首页> 美国卫生研究院文献>Journal of Bacteriology >Cloning of hydrogenase genes and fine structure analysis of an operon essential for H2 metabolism in Escherichia coli.
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Cloning of hydrogenase genes and fine structure analysis of an operon essential for H2 metabolism in Escherichia coli.

机译:氢化酶基因的克隆和大肠杆菌H2代谢必不可少的操纵子的精细结构分析。

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摘要

Escherichia coli has two unlinked genes that code for hydrogenase synthesis and activity. The DNA fragments containing the two genes (hydA and hydB) were cloned into a plasmid vector, pBR322. The plasmids containing the hyd genes (pSE-290 and pSE-111 carrying the hydA and hydB genes, respectively) were used to genetically map a total of 51 mutant strains with defects in hydrogenase activity. A total of 37 mutants carried a mutation in the hydB gene, whereas the remaining 14 hyd were hydA. This complementation analysis also established the presence of two new genes, so far unidentified, one coding for formate dehydrogenase-2 (fdv) and another producing an electron transport protein (fhl) coupling formate dehydrogenase-2 to hydrogenase. Three of the four genes, hydB, fhl, and fdv, may constitute a single operon, and all three genes are carried by a 5.6-kilobase-pair chromosomal DNA insert in plasmid pSE-128. Plasmids carrying a part of this 5.6-kilobase-pair DNA (pSE-130) or fragments derived from this DNA in different orientations (pSE-126 and pSE-129) inhibited the production of active formate hydrogenlyase. This inhibition occurred even in a prototrophic E. coli, strain K-10, but only during an early induction period. These results, based on complementation analysis with cloned DNA fragments, show that both hydA and hydB genes are essential for the production of active hydrogenase. For the expression of active formate hydrogenlyase, two other gene products, fhl and fdv are also needed. All four genes map between 58 and 59 min in the E. coli chromosome.
机译:大肠杆菌具有两个未连接的基因,它们编码氢化酶的合成和活性。将包含两个基因(hydA和hydB)的DNA片段克隆到质粒载体pBR322中。含有hyd基因的质粒(分别带有hydA和hydB基因的pSE-290和pSE-111)被用来对总共51个具有加氢酶活性缺陷的突变菌株进行遗传定位。共有37个突变体在hydB基因中带有突变,而其余14个hyd是hydA。这种互补分析还建立了两个新基因的存在,迄今为止尚未确定,一个编码甲酸脱氢酶-2(fdv),另一个编码将甲酸脱氢酶-2偶联至氢酶的电子转运蛋白(fhl)。 hydB,fhl和fdv这四个基因中的三个可以组成一个操纵子,所有三个基因都由质粒pSE-128中的5.6碱基对染色体DNA插入。带有部分5.6碱基对DNA(pSE-130)或以不同方向衍生自该DNA的片段的质粒(pSE-126和pSE-129)抑制了活性甲酸氢解酶的产生。即使在原养性大肠杆菌K-10菌株中也发生了这种抑制作用,但仅在早期诱导期发生。这些结果基于对克隆的DNA片段的互补分析,表明hydA和hydB基因对于产生活性氢化酶都是必不可少的。为了表达活性甲酸氢水解酶,还需要另外两个基因产物fhl和fdv。所有四个基因均在大肠杆菌染色体中定位于58至59分钟之间。

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