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锰离子抑制球形红细菌中的光合作用基因表达。

Manganous ions suppress photosynthesis gene expression in Rhodobacter sphaeroides.

作者信息

Horne Irene M, Pemberton John M, McEwan Alastair G

机构信息

Department of Microbiology, The University of QueenslandBrisbane 4072Australia.

出版信息

Microbiology (Reading). 1998 Aug;144 ( Pt 8):2255-2261. doi: 10.1099/00221287-144-8-2255.

Abstract

The effect of manganous ions [Mn(II)] and ferrous ions [Fe(II)] on expression of photosynthesis genes in Rhodobacter sphaeroides was investigated. The presence of Mn(II) during phototrophic (anaerobic) and chemotrophic (aerobic) growth of R. sphaeroides caused a decrease in the amount of bacteriochlorophyll and carotenoid pigments which were synthesized and this was associated mainly with a decrease in the level of light-harvesting complex II. Mn(II) was shown to cause a decrease in expression of the puc operon, which encodes the polypeptides of light-harvesting complex II. Expression of the puc operon is controlled by the central repressor of photosynthesis gene expression, PpsR. In a ppsR mutant there was no effect of Mn(II) on photosynthesis gene expression. It is concluded that Mn(II) may act as a corepressor in the action of PpsR or act via an as yet uncharacterized protein that interacts with PpsR. In contrast to the effects of Mn(II), Fe(II) was required for high levels of photosynthesis gene expression. This requirement for Fe(II) was shown to be related to the regulation of hemA, a gene under the control of the transcriptional regulator, FnrL. Mn(II) did not affect FnrL-dependent gene expression.

摘要

研究了锰离子[Mn(II)]和亚铁离子[Fe(II)]对球形红细菌光合作用基因表达的影响。在球形红细菌的光养(厌氧)和化养(需氧)生长过程中,Mn(II)的存在导致合成的细菌叶绿素和类胡萝卜素色素量减少,这主要与光捕获复合物II水平的降低有关。已证明Mn(II)会导致编码光捕获复合物II多肽的puc操纵子表达下降。puc操纵子的表达受光合作用基因表达的中央阻遏物PpsR控制。在ppsR突变体中,Mn(II)对光合作用基因表达没有影响。得出的结论是,Mn(II)可能在PpsR的作用中作为共阻遏物起作用,或者通过与PpsR相互作用的尚未表征的蛋白质起作用。与Mn(II)的作用相反,高水平的光合作用基因表达需要Fe(II)。已证明对Fe(II)的这种需求与hemA的调节有关,hemA是一个受转录调节因子FnrL控制的基因。Mn(II)不影响FnrL依赖性基因表达。

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