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马脾脱铁铁蛋白与金属卟啉络合特性的结构研究

Structural investigation of the complexation properties between horse spleen apoferritin and metalloporphyrins.

作者信息

Michaux M A, Dautant A, Gallois B, Granier T, d'Estaintot B L, Précigoux G

机构信息

Laboratoire de Cristallographie et de Physique Cristalline, ERS 133 CNRS, Université de Bordeaux I, Talence, France.

出版信息

Proteins. 1996 Mar;24(3):314-21. doi: 10.1002/(SICI)1097-0134(199603)24:3<314::AID-PROT4>3.0.CO;2-G.

DOI:10.1002/(SICI)1097-0134(199603)24:3<314::AID-PROT4>3.0.CO;2-G
PMID:8778778
Abstract

Crystallographic studies of L-chain horse spleen apoferritin (HSF) co-crystallized with Pt-hematoporphyrin IX and Snprotoporphyrin IX have brought significant new insights into structure-function relationships in ferritins. Interactions of HSF with porphyrins are discussed. Structural results show that the nestling properties into HSF are dependent on the porphyrin moiety. (Only protoporphyrin IX significantly interacts with the protein, whereas hematoporphyrin IX does not.) These studies additionally point out the L-chain HSF ability to demetalate metalloporphyrins, a result which is of importance in looking at the iron storage properties of ferritins. In both compound investigated (whether the porphyrin reaches the binding site or not), the complexation appears to be concomitant with the extraction of the metal from the porphyrin. To analyze further the previous results, a three-dimensional alignment of ferritin sequences based on available, crystallographic coordinates, including the present structures, is given. It confirms a high degree of homology between these members of the ferritin family and thus allows us to emphasize observed structural differences: 1) unlike L-chain HSF, H-chain human ferritin presents no preformed binding site; and 2) despite the absence of axial ligands, and due to the demetalation, L-chain HSF is able to host protoporphyrin at a similar location to that naturally found in bacterioferritin.

摘要

对与铂-血卟啉IX和锡原卟啉IX共结晶的L链马脾脱铁铁蛋白(HSF)进行的晶体学研究,为铁蛋白的结构-功能关系带来了重要的新见解。讨论了HSF与卟啉的相互作用。结构结果表明,HSF中的嵌套特性取决于卟啉部分。(只有原卟啉IX与蛋白质有显著相互作用,而血卟啉IX则没有。)这些研究还指出了L链HSF使金属卟啉脱金属的能力,这一结果对于研究铁蛋白的铁储存特性很重要。在研究的两种化合物中(无论卟啉是否到达结合位点),络合似乎都伴随着卟啉中金属的提取。为了进一步分析先前的结果,给出了基于现有晶体学坐标(包括当前结构)的铁蛋白序列的三维比对。它证实了铁蛋白家族这些成员之间的高度同源性,从而使我们能够强调观察到的结构差异:1)与L链HSF不同,H链人铁蛋白没有预先形成的结合位点;2)尽管没有轴向配体,并且由于脱金属作用,L链HSF能够在与细菌铁蛋白中天然存在的位置相似的位置容纳原卟啉。

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