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球形红杆菌nirK 表达受氧抑制的机制。

Mechanisms of oxygen inhibition of nirK expression in Rhodobacter sphaeroides.

机构信息

Department of Microbiology, Wing Hall, Cornell University, Ithaca, NY 14853, USA.

出版信息

Microbiology (Reading). 2010 Oct;156(Pt 10):3158-3165. doi: 10.1099/mic.0.038703-0. Epub 2010 Jul 1.

Abstract

R. sphaeroides strain 2.4.3, when lacking the cbb(3) oxidase, is unable to transition from aerobic respiration to denitrification using cellular respiration as a means of reducing oxygen levels. This is due to an inability to express nirK, the gene encoding nitrite reductase. Under certain photosynthetic conditions this strain can transition from aerobic to nitrate respiration, demonstrating that nirK expression can occur in the absence of a functional cbb(3) oxidase. If oxygen levels are reduced under non-photosynthetic conditions using low-oxygen gas mixes, nitrite reductase activity is detected at wild-type levels in the strain lacking the oxidase. In addition, co-culture experiments show that incubation of the cbb(3) deficient strain 2.4.3 with R. sphaeroides 2.4.1, which is nirK deficient but has the high-affinity cbb(3) oxidase, restores denitrification in sealed-vessel experiments. Taken together these results indicate that high end-point O(2) levels are the reason why the strain lacking the cbb(3) oxidase cannot transition from aerobic respiration to denitrification under certain conditions. The protein probably being affected by these O(2) levels is the transcriptional regulator NnrR.

摘要

当缺少 cbb(3)氧化酶时,R. sphaeroides 2.4.3 菌株无法将细胞呼吸作为降低氧水平的一种方式从需氧呼吸转变为反硝化作用。这是因为无法表达编码亚硝酸盐还原酶的基因 nirK。在某些光合条件下,该菌株可以从需氧呼吸转变为硝酸盐呼吸,这表明在没有功能性 cbb(3)氧化酶的情况下可以表达 nirK。如果在非光合条件下使用低氧气体混合物降低氧水平,则在缺乏氧化酶的菌株中检测到与野生型水平相当的亚硝酸盐还原酶活性。此外,共培养实验表明,在 cbb(3)缺乏的菌株 2.4.3 与 R. sphaeroides 2.4.1 共培养时,该菌株缺乏 nirK,但具有高亲和力的 cbb(3)氧化酶,在密封容器实验中恢复了反硝化作用。这些结果表明,高终点 O(2)水平是缺乏 cbb(3)氧化酶的菌株在某些条件下无法从需氧呼吸转变为反硝化作用的原因。受这些 O(2)水平影响的蛋白质可能是转录调节剂 NnrR。

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