首页> 美国卫生研究院文献>Infection and Immunity >Synthesis and function of Actinomyces naeslundii T14V type 1 fimbriae require the expression of additional fimbria-associated genes.
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Synthesis and function of Actinomyces naeslundii T14V type 1 fimbriae require the expression of additional fimbria-associated genes.

机译:内脏放线菌T14V 1型菌毛的合成和功能需要表达其他菌毛相关基因。

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摘要

The nucleotide sequence of the chromosomal DNA flanking the Actinomyces naeslundii (formerly A. viscosus) T14V type 1 fimbrial structural subunit gene (fimP) was determined. Six open reading frames (ORFs), in the order 5' ORF3, ORF2, ORF1,fimP, ORF4, ORF5, ORF6 3', were identified. ORF1 encoded a protein of 408 amino acid residues (Mr = 39,270) and had significant sequence homology with the A. naeslundii T14V type 1 and A. naeslundii WVU45 type 2 fimbrial structural subunits. An in-frame fusion of ORF1 to the malE gene of the expression vector, pMAL-c2, yielded a protein that was immunostained with antibodies raised against the maltose binding protein and A. naeslundii T14V whole bacteria. Digestion of the fusion protein with factor Xa released a protein (apparent molecular mass of 34 kDa) that was immunostained only with the antibody directed against A. naeslundii T14V whole bacterial cells. Integration plasmids carrying a kanamycin resistance gene (kan) that was used to substitute for ORF1 or for DNA fragments internal to the coding region of the other five ORFs were used to transform A. naeslundii T14V. Neither type 1 fimbriae nor the 65-kDa fimbrial structural subunit was detected in mutants obtained by allelic replacement of ORF1 or ORF2. Mutants obtained by allelic replacement of ORF3 or ORF4 expressed only the 65-kDa fimbrial structural subunit. These mutants did not bind, in vitro, to proline-rich proteins that serve as the receptors for Actinomyces type 1 fimbriae. In contrast, a mutant in which the integration plasmid DNA had been inserted at a site close to the carboxyl terminus of ORF6 expressed type 1 fimbriae and had adherence properties similar to those observed in the wild-type strain. These results demonstrate the existence of additional genes near fimP that are likely to be involved in the synthesis and function of cell surface fimbriae of A. naeslundii T14V.
机译:确定了Naeslundii放线菌(以前称为粘菌)T14V 1型纤维结构亚基基因(fimP)的染色体DNA的核苷酸序列。识别了以5'ORF3,ORF2,ORF1,fimP,ORF4,ORF5,ORF6 3'的顺序排列的六个开放阅读框(ORF)。 ORF1编码一个408个氨基酸残基的蛋白(Mr = 39,270),并且与内氏阿德勒氏菌T14V 1型和内氏阿德勒氏菌WVU45 2型纤维结构亚基具有显着的序列同源性。 ORF1与表达载体malE基因的框内融合pMAL-c2产生了一种蛋白质,该蛋白质用针对麦芽糖结合蛋白和内氏拟南芥T14V完整细菌的抗体进行了免疫染色。用因子Xa消化融合蛋白可释放出一种蛋白(表观分子量为34 kDa),该蛋白仅用针对内氏拟杆菌A14完整细菌细胞的抗体进行了免疫染色。带有卡那霉素抗性基因(kan)的整合质粒被用来转化奈瑟氏球菌T14V,该质粒被用来替代ORF1或其他五个ORF编码区内部的DNA片段。在通过等位基因置换ORF1或ORF2获得的突变体中,未检测到1型菌毛或65 kDa的纤维结构亚基。通过等位基因置换ORF3或ORF4获得的突变体仅表达65 kDa的纤维结构亚基。这些突变体在体外不与富含脯氨酸的蛋白质结合,而富含脯氨酸的蛋白质可作为放线菌1型菌毛的受体。相反,其中整合质粒DNA已被插入到靠近ORF6的羧基末端的位点的突变体表达了1型菌毛,并且具有与在野生型菌株中观察到的相似的粘附特性。这些结果表明,在fimP附近还存在其他基因,这些基因可能与内氏拟南芥T14V的细胞表面菌毛的合成和功能有关。

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