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使视觉循环短路的芳香胺的作用机制。

Mechanism of action of aromatic amines that short-circuit the visual cycle.

作者信息

Bernstein P S, Fulton B S, Rando R R

出版信息

Biochemistry. 1986 Jun 3;25(11):3370-7. doi: 10.1021/bi00359a042.

DOI:10.1021/bi00359a042
PMID:3488078
Abstract

DAPP [1,5-bis(p-aminophenoxy)pentane] is an antischistosomal drug that can inhibit dark adaptation in vertebrates by impairing formation of 11-cis-retinoids in the eye and by depleting preformed stores of them [Bernstein, P. S., & Rando, R. R. (1985) Vis. Res. 25, 741-748]. It has recently been shown that p-phenetidine and other monofunctional analogues of DAPP (a symmetric bifunctional molecule) can duplicate DAPP's effects, and it was proposed that these retinotoxic compounds exert their effects in vivo by "short-circuiting" the visual cycle, catalyzing the thermodynamically downhill isomerization of 11-cis-retinal to all-trans-retinal [Bernstein, P. S., Lichtman, J. R., & Rando, R. R. (1986) Proc. Natl. Acad. Sci. U.S.A. 83, 1632-1635]. In this paper, the "short-circuit" hypothesis is investigated more fully. Numerous phenetidine-like molecules are assayed for their ability to inhibit rhodopsin formation and 11-cis-retinyl palmitate formation in the living frog eye. It is found that virtually any aromatic amine with a moderately hydrophobic alkyl chain "tail" is an active inhibitor in vivo. The tail can be in either the para or the meta position and can be attached to the aromatic ring either by direct linkage or by an ether linkage. Compounds that can be metabolized in vivo to such active compounds are also inhibitory. Amino group modification studies demonstrate an absolute requirement for structures that can form a Schiff base with retinal.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

DAPP[1,5 - 双(对氨基苯氧基)戊烷]是一种抗血吸虫药物,它可通过损害眼睛中11 - 顺式视黄醛的形成以及耗尽其预先形成的储备,从而抑制脊椎动物的暗适应[伯恩斯坦,P.S.,& 兰多,R.R.(1985年)《视觉研究》25卷,741 - 748页]。最近研究表明,对乙氧基苯胺和DAPP(一种对称双功能分子)的其他单功能类似物可重现DAPP的作用,并且有人提出这些视网膜毒性化合物在体内通过“短路”视觉循环发挥作用,催化11 - 顺式视黄醛向全反式视黄醛的热力学下坡异构化反应[伯恩斯坦,P.S.,利希特曼,J.R.,& 兰多,R.R.(1986年)《美国国家科学院院刊》83卷,1632 - 1635页]。在本文中,对“短路”假说进行了更全面的研究。对众多类似对乙氧基苯胺的分子进行了测定,以考察它们在活蛙眼中抑制视紫红质形成和11 - 顺式视黄醛棕榈酸酯形成的能力。研究发现,实际上任何带有适度疏水烷基链“尾巴”的芳香胺在体内都是一种活性抑制剂。该尾巴可以处于对位或间位,并且可以通过直接连接或醚键连接到芳香环上。在体内可代谢为此类活性化合物的化合物也具有抑制作用。氨基修饰研究表明,对于能够与视黄醛形成席夫碱的结构存在绝对需求。(摘要截选至250词)

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Mechanism of action of aromatic amines that short-circuit the visual cycle.使视觉循环短路的芳香胺的作用机制。
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