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首页> 外文期刊>Journal of bacteriology >Nucleotide sequence and mutational analysis of the gene encoding KpsD, a periplasmic protein involved in transport of polysialic acid in Escherichia coli K1.
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Nucleotide sequence and mutational analysis of the gene encoding KpsD, a periplasmic protein involved in transport of polysialic acid in Escherichia coli K1.

机译:编码KpsD的基因的核苷酸序列和突变分析,KpsD是一种在大肠杆菌K1中参与多唾液酸运输的周质蛋白。

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摘要

The 17-kb kps gene cluster encodes proteins necessary for the synthesis, assembly, and translocation of the polysialic acid capsule of Escherichia coli K1. We previously reported that one of these genes, kpsD, encodes a 60-kDa periplasmic protein that is involved in the translocation of the polymer to the cell surface. The nucleotide sequence of the 2.4-kb BamHI-PstI fragment accommodating the kpsD gene was determined. Sequence analysis showed an open reading frame for a 558-amino-acid protein with a typical N-terminal prokaryotic signal sequence corresponding to the first 20 amino acids. KpsD was overexpressed, partially purified, and used to prepare polyclonal antiserum. A chromosomal insertion mutation was generated in the kpsD gene and results in loss of surface expression of the polysialic acid capsule. Immunodiffusion analysis and electron microscopy indicated that polysaccharide accumulates in the periplasmic space of mutant cells. A wild-type copy of kpsD supplied in trans complemented the chromosomal mutation, restoring extracellular expression of the K1 capsule. However, a kpsD deletion derivative (kpsD delta C11), which results in production of a truncated KpsD protein lacking its 11 C-terminal amino acids, was nonfunctional. Western blot (immunoblot) data from cell fractions expressing KpsD delta C11 suggest that the truncated protein was inefficiently exported into the periplasm and localized primarily to the cytoplasmic membrane.
机译:17 kb kps基因簇编码大肠杆菌K1的多唾液酸胶囊的合成,组装和易位所需的蛋白质。我们以前报道过,这些基因之一kpsD编码一个60 kDa的周质蛋白,该蛋白参与了聚合物向细胞表面的移位。确定了容纳kpsD基因的2.4kb BamHI-PstI片段的核苷酸序列。序列分析显示了具有558个氨基酸的蛋白质的开放阅读框,该蛋白质的典型N端原核生物信号序列与前20个氨基酸相对应。 KpsD被过表达,部分纯化并用于制备多克隆抗血清。在kpsD基因中产生了染色体插入突变,导致多唾液酸胶囊表面表达的丧失。免疫扩散分析和电子显微镜表明,多糖积累在突变细胞的周质空间中。反式提供的kpsD的野生型拷贝补充了染色体突变,恢复了K1胶囊的细胞外表达。但是,导致缺少11个C端氨基酸的截短的KpsD蛋白产生的kpsD缺失衍生物(kpsD delta C11)是无功能的。来自表达KpsD delta C11的细胞组分的Western印迹(免疫印迹)数据表明,截短的蛋白不能有效地输出到周质中,而主要定位在细胞质膜上。

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