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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Protein secretion systems in Fusobacterium nucleatum: Genomic identification of Type 4 piliation and complete Type V pathways brings new insight into mechanisms of pathogenesis
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Protein secretion systems in Fusobacterium nucleatum: Genomic identification of Type 4 piliation and complete Type V pathways brings new insight into mechanisms of pathogenesis

机译:核梭状芽胞杆菌中的蛋白质分泌系统:基因型鉴定的4型毛发和完整的V型途径为发病机理提供了新见解

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摘要

Recent genomic analyses of the two sequenced strains F nucleatum subsp. nucleatum ATCC 25586 and F nucleatum subsp. vincentii ATCC 49256 suggested that the major protein secretion systems were absent. However, such a paucity of protein secretion systems is incongruous with F nucleatum pathogenesis. Moreover, the presence of one or more such systems has been described for every other Gram-negative organism sequenced to date. In this investigation, the question of protein secretion in F nucleatum was revisited. In the current study, the absence in F. nucleatum of a twin-arginine translocation system (TC #2.A.64.), a Type III secretion system (TC #3.A.6.), a Type IV secretion system (TC #3.A.7.) and a chaperone/usher pathway (TC #1.13.11.) was confirmed. However, contrary to previous findings, our investigations indicated that a Type I protein secretion system was also absent from F nucleatum. In contrast, members of the holin family (TC #1.E) and the machinery required for a Type 4 piliation/fimbriation system (TC #3.A.15.2.) were identified using a variety of bioinformatic tools. Furthermore, a complete range of proteins resembling members of the Type V secretion pathway, i.e., the Type Va (autotransporter; TC #1.B.12.), Type Vb (two-partner secretion system; TIC #1.B.20.) and Type Vc (YadA-like trimeric autotransporter; TIC #1.B.42.), was found. This work provides new insight into the protein secretion and virulence mechanisms of F nucleatum. (c) 2005 Elsevier B.V. All rights reserved.
机译:两种测序菌株F nucleatum亚种的最新基因组分析。核仁ATCC 25586和F核仁亚种。 Vincentii ATCC 49256提示缺少主要的蛋白质分泌系统。但是,这种蛋白质分泌系统的不足与核仁F的发病机理不一致。此外,迄今已针对每一种其他测序的革兰氏阴性生物描述了一种或多种此类系统的存在。在这项研究中,再次探讨了核仁中蛋白质的分泌问题。在当前的研究中,双精氨酸易位系统(TC#2.A.64。),III型分泌系统(TC#3.A.6。),IV型分泌系统在核镰刀菌中不存在。 (TC#3.A.7。)和伴侣/引导通路(TC#1.13.11。)被确认。但是,与以前的发现相反,我们的研究表明F核也没有I型蛋白质分泌系统。相反,使用各种生物信息学工具确定了holin家族的成员(TC#1.E)和4型除毛/纤毛系统所需的机械(TC#3.A.15.2)。此外,完整的蛋白质类似于V型分泌途径的成员,即Type Va(自转运蛋白; TC#1.B.12。),Vb类型(两伙伴分泌系统; TIC#1.B.20)。 )和Vc型(YadA样三聚体自动转运蛋白; TIC#1.B.42。)。这项工作提供了新的洞察F核蛋白的分泌和毒力机制的见解。 (c)2005 Elsevier B.V.保留所有权利。

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