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与人类血红素加氧酶-1复合的亚铁血红素和亚铁-一氧化氮血红素形式的晶体结构:对血红素裂解的催化意义。

Crystal structures of ferrous and ferrous-NO forms of verdoheme in a complex with human heme oxygenase-1: catalytic implications for heme cleavage.

作者信息

Lad Latesh, Ortiz de Montellano Paul R, Poulos Thomas L

机构信息

Department of Molecular Biology and Biochemistry, University of California, 2206 Natural Sciences 1, Irvine, CA 92697-3900, USA.

出版信息

J Inorg Biochem. 2004 Nov;98(11):1686-95. doi: 10.1016/j.jinorgbio.2004.07.004.

Abstract

Heme oxygenase oxidatively degrades heme to biliverdin resulting in the release of iron and CO through a process in which the heme participates both as a cofactor and substrate. One of the least understood steps in the heme degradation pathway is the conversion of verdoheme to biliverdin. In order to obtain a better understanding of this step we report the crystal structures of ferrous-verdoheme and, as a mimic for the oxy-verdoheme complex, ferrous-NO verdoheme in a complex with human HO-1 at 2.20 and 2.10 A, respectively. In both structures the verdoheme occupies the same binding location as heme in heme-HO-1, but rather than being ruffled verdoheme in both sets of structures is flat. Both structures are similar to their heme counterparts except for the distal helix and heme pocket solvent structure. In the ferrous-verdoheme structure the distal helix moves closer to the verdoheme, thus tightening the active site. NO binds to verdoheme in a similar bent conformation to that found in heme-HO-1. The bend angle in the verodoheme-NO structure places the terminal NO oxygen 1 A closer to the alpha-meso oxygen of verdoheme compared to the alpha-meso carbon on the heme-NO structure. A network of water molecules, which provide the required protons to activate the iron-oxy complex of heme-HO-1, is absent in both ferrous-verdoheme and the verdoheme-NO structure.

摘要

血红素加氧酶将血红素氧化降解为胆绿素,通过该过程,血红素作为辅因子和底物参与其中,从而释放出铁和一氧化碳。血红素降解途径中最不为人所理解的步骤之一是高铁血红素向胆绿素的转化。为了更好地理解这一步骤,我们分别报道了亚铁-高铁血红素以及作为氧合高铁血红素类似物的亚铁-NO高铁血红素与人HO-1复合物的晶体结构,分辨率分别为2.20 Å和2.10 Å。在这两种结构中,高铁血红素占据了血红素-HO-1中血红素相同的结合位点,但在这两组结构中,高铁血红素并非呈褶皱状,而是扁平的。除了远端螺旋和血红素口袋溶剂结构外,这两种结构与其血红素对应物相似。在亚铁-高铁血红素结构中,远端螺旋向高铁血红素靠近,从而收紧活性位点。NO以与血红素-HO-1中相似的弯曲构象与高铁血红素结合。与血红素-NO结构中的α-中位碳相比,高铁血红素-NO结构中的弯曲角度使末端NO氧距离高铁血红素的α-中位氧近1 Å。在亚铁-高铁血红素和高铁血红素-NO结构中均不存在为激活血红素-HO-1的铁-氧复合物提供所需质子的水分子网络。

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