首页> 美国卫生研究院文献>Journal of Bacteriology >Identification and Characterization of pvuA a Gene Encoding the Ferric Vibrioferrin Receptor Protein in Vibrio parahaemolyticus
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Identification and Characterization of pvuA a Gene Encoding the Ferric Vibrioferrin Receptor Protein in Vibrio parahaemolyticus

机译:pvuA的鉴定和鉴定pvuA是一种编码副溶血性弧菌中铁弧菌铁蛋白受体蛋白的基因

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摘要

We previously reported that Vibrio parahaemolyticus expresses two outer membrane proteins of 78 and 83 kDa concomitant with production of siderophore vibrioferrin in response to iron starvation stress and that these proteins are the ferric vibrioferrin receptor and heme receptor, respectively (S. Yamamoto, T. Akiyama, N. Okujo, S. Matsuura, and S. Shinoda, Microbiol. Immunol. 39:759-766, 1995; S. Yamamoto, Y. Hara, K. Tomochika, and S. Shinoda, FEMS Microbiol. Lett. 128:195-200, 1995). In this study, the Fur titration assay (FURTA) system was applied to isolate DNA fragments containing a potential Fur box from a genomic DNA library of V. parahaemolyticus WP1. Sequencing a 3.2-kb DNA insert in one FURTA-positive clone revealed that an amino acid sequence deduced from a partial gene, which was preceded by a full-length gene (psuA) encoding a receptor for a siderophore of unknown origin, was consistent with the N-terminal amino acid sequence of the 78-kDa ferric vibrioferrin receptor. Then, the full-length gene (pvuA) encoding the ferric vibrioferrin receptor was cloned and characterized. The deduced protein encoded by pvuA displayed the highest similarity (31% identity; 48% similarity) to RumA, a ferric rhizoferrin receptor of Morganella morganii. Primer extension and Northern blot analyses indicated that psuA and pvuA constitute an operon which is transcribed from a Fur-repressed promoter upstream of psuA. The product of the pvuA gene and its function were confirmed by generating a pvuA-disrupted mutant, coupled with genetic complementation studies. A mutant with disruption in the upstream psuA gene also displayed a phenotype impaired in the utilization of ferric vibrioferrin.
机译:先前我们曾报道副溶血性弧菌表达两种外膜蛋白,分别为78和83 kDa,并响应铁饥饿压力而产生铁载体弧菌铁蛋白,并且这些蛋白分别是铁弧菌铁蛋白受体和血红素受体(S. Yamamoto,T. Akiyama ,N。Okujo,S。Matsuura和S. Shinoda,Microbiol。Immunol。39:759-766,1995; S。Yamamoto,Y。Hara,K。Tomochika和S. Shinoda,FEMS Microbiol。Lett。128: 195-200,1995)。在这项研究中,应用了Fur滴定分析(FURTA)系统从副溶血弧菌WP1的基因组DNA库中分离出含有潜在Fur盒的DNA片段。在一个FURTA阳性克隆中对3.2kb DNA插入片段进行测序表明,从部分基因推导的氨基酸序列与编码未知来源铁载体的受体的全长基因(psuA)一致,与78-kDa铁弧菌铁蛋白受体的N端氨基酸序列。然后,克隆并鉴定了编码铁弧菌铁蛋白受体的全长基因(pvuA)。由pvuA编码的推导蛋白与摩根氏摩根氏菌的铁根铁蛋白受体RumA表现出最高的相似性(31%一致性; 48%相似性)。引物延伸和RNA印迹分析表明,psuA和pvuA构成操纵子,其从psuA上游的Fur-抑制的启动子转录而来。 pvuA基因的产物及其功能通过产生pvuA破坏的突变体以及遗传互补研究得以证实。上游psuA基因被破坏的突变体也表现出铁弧菌铁铁蛋白利用受到损害的表型。

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