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慢生根瘤菌中hupU和hupV基因的序列及特征分析,这两个基因编码一种可能参与氢化酶表达的镍感应复合体。

Sequences and characterization of hupU and hupV genes of Bradyrhizobium japonicum encoding a possible nickel-sensing complex involved in hydrogenase expression.

作者信息

Black L K, Fu C, Maier R J

机构信息

Department of Biology, Johns Hopkins University, Baltimore, Maryland 21218.

出版信息

J Bacteriol. 1994 Nov;176(22):7102-6. doi: 10.1128/jb.176.22.7102-7106.1994.

Abstract

A 2.7-kb DNA fragment of Bradyrhizobium japonicum previously shown to be involved in hydrogenase expression has been sequenced. The area is located just upstream of the hupSLCDF operon and was found to contain two open reading frames, designated hupU and hupV; these encode proteins of 35.4 and 51.8 kDa, respectively. These proteins are homologous to Rhodobacter capsulatus HupU, a possible repressor of hydrogenase expression in that organism. B. japonicum HupU is 54% identical to the N terminus of R. capsulatus HupU, and HupV is 50% identical to the C terminus of R. capsulatus HupU. HupU and HupV also show homology to the [Ni-Fe] hydrogenase small and large subunits, respectively. Notably, HupV contains the probable nickel-binding sites RxCGxC and DPCxxCxxH, which are located in the N- and C-terminal portions, respectively, of the large subunit of hydrogenases. Hydrogenase activity assays, immunological assays for hydrogenase subunits, and beta-galactosidase assays on mutant strain JHCS2 (lacking a portion of HupV) were all indicative that HupV is necessary for transcriptional activation of hydrogenase. A physiological role as a possible nickel- or other environmental (i.e., oxygen or hydrogen)-sensing complex is proposed for HupU and HupV.

摘要

先前已证明参与氢化酶表达的日本慢生根瘤菌的一段2.7kb DNA片段已被测序。该区域位于hupSLCDF操纵子的上游,发现含有两个开放阅读框,分别命名为hupU和hupV;它们分别编码35.4 kDa和51.8 kDa的蛋白质。这些蛋白质与荚膜红细菌的HupU同源,HupU可能是该生物体中氢化酶表达的阻遏物。日本慢生根瘤菌的HupU与荚膜红细菌HupU的N端有54%的同一性,HupV与荚膜红细菌HupU的C端有50%的同一性。HupU和HupV也分别与[Ni-Fe]氢化酶的小亚基和大亚基显示出同源性。值得注意的是,HupV含有可能的镍结合位点RxCGxC和DPCxxCxxH,它们分别位于氢化酶大亚基的N端和C端部分。对突变菌株JHCS2(缺少部分HupV)进行的氢化酶活性测定、氢化酶亚基的免疫测定和β-半乳糖苷酶测定均表明,HupV是氢化酶转录激活所必需的。有人提出HupU和HupV可能具有作为镍或其他环境(即氧气或氢气)传感复合体的生理作用。

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