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Cloning and expression of Bradyrhizobium japonicum uptake hydrogenase structural genes in Escherichia coli.

机译:大肠杆菌的日本根瘤菌吸收氢酶结构基因的克隆和表达。

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摘要

To identify the structural genes for the components of Bradyrhizobium japonicum uptake hydrogenase (Mr 60,000 and 30,000), we have expressed these genes in Escherichia coli and shown that the products cross-react with antibodies to the respective hydrogenase subunits. We constructed subclones of overlapping DNA fragments from an uptake hydrogenase-complementing cosmid, pHU52 [Lambert, G. R., Cantrell, M. A., Hanus, F. J., Russell, S. A., Haddad, K. R. & Evans, H. J. (1985) Proc. Natl. Acad. Sci. USA 82, 3232-3236], in pMZ 545, a plasmid expression vector. DNA fragments inserted into one or more of the four cloning sites downstream from the E. coli lac operon promoter (Plac) on pMZ 545 generate transcriptional, but not translational, fusions. Two subclones that directed the synthesis of Mr 60,000 and 30,000 proteins in E. coli "maxicells" were identified. The DNA inserts from these subclones were then inserted down-stream of the bacteriophage lambda PL promoter on a transcriptional fusion vector. When the PL promoter was activated in vivo by heat inactivation of the temperature sensitive cI repressor of lambda in an appropriate E. coli strain, the respective fragments expressed higher levels of Mr 60,000 and 30,000 proteins that could be detected in immunoblots. These data provide direct evidence for the presence of uptake hydrogenase structural genes on the uptake hydrogenase-complementing cosmid pHU52.
机译:为了鉴定日本根瘤菌吸收氢酶的组成(Mr 60,000和30,000)的结构基因,我们已经在大肠杆菌中表达了这些基因,并表明该产物与针对各自氢化酶亚基的抗体发生交叉反应。我们从摄取氢化酶的粘粒pHU52中构建了重叠DNA片段的亚克隆[Lambert,G.R.,Cantrell,M.,Hanus,F.J.,Russell,S.A.,Haddad,K.R.&Evans,H.J.(1985)Proc。 Natl。学院科学USA 82,3232-3236],在质粒表达载体pMZ 545中。插入pMZ 545上大肠杆菌lac操纵子启动子(Plac)下游四个克隆位点中一个或多个的DNA片段可产生转录融合,但不能翻译融合。鉴定了两个指导大肠杆菌“ maxicells”中60,000和30,000蛋白合成的亚克隆。然后将这些亚克隆的DNA插入片段插入噬菌体λPL启动子的下游,并插入到转录融合载体上。当通过在合适的大肠杆菌菌株中通过对λ的温度敏感cI阻遏物进行热灭活而在体内激活PL启动子时,相应的片段表达了更高水平的Mr 60,000和30,000蛋白,可以在免疫印迹中检测到。这些数据提供了在摄取氢化酶互补粘粒pHU52上存在摄取氢化酶结构基因的直接证据。

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