首页> 美国卫生研究院文献>Journal of Bacteriology >The rightward gas vesicle operon in Halobacterium plasmid pNRC100: identification of the gvpA and gvpC gene products by use of antibody probes and genetic analysis of the region downstream of gvpC.
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The rightward gas vesicle operon in Halobacterium plasmid pNRC100: identification of the gvpA and gvpC gene products by use of antibody probes and genetic analysis of the region downstream of gvpC.

机译:嗜盐杆菌质粒pNRC100中向右的气体小泡操纵子:通过使用抗体探针和gvpC下游区域的遗传分析鉴定gvpA和gvpC基因产物。

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摘要

The extreme halophile Halobacterium halobium synthesizes intracellular gas-filled vesicles that confer buoyancy. A cluster of 13 genes on the 200-kb endogenous plasmid pNRC100 has been implicated in the biosynthesis of gas vesicles. Here, we show that two gas vesicle proteins are encoded by genes in the rightward operon, gvpA and gvpC, by Western blotting (immunoblotting) analysis with antibodies directed against LacZ-GvpA and LacZ-GvpC fusion proteins. Our results are consistent with previous data showing that the gvpA gene product is the major gas vesicle protein and demonstrate for the first time that the gvpC gene product is also present in H. halobium gas vesicles. Northern (RNA) blotting analysis showed two RNA species, an abundant 0.35-kb transcript of gvpA and a minor 2.5-kb transcript of gvpAC, and a third gene 3' to gvpAC, named gvpN. The gvpN gene encodes a hypothetical acidic protein with a molecular weight of 39,000 and a nucleotide binding motif. We used a site-directed mutagenesis method involving double recombination in Escherichia coli to insert a kanamycin resistance cassette just beyond the stop codon of gvpN. Introduction of the mutated gene cluster into an H. halobium mutant with a deletion of the entire gas vesicle gene cluster resulted in gas vesicle-positive transformants; this result suggests that gvpN is the last gene of the rightward gas vesicle transcription unit. We discuss the design and utility of the kanamycin resistance cassette for the mutagenesis of other genes in large operons.
机译:极端的嗜盐菌Halobacterium halobium合成了具有浮力的细胞内充气小泡。 200 kb内源性质粒pNRC100上的13个基因簇已与气体囊泡的生物合成有关。在这里,我们通过使用针对LacZ-GvpA和LacZ-GvpC融合蛋白的抗体进行的蛋白质印迹(免疫印迹)分析显示,两个气体小泡蛋白由向右操纵子中的基因gvpA和gvpC编码。我们的结果与先前的数据一致,该数据表明gvpA基因产物是主要的气体囊泡蛋白,并首次证明gvpC基因产物也存在于H. halobium气体囊泡中。 Northern(RNA)印迹分析显示了两种RNA种类,gvpA的大量0.35 kb转录物和gvpAC的次要2.5 kb转录物,以及gvpAC的第三个基因3',称为gvpN。 gvpN基因编码一种假设的酸性蛋白质,其分子量为39,000,并具有核苷酸结合基序。我们使用了一种在大肠杆菌中涉及双重重组的定点诱变方法,将卡那霉素抗性盒插入到gvpN终止密码子的正上方。将突变的基因簇引入到H. halobium突变体中,整个气泡基因簇都缺失,产生了气泡阳性转化体。该结果表明gvpN是向右气泡转录单位的最后一个基因。我们讨论了卡那霉素抗性盒在大操纵子中其他基因的诱变中的设计和实用性。

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