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牙龈卟啉单胞菌 HmuY 血卟啉结合镓(III)、锌(II)、钴(III)、锰(III)、镍(II)和铜(II)原卟啉 IX,但与铁(III)原卟啉 IX 的结合方式不同。

The Porphyromonas gingivalis HmuY haemophore binds gallium(iii), zinc(ii), cobalt(iii), manganese(iii), nickel(ii), and copper(ii) protoporphyrin IX but in a manner different to iron(iii) protoporphyrin IX.

机构信息

University of Wrocław, Faculty of Biotechnology, Laboratory of Biochemistry, Tamka St. 2, 50-137 Wrocław, Poland.

出版信息

Metallomics. 2013 Apr;5(4):343-51. doi: 10.1039/c3mt20215a.

Abstract

Porphyromonas gingivalis, a major etiological agent of chronic periodontitis, acquires haem from host haemoproteins through a haem transporter HmuR and a haemophore HmuY. The aim of this study was to analyse the binding specificity of HmuY towards non-iron metalloporphyrins which may be employed as antimicrobials to treat periodontitis. HmuY binds gallium(iii), zinc(ii), cobalt(iii), manganese(iii), nickel(ii), and copper(ii) protoporphyrin IX but in a manner different to iron(iii) protoporphyrin IX which uses His(134) and His(166) as axial ligands. The metal ions in Ga(iii)PPIX and Zn(ii)PPIX can accept only His(166) as an axial ligand, whereas nickel(ii) and copper(ii) interact exclusively with His(134). Two forms of pentacoordinate manganese(iii) are present in the Mn(iii)PPIX-HmuY complex since the metal accepts either His(134) or His(166) as a single axial ligand. The cobalt ion is hexacoordinate in the Co(iii)PPIX-HmuY complex and binds His(134) and His(166) as axial ligands; however, some differences in their environments exist. Despite different coordination modes of the central metal ion, gallium(iii), zinc(ii), cobalt(iii), and manganese(iii) protoporphyrin IX bound to the HmuY haemophore cannot be displaced by excess haem. All of the metalloporphyrins examined bind to a P. gingivalis wild-type strain with higher ability compared to a mutant strain lacking a functional hmuY gene, thus corroborating binding of non-iron metalloporphyrins to purified HmuY protein. Our results further clarify the basis of metalloporphyrin acquisition by P. gingivalis and add to understanding of the interactions with porphyrin derivatives which exhibit antimicrobial activity against P. gingivalis.

摘要

牙龈卟啉单胞菌是慢性牙周炎的主要病因之一,通过血红素转运蛋白 HmuR 和血红素载体 HmuY 从宿主血红素蛋白中获取血红素。本研究旨在分析 HmuY 与非铁金属卟啉的结合特异性,这些卟啉可能被用作治疗牙周炎的抗菌药物。HmuY 结合三价镓、二价锌、三价钴、三价锰、二价镍和二价铜原卟啉 IX,但结合方式与三价铁原卟啉 IX 不同,后者使用 His(134)和 His(166)作为轴向配体。Ga(iii)PPIX 和 Zn(ii)PPIX 中的金属离子只能接受 His(166)作为轴向配体,而镍(II)和铜(II)则仅与 His(134)相互作用。在 Mn(iii)PPIX-HmuY 复合物中存在两种形式的五配位锰(III),因为金属接受 His(134)或 His(166)作为单个轴向配体。在 Co(iii)PPIX-HmuY 配合物中,钴离子为六配位,并结合 His(134)和 His(166)作为轴向配体;然而,它们的环境存在一些差异。尽管中心金属离子的配位方式不同,但与血红素结合的 Ga(iii)、Zn(ii)、Co(iii)和 Mn(iii)原卟啉 IX 不能被过量血红素置换。与缺乏功能性 hmuY 基因的突变株相比,所有检查过的金属卟啉都能更有效地结合到野生型 P. gingivalis 菌株上,这进一步证实了非铁金属卟啉与纯化的 HmuY 蛋白的结合。我们的研究结果进一步阐明了 P. gingivalis 摄取金属卟啉的基础,并加深了对与表现出抗 P. gingivalis 抗菌活性的卟啉衍生物相互作用的理解。

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