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非典型流感嗜血杆菌对血红素的利用是必需的,并且依赖于 Sap 转运体的功能。

Heme utilization by nontypeable Haemophilus influenzae is essential and dependent on Sap transporter function.

机构信息

The Research Institute at Nationwide Children's Hospital, The Ohio State University College of Medicine, Department of Pediatrics, Center for Microbial Pathogenesis, Columbus, OH 43205, USA.

出版信息

J Bacteriol. 2011 May;193(10):2527-35. doi: 10.1128/JB.01313-10. Epub 2011 Mar 25.

Abstract

Bacterial strategies of innate immune evasion and essential metabolic functions are critical for commensal-host homeostasis. Previously, we showed that Sap translocator function is necessary for nontypeable Haemophilus influenzae (NTHI) behaviors that mediate diseases of the human airway. Antimicrobial peptide (AP) lethality is limited by binding mediated by the Sap complex. SapA shares homology with the dipeptide-binding protein (DppA) and the heme-binding lipoprotein (HbpA), both of which have previously been shown to bind the iron-containing compound heme, whose acquisition is essential for Haemophilus survival. Computational modeling revealed conserved SapA residues, similarly modeled to mediate heme binding in HbpA. Here, we directly demonstrate that SapA bound heme and was essential for heme utilization by iron-starved NTHI. Further, the Sap translocator permease mediated heme transport into the bacterial cytoplasm, thus defining a heretofore unknown mechanism of intracytoplasmic membrane heme transport in Haemophilus. Since we demonstrate multiple ligand specificity for the SapA-binding protein, we tested whether APs would compete with heme for SapA binding. We showed that human β-defensins 2 and 3, human cathelicidin LL-37, human neutrophil protein 1, and melittin displaced heme bound to SapA, thus supporting a hierarchy wherein immune evasion supercedes even the needed iron acquisition functions of the Sap system.

摘要

细菌逃避先天免疫和进行基本代谢的策略对于共生宿主的体内平衡至关重要。此前,我们发现非典型流感嗜血杆菌(NTHI)的 Sap 转运蛋白功能对于介导人类气道疾病的行为是必需的。抗菌肽(AP)的致死作用受到 Sap 复合物结合介导的限制。SapA 与二肽结合蛋白(DppA)和血红素结合脂蛋白(HbpA)具有同源性,这两种蛋白先前都被证明可以结合含铁化合物血红素,血红素的获取对嗜血杆菌的生存是必需的。计算建模揭示了保守的 SapA 残基,这些残基与 HbpA 中的血红素结合类似,被建模为介导血红素结合。在这里,我们直接证明 SapA 结合了血红素,并且对于缺铁的 NTHI 利用血红素是必需的。此外,Sap 转运蛋白渗透酶介导血红素进入细菌细胞质的运输,从而定义了以前未知的 Haemophilus 细胞质内膜血红素运输机制。由于我们证明了 SapA 结合蛋白的多种配体特异性,因此我们测试了 AP 是否会与血红素竞争 SapA 结合。我们发现人β-防御素 2 和 3、人源杀菌肽 LL-37、人中性粒细胞蛋白 1 和蜂毒素置换了与 SapA 结合的血红素,从而支持了一种免疫逃避甚至超越 Sap 系统所需铁获取功能的优先级。

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