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嗜碱菌 Pseudomonas alcaliphila AL15-21(T) 中小细胞色素 c(5)、细胞色素 c-552 的生理作用和氧化还原特性。

Physiological role and redox properties of a small cytochrome c(5), cytochrome c-552, from alkaliphile, Pseudomonas alcaliphila AL15-21(T).

机构信息

Research Institute of Genome-based Biofactory, National Institute of Advanced Industrial Science and Technology (AIST), 2-17-2-1 Tsukisamu-Higashi, Toyohira-ku, Sapporo 062-8517, Japan.

出版信息

J Biosci Bioeng. 2009 Dec;108(6):465-70. doi: 10.1016/j.jbiosc.2009.06.008. Epub 2009 Jul 14.

Abstract

Cytochrome c-552 from Pseudomonas alcaliphila AL15-21(T), which is a small cytochrome c(5) from Pseudomonas spp., was first purified and characterized in our previous study. Although it has been found that cytochrome c-552 is induced at a high pH under air-limited condition, the physiological role of this cytochrome c has not been clarified yet. Therefore, to understand its physiological role, further characterization of this cytochrome expressed in Escherichia coli was performed. The yield of the recombinant protein reached 2.8 mg/l of culture, which was 76.4-fold larger than that of native cells. Analytical data of the recombinant protein exactly agreed with that of native cytochrome c-552. The recombinant cytochrome c-552 was oxidized by partially purified cb-type cytochrome c oxidase from P. alcaliphila AL15-21(T) at a rate of 9.6 mu mol min(-1) mg oxidase(-1). Unlike reported cytochromes c from other Pseudomonas spp., the E degrees ' values between pHs 5.0 and 10.0 were nearly unchanged. Cytochrome c-552 oxidized very slowly at pHs 8.0 (6.1 x 10(-4) h(-1)), 9.0 (1.4 x 10(-3) h(-1)) and 10.0 (1.6 x 10(-3) h(-1)), whereas it oxidized more rapidly at pH 7.0 (2.5 x 10(-3) h(-1)). On the other hand, horse heart cytochrome c showed higher oxidation rates at pHs 6.0-10.0 than cytochrome c-552. It is considered that the high electron-retaining ability of cytochrome c-552 at high pHs is important for its physiological function in the environmental adaptation of this bacteria for superior growth at high pHs under air-limited conditions.

摘要

从假单胞菌 AL15-21(T)中分离到的细胞色素 c-552(T)是一种来自假单胞菌属的小细胞色素 c(5),在我们之前的研究中首次被纯化和表征。尽管已经发现细胞色素 c-552在空气限制条件下高 pH 下被诱导,但这种细胞色素的生理功能尚未阐明。因此,为了了解其生理功能,我们进一步对在大肠杆菌中表达的这种细胞色素进行了表征。重组蛋白的产量达到了 2.8mg/L 的培养物,是天然细胞的 76.4 倍。重组蛋白的分析数据与天然细胞色素 c-552 完全一致。重组细胞色素 c-552被部分纯化的 cb 型细胞色素 c 氧化酶从 P. alcaliphila AL15-21(T)氧化,氧化速率为 9.6 mu mol min(-1) mg 氧化酶(-1)。与其他假单胞菌属报道的细胞色素 c 不同,在 pH5.0-10.0 之间 E degrees '值几乎不变。细胞色素 c-552 在 pH8.0(6.1 x 10(-4) h(-1))、9.0(1.4 x 10(-3) h(-1))和 10.0(1.6 x 10(-3) h(-1))时氧化速度非常缓慢,而在 pH7.0(2.5 x 10(-3) h(-1))时氧化速度较快。另一方面,马心细胞色素 c 在 pH6.0-10.0 时的氧化速率高于细胞色素 c-552。人们认为,细胞色素 c-552 在高 pH 值下保持电子的能力对于其在这种细菌的环境适应中的生理功能很重要,因为它在空气限制条件下具有优越的生长能力。

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