Thompson J M, Jones H A, Perry R D
Department of Microbiology and Immunology, University of Kentucky, Lexington, Kentucky 40536-0084, USA.
Infect Immun. 1999 Aug;67(8):3879-92. doi: 10.1128/IAI.67.8.3879-3892.1999.
Sequence analysis of the hemin uptake locus (hmu) of Yersinia pestis revealed five genes, hmuRSTUV, required for use of hemin and hemoproteins as iron sources. The translated gene products have homologies with proteins of the hemin transport genes of several gram-negative bacteria. Promoters were identified upstream of hmuP'R (p1) and upstream of hmuS (p2); p1, which contains a Fur box, is regulated by iron and Fur, while p2 exhibits weak, but constitutive, activity. HmuR, which has homology with TonB-dependent outer membrane (OM) receptors, is localized to the OM of Y. pestis and is required for utilizing hemin and all hemoproteins under iron-depleted conditions. The proposed ABC transporter, HmuTUV, is necessary for use of hemin, hemin-albumin, and myoglobin, but not hemoglobin, hemoglobin-haptoglobin, or heme-hemopexin, as iron sources. In the absence of HmuTUV, HmuS, a cytoplasmic protein, is involved in use of hemoglobin and heme-hemopexin. In mice, the 50% lethal doses of Y. pestis DeltahmuP'RSTUV mutants injected subcutaneously or retro-orbitally did not differ from that of the Hmu(+) parent strain. Thus, the hmu system is not essential for infection in mice via these routes. Growth studies showed that a DeltahmuP'RSTUV mutant could grow in iron-depleted medium containing high concentrations of hemoglobin, suggesting that an Hmu-independent, lower-affinity hemoglobin uptake system may exist.
鼠疫耶尔森氏菌血红素摄取位点(hmu)的序列分析揭示了五个基因hmuRSTUV,它们是利用血红素和血红蛋白作为铁源所必需的。翻译后的基因产物与几种革兰氏阴性菌的血红素转运基因的蛋白质具有同源性。在hmuP'R上游(p1)和hmuS上游(p2)鉴定到了启动子;包含Fur框的p1受铁和Fur调控,而p2表现出微弱但组成型的活性。与TonB依赖性外膜(OM)受体具有同源性的HmuR定位于鼠疫耶尔森氏菌的外膜,并且在缺铁条件下利用血红素和所有血红蛋白是必需的。拟议的ABC转运蛋白HmuTUV对于利用血红素、血红素 - 白蛋白和肌红蛋白作为铁源是必需的,但对于血红蛋白、血红蛋白 - 结合珠蛋白或血红素 - 血红素结合蛋白则不是必需的。在没有HmuTUV的情况下,细胞质蛋白HmuS参与血红蛋白和血红素 - 血红素结合蛋白的利用。在小鼠中,皮下或眶后注射鼠疫耶尔森氏菌DeltahmuP'RSTUV突变体的50%致死剂量与Hmu(+)亲本菌株没有差异。因此,hmu系统对于通过这些途径感染小鼠不是必需的。生长研究表明,DeltahmuP'RSTUV突变体可以在含有高浓度血红蛋白的缺铁培养基中生长,这表明可能存在一个不依赖Hmu的、低亲和力的血红蛋白摄取系统。