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使用合成线性四吡咯探测人胆绿素-IXα还原酶和人胆绿素-IXβ还原酶的Verdin位点。

The use of synthetic linear tetrapyrroles to probe the verdin sites of human biliverdin-IXalpha reductase and human biliverdin-IXbeta reductase.

作者信息

Franklin Edward M, Browne Seamus, Horan Anne M, Inomata Katsuhiko, Hammam Mostafa A S, Kinoshita Hideki, Lamparter Tilman, Golfis Georgia, Mantle Timothy J

机构信息

School of Biochemistry and Immunology, Trinity College, Dublin, Ireland.

出版信息

FEBS J. 2009 Aug;276(16):4405-13. doi: 10.1111/j.1742-4658.2009.07148.x. Epub 2009 Jul 15.

Abstract

Many vertebrate species express two enzymes that are capable of catalysing the reduction of various isomers of biliverdin. Biliverdin-IXalpha reductase (BVR-A) is most active with its physiological substrate biliverdin-IXalpha, but can also reduce the three other biliverdin isomers IXbeta, IXdelta and IXgamma. Biliverdin-IXbeta reductase (BVR-B) catalyses the reduction of only the IXbeta, IXdelta and IXgamma isomers of biliverdin. Therefore, the activity of BVR-A can be measured using biliverdin-IXalpha as a specific substrate. We now show that the dimethyl esters of biliverdin-IXbeta and biliverdin-IXdelta are substrates for BVR-B, but not for BVR-A. This provides a useful method for specifically assaying the activity of both BVR-A and BVR-B in crude mixtures, using biliverdin-IXalpha for BVR-A and the dimethyl ester of either biliverdin-IXbeta or biliverdin-IXdelta for BVR-B. Human BVR-A has been suggested as a pharmacological target for neonatal jaundice. Because of the absence of a crystal structure with biliverdin bound to BVR-A, we have investigated indirect ways of examining tetrapyrrole binding. In the present study, we report that a number of sterically locked conformers of 18-ethylbiliverdin-IXalpha are substrates for human BVR-A, and discuss the implications for the biliverdin binding site. The oxidation of bilirubin-IXalpha ditaurate to biliverdin-IXalpha ditaurate is also described. We show that biliverdin-IXalpha ditaurate is a substrate for human BVR-A and discuss the possibility of using a competing substrate, which is reduced to a water soluble and excretable rubin, as a prototypic inhibitor of BVR-A.

摘要

许多脊椎动物物种表达两种能够催化胆红素还原的酶。胆红素-IXα还原酶(BVR-A)对其生理底物胆红素-IXα活性最高,但也能还原其他三种胆红素异构体IXβ、IXδ和IXγ。胆红素-IXβ还原酶(BVR-B)仅催化胆红素的IXβ、IXδ和IXγ异构体的还原。因此,BVR-A的活性可以用胆红素-IXα作为特异性底物来测定。我们现在表明,胆红素-IXβ和胆红素-IXδ的二甲酯是BVR-B的底物,但不是BVR-A的底物。这提供了一种有用的方法,可用于在粗混合物中特异性测定BVR-A和BVR-B的活性,用胆红素-IXα测定BVR-A的活性,用胆红素-IXβ或胆红素-IXδ的二甲酯测定BVR-B的活性。人BVR-A已被认为是新生儿黄疸的一个药理学靶点。由于缺乏胆红素与BVR-A结合的晶体结构,我们研究了检查四吡咯结合的间接方法。在本研究中,我们报告了18-乙基胆红素-IXα的一些空间锁定构象异构体是人BVR-A的底物,并讨论了其对胆红素结合位点的影响。还描述了胆红素-IXα二牛磺酸盐氧化为胆红素-IXα二牛磺酸盐的过程。我们表明,胆红素-IXα二牛磺酸盐是人BVR-A的底物,并讨论了使用一种竞争性底物的可能性,该底物可还原为水溶性且可排泄的鲁宾,作为BVR-A的原型抑制剂。

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