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首页> 外文期刊>Journal of bacteriology >In vivo nickel insertion into the carbon monoxide dehydrogenase of Rhodospirillum rubrum: molecular and physiological characterization of cooCTJ.
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In vivo nickel insertion into the carbon monoxide dehydrogenase of Rhodospirillum rubrum: molecular and physiological characterization of cooCTJ.

机译:体内镍插入到红红螺螺一氧化碳脱氢酶中:cooCTJ的分子和生理学表征。

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摘要

The products of cooCTJ are involved in normal in vivo Ni insertion into the carbon monoxide dehydrogenase (CODH) of Rhodospirillum rubrum. Located on a 1.5-kb DNA segment immediately downstream of the CODH structural gene (cooS), two of the genes encode proteins that bear motifs reminiscent of other (urease and hydrogenase) Ni-insertion systems: a nucleoside triphosphate-binding motif near the N terminus of CooC and a run of 15 histidine residues regularly spaced over the last 30 amino acids of the C terminus of CooJ. A Gm(r)omega-linker cassette was developed to create both polar and nonpolar (60 bp) insertions in the cooCTJ region, and these, along with several deletions, were introduced into R. rubrum by homologous recombination. Analysis of the exogenous Ni levels required to sustain CO-dependent growth of the R. rubrum mutants demonstrated different phenotypes: whereas the wild-type strain and a mutant bearing a partial cooJ deletion (of the region encoding the histidine-rich segment) grew at 0.5 microM Ni supplementation, strains bearing Gm(r)omega-linker cassettes in cooT and cooJ required approximately 50-fold-higher Ni levels and all cooC insertion strains, bearing polar or nonpolar insertions, grew optimally at 550 microM Ni.
机译:cooCTJ的产物参与正常的体内镍插入到红螺螺旋藻的一氧化碳脱氢酶(CODH)中。位于CODH结构基因(cooS)下游1.5 kb的DNA片段上,两个基因编码的蛋白质带有使人联想到其他(脲酶和氢化酶)镍插入系统的基序:N附近的核苷三磷酸结合基序CooC末端以及在CooJ C末端的最后30个氨基酸上规则排列的15个组氨酸残基。开发了Gm(r)omega-linker盒,可在cooCTJ区域中创建极性和非极性(60 bp)插入,并将这些插入以及一些缺失通过同源重组引入到R. rubrum中。维持红毛红球菌突变体维持CO依赖性生长所需的外源Ni水平的分析显示了不同的表型:而野生型菌株和带有部分cooJ缺失(编码富含组氨酸片段的区域)的突变体在添加0.5 microM Ni时,在cooT和cooJ中带有Gm(r)omega-linker盒的菌株需要高大约50倍的Ni水平,并且所有带有极性或非极性插入物的cooC插入菌株在550 microM Ni时均生长最佳。

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