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深红红螺菌中的fixABCX基因编码一种推定的膜复合物,参与向固氮酶的电子传递。

The fixABCX genes in Rhodospirillum rubrum encode a putative membrane complex participating in electron transfer to nitrogenase.

作者信息

Edgren Tomas, Nordlund Stefan

机构信息

Department of Biochemistry and Biophysics, Stockholm University, SE-106 91 Stockholm, Sweden.

出版信息

J Bacteriol. 2004 Apr;186(7):2052-60. doi: 10.1128/JB.186.7.2052-2060.2004.

Abstract

In our efforts to identify the components participating in electron transport to nitrogenase in Rhodospirillum rubrum, we used mini-Tn5 mutagenesis followed by metronidazole selection. One of the mutants isolated, SNT-1, exhibited a decreased growth rate and about 25% of the in vivo nitrogenase activity compared to the wild-type values. The in vitro nitrogenase activity was essentially wild type, indicating that the mutation affects electron transport to nitrogenase. Sequencing showed that the Tn5 insertion is located in a region with a high level of similarity to fixC, and extended sequencing revealed additional putative fix genes, in the order fixABCX. Complementation of SNT-1 with the whole fix gene cluster in trans restored wild-type nitrogenase activity and growth. Using Western blotting, we demonstrated that expression of fixA and fixB occurs only under conditions under which nitrogenase also is expressed. SNT-1 was further shown to produce larger amounts of both ribulose 1,5-bisphosphate carboxylase/oxygenase and polyhydroxy alkanoates than the wild type, indicating that the redox status is affected in this mutant. Using Western blotting, we found that FixA and FixB are soluble proteins, whereas FixC most likely is a transmembrane protein. We propose that the fixABCX genes encode a membrane protein complex that plays a central role in electron transfer to nitrogenase in R. rubrum. Furthermore, we suggest that FixC is the link between nitrogen fixation and the proton motive force generated in the photosynthetic reactions.

摘要

在我们致力于鉴定参与红螺菌中电子向固氮酶传递的成分的过程中,我们采用了mini-Tn5诱变,随后进行甲硝唑筛选。分离得到的一个突变体SNT-1,与野生型相比,生长速率降低,体内固氮酶活性约为野生型的25%。体外固氮酶活性基本为野生型,表明该突变影响电子向固氮酶的传递。测序显示Tn5插入位于与fixC高度相似的区域,进一步测序揭示了其他推定的fix基因,顺序为fixABCX。用整个fix基因簇对SNT-1进行反式互补恢复了野生型固氮酶活性和生长。通过蛋白质免疫印迹法,我们证明fixA和fixB仅在固氮酶也表达的条件下表达。进一步研究表明,SNT-1产生的1,5-二磷酸核酮糖羧化酶/加氧酶和聚羟基链烷酸酯的量均比野生型多,表明该突变体的氧化还原状态受到影响。通过蛋白质免疫印迹法,我们发现FixA和FixB是可溶性蛋白,而FixC很可能是一种跨膜蛋白。我们提出,fixABCX基因编码一种膜蛋白复合物,该复合物在红螺菌中电子向固氮酶的传递中起核心作用。此外,我们认为FixC是固氮作用与光合反应中产生的质子动力之间的联系。

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