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瞬时弱蛋白-蛋白复合物将血红素穿过金黄色葡萄球菌的细胞壁转移。

Transient weak protein-protein complexes transfer heme across the cell wall of Staphylococcus aureus.

机构信息

Department of Chemistry and Biochemistry and the UCLA-DOE Institute for Genomics and Proteomics, University of California, Los Angeles, California 90095, USA.

出版信息

J Am Chem Soc. 2011 Sep 14;133(36):14176-9. doi: 10.1021/ja203805b. Epub 2011 Aug 19.

Abstract

Iron is an essential nutrient for the bacterial pathogen Staphylococcus aureus . Heme in hemoglobin (Hb) is the most abundant source of iron in the human body and during infections is captured by S. aureus using iron-regulated surface determinant (Isd) proteins. A central step in this process is the transfer of heme between the cell wall associated IsdA and IsdC hemoproteins. Biochemical evidence indicates that heme is transferred via an activated IsdA:heme:IsdC heme complex. Transfer is rapid and occurs up to 70,000 times faster than indirect mechanisms in which heme is released into the solvent. To gain insight into the mechanism of transfer, we modeled the structure of the complex using NMR paramagnetic relaxation enhancement (PRE) methods. Our results indicate that IsdA and IsdC transfer heme via an ultraweak affinity "handclasp" complex that juxtaposes their respective 3(10) helices and β7/β8 loops. Interestingly, PRE also identified a set of transient complexes that could represent high-energy pre-equilibrium encounter species that form prior to the stereospecific handclasp complex. Targeted amino acid mutagenesis and stopped-flow measurements substantiate the functional relevance of a PRE-derived model, as mutation of interfacial side chains significantly slows the rate of transfer. IsdA and IsdC bind heme using NEAr Transporter (NEAT) domains that are conserved in many species of pathogenic Gram-positive bacteria. Heme transfer in these microbes may also occur through structurally similar transient stereospecific complexes.

摘要

铁是细菌病原体金黄色葡萄球菌的必需营养素。血红蛋白 (Hb) 中的血红素是人体内铁的最丰富来源,在感染期间,金黄色葡萄球菌会使用铁调节表面决定簇 (Isd) 蛋白捕获血红素。这个过程的一个关键步骤是血红素在与细胞壁相关的 IsdA 和 IsdC 血红素蛋白之间转移。生化证据表明,血红素通过激活的 IsdA:血红素:IsdC 血红素复合物进行转移。转移速度很快,比血红素释放到溶剂中的间接机制快 70,000 倍以上。为了深入了解转移机制,我们使用 NMR 顺磁弛豫增强 (PRE) 方法对该复合物的结构进行建模。我们的结果表明,IsdA 和 IsdC 通过超弱亲和力“握手”复合物转移血红素,该复合物使它们各自的 3(10) 螺旋和β7/β8 环并列。有趣的是,PRE 还鉴定了一组瞬态复合物,这些复合物可能代表形成立体特异性握手复合物之前的高能预平衡遭遇物种。靶向氨基酸突变和停流测量证实了 PRE 衍生模型的功能相关性,因为界面侧链的突变会显著降低转移速率。IsdA 和 IsdC 使用在许多致病性革兰氏阳性菌中保守的 NEAr 转运蛋白 (NEAT) 结构域结合血红素。这些微生物中的血红素转移也可能通过结构相似的瞬态立体特异性复合物发生。

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