of a quinone trap such as N-acetylcysteine in the NADA-cuticular enzyme reaction not only prevented the accumulation of NADA quinone, but also abolished NANE production. In such reaction mixtures, the formation of a new compound characterized as NADA-quinone-N-acetylcysteine adduct could be readily witnessed. These studies indicate that NADA quinone is an intermediate during the side chain hydroxylation of NADA by Manduca cuticular enzyme(s). Since such a conversion calls for the isomerization of NADA quinone to NADA quinone methide and subsequent hydration of NADA quinone methide, attempts were also made to trap the latter compound by performing the enzymatic reaction in methanol. These attempts resulted in the isolation of beta-methoxy NADA (NADA quinone methide methanol adduct) as an additional product. Similarly, when the N-beta-alanyldopamine (NBAD)-Manduca enzyme reaction was carried out in the presence of L-kynurenine, two diastereoisomers of NBAD quinone methide-kynurenine adduct (= papiliochrome IIa and IIb) could be isolated.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

从烟草天蛾(Manduca sexta)蛹皮中溶解的蛋白质通过硫酸铵沉淀进行分级分离,并由内源性酶激活。激活后的组分能够轻易地将外源提供的N - 乙酰多巴胺(NADA)转化为N - 乙酰去甲肾上腺素(NANE)。热处理(70℃,10分钟)或添加苯基硫脲(2.5微摩尔)都会导致侧链羟基化完全被抑制。如果在含有苯基硫脲的酶溶液中提供化学制备的NADA醌而不是NADA,它会转化为NANE。在NADA - 表皮酶反应中存在醌捕获剂如N - 乙酰半胱氨酸,不仅可以防止NADA醌的积累,还能消除NANE的产生。在这样的反应混合物中,可以很容易地观察到一种新化合物的形成,其特征为NADA - 醌 - N - 乙酰半胱氨酸加合物。这些研究表明,NADA醌是烟草天蛾表皮酶将NADA进行侧链羟基化过程中的一个中间体。由于这种转化需要NADA醌异构化为NADA醌甲基化物,随后NADA醌甲基化物进行水合作用,因此也尝试通过在甲醇中进行酶促反应来捕获后一种化合物。这些尝试导致分离出β - 甲氧基NADA(NADA醌甲基化物甲醇加合物)作为额外的产物。同样,当在L - 犬尿氨酸存在下进行N - β - 丙氨酰多巴胺(NBAD) - 烟草天蛾酶反应时,可以分离出NBAD醌甲基化物 - 犬尿氨酸加合物的两种非对映异构体(= 凤蝶色素IIa和IIb)。(摘要截断于250字)

相似文献

1
Quinone and quinone methide as transient intermediates involved in the side chain hydroxylation of N-acyldopamine derivatives by soluble enzymes from Manduca sexta cuticle.醌和醌甲基化物作为中间过渡态参与烟草天蛾表皮可溶性酶对N-酰基多巴胺衍生物侧链的羟基化反应。
Arch Insect Biochem Physiol. 1991;16(2):123-38. doi: 10.1002/arch.940160205.
2
Biosynthesis of dehydro-N-acetyldopamine by a soluble enzyme preparation from the larval cuticle of Sarcophaga bullata involves intermediary formation of N-acetyldopamine quinone and N-acetyldopamine quinone methide.来自棕尾别麻蝇幼虫表皮的一种可溶性酶制剂合成脱氢-N-乙酰多巴胺的过程涉及N-乙酰多巴胺醌和N-乙酰多巴胺醌甲基化物的中间形成。
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On the mechanism of side chain oxidation of N-beta-alanyldopamine by cuticular enzymes from Sarcophaga bullata.关于麻蝇表皮酶对N-β-丙氨酰多巴胺侧链氧化的机制
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A novel quinone: quinone methide isomerase generates quinone methides in insect cuticle.一种新型醌:醌甲基化物异构酶在昆虫表皮中生成醌甲基化物。
FEBS Lett. 1988 Sep 12;237(1-2):155-8. doi: 10.1016/0014-5793(88)80191-1.
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Mechanism of activation of 1,2-dehydro-N-acetyldopamine for cuticular sclerotization.1,2-脱氢-N-乙酰多巴胺用于表皮硬化的激活机制。
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Characterization of a new enzyme system that desaturates the side chain of N-acetyldopamine.一种使N-乙酰多巴胺侧链去饱和的新酶系统的特性分析。
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Evidence for the formation of a quinone methide during the oxidation of the insect cuticular sclerotizing precursor 1,2-dehydro-N-acetyldopamine.昆虫表皮硬化前体1,2-脱氢-N-乙酰多巴胺氧化过程中醌甲基化物形成的证据。
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