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急性间歇性卟啉症的结构洞察

Structural insight into acute intermittent porphyria.

作者信息

Song Gaojie, Li Yang, Cheng Chongyun, Zhao Yu, Gao Ang, Zhang Rongguang, Joachimiak Andrzej, Shaw Neil, Liu Zhi-Jie

机构信息

National Laboratory of Biomacromolecules, Institute of Biophysics, 15 Datun Lu, Beijing 100101, China.

出版信息

FASEB J. 2009 Feb;23(2):396-404. doi: 10.1096/fj.08-115469. Epub 2008 Oct 20.

Abstract

Acute intermittent porphyria (AIP), an inherited disease of heme biosynthesis, is one of the most common types of porphyria. Reduced activity of the enzyme porphobilinogen deaminase (PBGD), which catalyzes the sequential condensation of 4 molecules of porphobilinogen to yield preuroporphyrinogen, has been linked to the symptoms of AIP. We have determined the 3-dimensional structure of human PBGD at 2.2 A resolution. Analysis of the structure revealed a dipyrromethane cofactor molecule covalently linked to C261, sitting in a positively charged cleft region. In addition to the critical catalytic D99, a number of other residues are seen hydrogen bonded to the cofactor and play a role in catalysis. Sequential entry of 4 pyrrole molecules into the active site is accomplished by movement of the domains around the hinges. H120P mutation resulted in an inactive enzyme, supporting the role of H120 as a hinge residue. Interestingly, some of the mutations of the human PBGD documented in patients suffering from AIP are located far away from the active site. The structure provides insights into the mechanism of action of PBGD at the molecular level and could aid the development of potential drugs for the up-regulation of PBGD activity in AIP.

摘要

急性间歇性卟啉病(AIP)是一种血红素生物合成的遗传性疾病,是最常见的卟啉病类型之一。胆色素原脱氨酶(PBGD)的活性降低与AIP的症状有关,该酶催化4分子胆色素原顺序缩合生成尿卟啉原。我们已确定人PBGD在2.2埃分辨率下的三维结构。结构分析显示,一个二吡咯甲烷辅因子分子与C261共价连接,位于带正电荷的裂隙区域。除了关键的催化残基D99外,还发现一些其他残基与辅因子形成氢键并在催化中发挥作用。4个吡咯分子通过围绕铰链的结构域移动依次进入活性位点。H120P突变导致酶无活性,支持H120作为铰链残基的作用。有趣的是,在患有AIP的患者中记录的一些人PBGD突变位于远离活性位点的位置。该结构在分子水平上为PBGD的作用机制提供了见解,并有助于开发上调AIP中PBGD活性的潜在药物。

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