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空肠弯曲菌中的血红素利用

Heme utilization in Campylobacter jejuni.

作者信息

Ridley Kristian A, Rock Jonathan D, Li Ying, Ketley Julian M

机构信息

Department of Genetics, University of Leicester, Adrian Building, University Road, Leicester LE1 7RH, United Kingdom.

出版信息

J Bacteriol. 2006 Nov;188(22):7862-75. doi: 10.1128/JB.00994-06. Epub 2006 Sep 15.

Abstract

A putative iron- and Fur-regulated hemin uptake gene cluster, composed of the transport genes chuABCD and a putative heme oxygenase gene (Cj1613c), has been identified in Campylobacter jejuni NCTC 11168. Mutation of chuA or Cj1613c leads to an inability to grow in the presence of hemin or hemoglobin as a sole source of iron. Mutation of chuB, -C, or -D only partially attenuates growth where hemin is the sole iron source, suggesting that an additional inner membrane (IM) ABC (ATP-binding cassette) transport system(s) for heme is present in C. jejuni. Genotyping experiments revealed that Cj1613c is highly conserved in 32 clinical isolates. One strain did not possess chuC, though it was still capable of using hemin/hemoglobin as a sole iron source, supporting the hypothesis that additional IM transport genes are present. In two other strains, sequence variations within the gene cluster were apparent and may account for an observed negative heme utilization phenotype. Analysis of promoter activity within the Cj1613c-chuA intergenic spacer region revealed chuABCD and Cj1613c are expressed from separate iron-repressed promoters and that this region also specifically binds purified recombinant Fur(Cj) in gel retardation studies. Absorbance spectroscopy of purified recombinant His(6)-Cj1613c revealed a 1:1 heme:His(6)-Cj1613c binding ratio. The complex was oxidatively degraded in the presence of ascorbic acid as the electron donor, indicating that the Cj1613c gene product functions as a heme oxygenase. In conclusion, we confirm the involvement of Cj1613c and ChuABCD in heme/hemoglobin utilization in C. jejuni.

摘要

在空肠弯曲菌NCTC 11168中,已鉴定出一个假定的铁和Fur调节的血红素摄取基因簇,该基因簇由转运基因chuABCD和一个假定的血红素加氧酶基因(Cj1613c)组成。chuA或Cj1613c发生突变会导致在以血红素或血红蛋白作为唯一铁源的情况下无法生长。chuB、-C或-D发生突变仅部分减弱了以血红素作为唯一铁源时的生长,这表明空肠弯曲菌中存在额外的内膜(IM)ABC(ATP结合盒)血红素转运系统。基因分型实验表明,Cj1613c在32株临床分离株中高度保守。有一个菌株不具有chuC,尽管它仍然能够使用血红素/血红蛋白作为唯一铁源,这支持了存在额外IM转运基因的假设。在另外两个菌株中,基因簇内的序列变异很明显,这可能解释了观察到的负血红素利用表型。对Cj1613c-chuA基因间隔区启动子活性的分析表明,chuABCD和Cj1613c由单独的铁抑制启动子表达,并且在凝胶阻滞研究中该区域还能特异性结合纯化的重组Fur(Cj)。纯化的重组His(6)-Cj1613c的吸收光谱显示血红素与His(6)-Cj1613c的结合比例为1:1。在以抗坏血酸作为电子供体的情况下,该复合物被氧化降解,这表明Cj1613c基因产物具有血红素加氧酶的功能。总之,我们证实了Cj1613c和ChuABCD参与了空肠弯曲菌对血红素/血红蛋白的利用。

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