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AgfC和AgfE促进肠炎沙门氏菌细胞外薄聚集菌毛的合成。

AgfC and AgfE facilitate extracellular thin aggregative fimbriae synthesis in Salmonella enteritidis.

作者信息

Gibson D L, White A P, Rajotte C M, Kay W W

机构信息

Department of Biochemistry and Microbiology, University of Victoria, Victoria, British Columbia V8W 3P6, Canada.

Department of Microbiology and Infectious Diseases, University of Calgary, Calgary, Alberta T2N 4N1, Canada.

出版信息

Microbiology (Reading). 2007 Apr;153(Pt 4):1131-1140. doi: 10.1099/mic.0.2006/000935-0.

Abstract

Salmonella thin aggregative fimbriae (Tafi; curli) are important in pathogenesis and biofilm formation; however, less is known of their structure and morphogenesis. In the Salmonella agfBAC Tafi operon, the transcription and role of agfC have been elusive. In this study, agfBAC transcripts were detected using a sensitive reverse transcriptase technique. Native AgfC was not detected using polyclonal antibodies generated against purified hexahistidine-tagged AgfC; however, in trans expression revealed that AgfC was localized to the periplasm as a mature form. An isogenic DeltaagfC mutant displayed an abundance of 20 nm fibres, in addition to native Tafi (5-7 nm), and had an increase in cell surface hydrophobicity. Purified 20 nm fibres were depolymerized under exceptionally stringent conditions to release what proved to be AgfA subunits. This revealed that the 20 nm fibres represented a different form of Tafi. The role of AgfC in Tafi assembly was investigated further using an antibody-capture assay of isogenic Deltaagf mutants. A soluble antibody-accessible form of AgfA was captured in wild-type (wt), DeltaagfB and DeltaagfF strains, in support of the extracellular nucleation-precipitation pathway of Tafi assembly, but not in DeltaagfC or DeltaagfE mutants. This indicates that AgfC and AgfE are important for AgfA extracellular assembly, facilitating the synthesis of Tafi.

摘要

沙门氏菌细聚集菌毛(Tafi;卷曲菌毛)在发病机制和生物膜形成中很重要;然而,人们对它们的结构和形态发生了解较少。在沙门氏菌agfBAC Tafi操纵子中,agfC的转录和作用一直难以捉摸。在本研究中,使用灵敏的逆转录酶技术检测到了agfBAC转录本。使用针对纯化的六聚组氨酸标签化AgfC产生的多克隆抗体未检测到天然AgfC;然而,反式表达显示AgfC以成熟形式定位于周质。一个同基因的ΔagfC突变体除了有天然的Tafi(5 - 7纳米)外,还显示出大量20纳米的纤维,并且细胞表面疏水性增加。纯化的20纳米纤维在异常严格的条件下解聚,释放出经证实是AgfA亚基的物质。这表明20纳米的纤维代表了Tafi的一种不同形式。使用同基因Δagf突变体的抗体捕获试验进一步研究了AgfC在Tafi组装中的作用。在野生型(wt)、ΔagfB和ΔagfF菌株中捕获到了可被抗体接近的可溶性AgfA形式,这支持了Tafi组装的细胞外成核 - 沉淀途径,但在ΔagfC或ΔagfE突变体中未捕获到。这表明AgfC和AgfE对AgfA的细胞外组装很重要,有助于Tafi的合成。

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