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鉴定恶臭假单胞菌GB-1菌株锰氧化因子分泌所需的一条新的与Gsp相关的途径。

Identification of a novel Gsp-related pathway required for secretion of the manganese-oxidizing factor of Pseudomonas putida strain GB-1.

作者信息

De Vrind Johannes, De Groot Arjan, Brouwers Geert Jan, Tommassen Jan, De Vrind-De Jong Elisabeth

机构信息

Leiden Institute of Chemistry, Gorlaeus Laboratories, Leiden University, 2300 RA Leiden, The Netherlands.

出版信息

Mol Microbiol. 2003 Feb;47(4):993-1006. doi: 10.1046/j.1365-2958.2003.03339.x.

Abstract

The manganese-oxidizing factor of Pseudomonas putida strain GB-1 is associated with the outer membrane. One of the systems of protein transport across the outer membrane is the general secretory pathway (Gsp). The gsp genes are called xcp in Pseudomonas species. In a previous study, it was shown that mutation of the prepilin peptidase XcpA and of a homologue of the pseudopilin XcpT inhibited transport of the factor. In the present study, we describe the genomic region flanking the xcpT homologue (designated xcmT1). We show that xcmT1 is part of a two-gene operon that includes an xcpS homologue (designated xcmS). No other xcp-like genes are present in the regions flanking the xcmT1/xcmS cluster. We also characterized the site of transposon insertion of another transport mutant of P. putida GB-1. This insertion appeared to be located in a gene (designated xcmX) possibly encoding another pseudopilin-related protein. This xcmX is clustered with two other xcpT-related genes (designated xcmT2 and xcmT3) on one side and homologues of three csg genes (designated csmE, csmF and csmG) on the other side. The csg genes are involved in production of aggregative fibres in Escherichia coli and Salmonella typhimurium. A search for XcmX homologues revealed that the recently published genome of Ralstonia solanacearum and the unannotated genome of P. putida KT2440 contain comparable gene clusters with xcmX and xcp homologues that are different from the well-described 'regular'xcp/gsp clusters. They do contain xcpR and xcpQ homologues but, for example, homologues of xcpP, Y and Z are lacking. The results suggest a novel Xcp-related system for the transport of manganese-oxidizing enzymes to the cell surface.

摘要

恶臭假单胞菌GB-1菌株的锰氧化因子与外膜相关。蛋白质跨外膜转运的系统之一是一般分泌途径(Gsp)。在假单胞菌属中,gsp基因被称为xcp。在之前的一项研究中,已表明前导肽酶XcpA和假菌毛蛋白XcpT的同源物发生突变会抑制该因子的转运。在本研究中,我们描述了xcpT同源物(命名为xcmT1)侧翼的基因组区域。我们发现xcmT1是一个双基因操纵子的一部分,该操纵子包含一个xcpS同源物(命名为xcmS)。在xcmT1/xcmS基因簇侧翼区域不存在其他类似xcp的基因。我们还对恶臭假单胞菌GB-1的另一个转运突变体的转座子插入位点进行了表征。该插入似乎位于一个可能编码另一种假菌毛相关蛋白的基因(命名为xcmX)中。这个xcmX在一侧与另外两个xcpT相关基因(命名为xcmT2和xcmT3)成簇,在另一侧与三个csg基因的同源物(命名为csmE、csmF和csmG)成簇。csg基因参与大肠杆菌和鼠伤寒沙门氏菌中聚集性纤维的产生。对XcmX同源物的搜索表明,最近公布的青枯雷尔氏菌基因组和恶臭假单胞菌KT2440的未注释基因组包含与xcmX和xcp同源物可比的基因簇,这些基因簇不同于已充分描述的“常规”xcp/gsp基因簇。它们确实包含xcpR和xcpQ同源物,但例如缺少xcpP、Y和Z的同源物。这些结果提示了一种将锰氧化酶转运至细胞表面的新型Xcp相关系统。

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