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深海嗜压菌紫色希瓦氏菌DSS12中细胞色素c氧化酶和喹啉氧化酶的调控及其活性对生长条件的耐压性

Regulation of cytochrome c- and quinol oxidases, and piezotolerance of their activities in the deep-sea piezophile Shewanella violacea DSS12 in response to growth conditions.

作者信息

Ohke Yoshie, Sakoda Ayaka, Kato Chiaki, Sambongi Yoshihiro, Kawamoto Jun, Kurihara Tatsuo, Tamegai Hideyuki

机构信息

Department of Chemistry, College of Humanities and Sciences, Nihon University, Tokyo, Japan.

出版信息

Biosci Biotechnol Biochem. 2013;77(7):1522-8. doi: 10.1271/bbb.130197. Epub 2013 Jul 7.

Abstract

The facultative piezophile Shewanella violacea DSS12 is known to have respiratory components that alter under the influence of hydrostatic pressure during growth, suggesting that its respiratory system is adapted to high pressure. We analyzed the expression of the genes encoding terminal oxidases and some respiratory components of DSS12 under various growth conditions. The expression of some of the genes during growth was regulated by both the O2 concentration and hydrostatic pressure. Additionally, the activities of cytochrome c oxidase and quinol oxidase of the membrane fraction of DSS12 grown under various conditions were measured under high pressure. The piezotolerance of cytochrome c oxidase activity was dependent on the O2 concentration during growth, while that of quinol oxidase was influenced by pressure during growth. The activity of quinol oxidase was more piezotolerant than that of cytochrome c oxidase under all growth conditions. Even in the membranes of the non-piezophile Shewanella amazonensis, quinol oxidase was more piezotolerant than cytochrome c oxidase, although both were highly piezosensitive as compared to the activities in DSS12. By phylogenetic analysis, piezophile-specific cytochrome c oxidase, which is also found in the genome of DSS12, was identified in piezophilic Shewanella and related genera. Our observations suggest that DSS12 constitutively expresses piezotolerant respiratory terminal oxidases, and that lower O2 concentrations and higher hydrostatic pressures induce higher piezotolerance in both types of terminal oxidases. Quinol oxidase might be the dominant terminal oxidase in high-pressure environments, while cytochrome c oxidase might also contribute. These features should contribute to adaptation of DSS12 in deep-sea environments.

摘要

兼性嗜压菌紫色希瓦氏菌DSS12已知具有在生长过程中受静水压力影响而发生变化的呼吸成分,这表明其呼吸系统适应了高压环境。我们分析了DSS12在各种生长条件下编码末端氧化酶和一些呼吸成分的基因的表达情况。生长过程中一些基因的表达受氧气浓度和静水压力的共同调控。此外,还在高压条件下测量了在各种条件下生长的DSS12膜部分的细胞色素c氧化酶和喹啉氧化酶的活性。细胞色素c氧化酶活性的耐压性取决于生长过程中的氧气浓度,而喹啉氧化酶的耐压性则受生长过程中压力的影响。在所有生长条件下,喹啉氧化酶的活性比细胞色素c氧化酶更具耐压性。即使在非嗜压菌亚马逊希瓦氏菌的膜中,喹啉氧化酶也比细胞色素c氧化酶更具耐压性,尽管与DSS12中的活性相比,两者对压力都高度敏感。通过系统发育分析,在嗜压性希瓦氏菌及相关属中鉴定出了在DSS12基因组中也存在的嗜压菌特异性细胞色素c氧化酶。我们的观察结果表明,DSS12组成性表达耐压性呼吸末端氧化酶,较低的氧气浓度和较高的静水压力会使两种类型的末端氧化酶产生更高的耐压性。喹啉氧化酶可能是高压环境中的主要末端氧化酶,而细胞色素c氧化酶也可能发挥作用。这些特性应有助于DSS12适应深海环境。

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