首页> 外文期刊>Journal of bacteriology >Mutational Analysis of Plasmid R64 Thin Pilus Prepilin: the Entire Prepilin Sequence Is Required for Processing by Type IV Prepilin Peptidase
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Mutational Analysis of Plasmid R64 Thin Pilus Prepilin: the Entire Prepilin Sequence Is Required for Processing by Type IV Prepilin Peptidase

机译:质粒R64纤毛羽球菌纤毛蛋白的突变分析:需要通过IV型纤毛蛋白肽酶进行加工的整个纤毛蛋白序列。

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The thin pili of IncI1 plasmid R64, which is required for conjugation in liquid media, belong to the type IV pilus family. They consist of a major subunit, the pilS product, and a minor component, one of the seven pilV products. ThepilS product is first synthesized as a 22-kDa prepilin, processed to a 19-kDa mature pilin by the function of thepilU product, and then secreted outside the cell. The mature pilin is assembled to form a thin pilus with thepilV product. To reveal the relationship between the structure and function of the pilS product, 27 missense mutations, three N-terminal deletions, and two C-terminal deletions were constructed by PCR and site-directed mutagenesis. The characteristics of 32 mutant pilS products were analyzed. Four pilS mutant phenotype classes were identified. The products of 10 class I mutants were not processed by prepilin peptidase; the extracellular secretion of the products of two class II mutants was inhibited; from 11 class III mutants, thin pili with reduced activities in liquid mating were formed; from 9 class IV mutants, thin pili with mating activity similar to that of the wild-type pilS gene were formed. The point mutations of the class I mutants were distributed throughout the prepilin sequence, suggesting that processing of the pilS product requires the entire prepilin sequence.
机译:在液体培养基中缀合所需的IncI1质粒R64的纤毛属于IV型菌毛家族。它们由一个主要亚基 pilS 产品和一个次要成分(七个 pilV 产品之一)组成。首先,将 pilS 产物合成为22 kDa的prepilin,利用 pilU 产物的功能将其加工成19 kDa的成熟菌毛蛋白,然后将其分泌到细胞外。用 pilV 产品将成熟的菌毛蛋白组装成薄菌毛。为了揭示 pilS 产品的结构与功能之间的关系,通过PCR和定点诱变构建了27个错义突变,3个N末端缺失和2个C末端缺失。分析了32种突变体 pilS 产物的特征。确定了四个 pilS 突变表型。 Prepilin肽酶未加工10个I类突变体的产物;两个II类突变体产物的细胞外分泌受到抑制;从11个III类突变体中,形成了在液体交配中活性降低的细菌毛。从9个IV类突变体中,形成了与野生型 pilS 基因具有相似交配活性的纤毛。 I类突变体的点突变分布在整个prepilin序列中,这表明 pilS 产品的加工需要整个prepilin序列。

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