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细菌光敏色素在沼泽红假单胞菌生物能量控制中的双重作用:增强光合系统合成并限制呼吸作用。

Dual role for a bacteriophytochrome in the bioenergetic control of Rhodopseudomonas palustris: enhancement of photosystem synthesis and limitation of respiration.

作者信息

Kojadinovic Mila, Laugraud Aurélie, Vuillet Laurie, Fardoux Joël, Hannibal Laure, Adriano Jean-Marc, Bouyer Pierre, Giraud Eric, Verméglio André

机构信息

CEA Cadarache, DSV/IBEB/SBVME/LBC, UMR 6191 CNRS/CEA/Univ Aix-Marseille, Saint-Paul-lez-Durance, F-13108 France.

出版信息

Biochim Biophys Acta. 2008 Feb;1777(2):163-72. doi: 10.1016/j.bbabio.2007.09.003. Epub 2007 Sep 26.

Abstract

In the purple photosynthetic bacterium Rhodopseudomonas palustris, far-red illumination induces photosystem synthesis via the action of the bacteriophytochrome RpBphP1. This bacteriophytochrome antagonizes the repressive effect of the transcriptional regulator PpsR2 under aerobic condition. We show here that, in addition to photosystem synthesis, far-red light induces a significant growth rate limitation, compared to cells grown in the dark, linked to a decrease in the respiratory activity. The phenotypes of mutants inactivated in RpBphP1 and PpsR2 show their involvement in this regulation. Based on enzymatic and transcriptional studies, a 30% decrease in the expression of the alpha-ketoglutarate dehydrogenase complex, a central enzyme of the Krebs cycle, is observed under far-red light. We propose that this decrease is responsible for the down-regulation of respiration in this condition. This regulation mechanism at the Krebs cycle level still allows the formation of the photosynthetic apparatus via the synthesis of key biosynthesis precursors but lowers the production of NADH, i.e. the respiratory activity. Overall, the dual action of RpBphP1 on the regulation of both the photosynthesis genes and the Krebs cycle allows a fine adaptation of bacteria to environmental conditions by enhancement of the most favorable bioenergetic process in the light, photosynthesis versus respiration.

摘要

在紫色光合细菌沼泽红假单胞菌中,远红光照射通过细菌光敏色素RpBphP1的作用诱导光系统合成。这种细菌光敏色素在有氧条件下拮抗转录调节因子PpsR2的抑制作用。我们在此表明,与在黑暗中生长的细胞相比,除了光系统合成外,远红光还会导致显著的生长速率受限,这与呼吸活性的降低有关。RpBphP1和PpsR2失活的突变体的表型表明它们参与了这种调节。基于酶学和转录研究,在远红光下观察到三羧酸循环的关键酶α-酮戊二酸脱氢酶复合体的表达下降了30%。我们认为这种下降是导致这种情况下呼吸作用下调的原因。这种在三羧酸循环水平的调节机制仍然允许通过关键生物合成前体的合成形成光合装置,但降低了NADH的产生,即呼吸活性。总体而言,RpBphP1对光合作用基因和三羧酸循环调节的双重作用使得细菌能够通过增强光照下最有利的生物能量过程(光合作用与呼吸作用)来很好地适应环境条件。

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