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异养生长的沼泽红假单胞菌的呼吸电子传递系统。

The respiratory electron transport system of heterotrophically-grown Rhodopseudomonas palustris.

作者信息

King M T, Drews G

出版信息

Arch Microbiol. 1975 Mar 10;102(3):219-31. doi: 10.1007/BF00428372.

Abstract

The enzymatic activities and the cytochrome components of the respiratory chain were investigated with membrane fractions from chemoheterotrophically growth Rhodopseudomonas palustris. Whereas the level of electron transfer carriers was not distinctly affected by a change of the culture conditions, the potential activities of the enzymes were clearly increased when the cells were grown aerobically. Reduced-minus oxidized difference spectra of the membrane fractions prepared from dark aerobically grown cells revealed the presence of three beta-types cytochromes b561, b560 and b558, and at least two c-type cytochromes c556 and c2 as electron carriers in the electron transfer chain. Cytochrome of a-type could not be detected in these membranes. Reduced plus CO minus reduced difference spectra of the membrane fractions were indicative of cytochrome o, which may be equivalent to cytochrome b560, appearing in substrate-reduced minus oxidized difference spectra. Cytochrome o was found to be the functional terminal oxidase. CO difference spectra of the high speed supernatant fraction indicated the presence of cytochrome c'. Succinate and NADH reduced the same types of cytochromes. However, a considerable amount of cytochrome b561 with associated beta and gamma bands at 531 and 429 nm, respectively, was reducible by succinate, but not by NADH. A substantial fraction of the membrane-bound b-type cytochrome was non-substrate reducible and was found in dithionite-reduced minus substrate-reduced spectra. Cytochrome c2 may be localized in a branch of the electron transport system, with the branch-point at the level of ubiquinone. The separate pathways rejoined at a common terminal oxidase. Two terminal oxidases with different KCN sensitivity were present in the respiratory chain, one of which was sensitive to low concentrations of KCN and was connected with the cytochrome chain. The other terminal oxidase which was inhibited only by high concentrations of cyanide was located in a branched pathway, through which the electrons could flow from ubiquinone to oxygen bypassing the cytochrome chain.

摘要

利用化能异养生长的沼泽红假单胞菌的膜组分,对呼吸链的酶活性和细胞色素成分进行了研究。尽管电子传递载体的水平并未因培养条件的改变而受到明显影响,但当细胞在有氧条件下生长时,酶的潜在活性明显增加。由黑暗中需氧生长的细胞制备的膜组分的还原态减去氧化态差光谱显示,存在三种β型细胞色素b561、b560和b558,以及至少两种c型细胞色素c556和c2作为电子传递链中的电子载体。在这些膜中未检测到a型细胞色素。膜组分的还原态加一氧化碳减去还原态差光谱表明存在细胞色素o,其可能等同于细胞色素b560,出现在底物还原态减去氧化态差光谱中。发现细胞色素o是功能性末端氧化酶。高速上清液组分的一氧化碳差光谱表明存在细胞色素c'。琥珀酸和NADH还原相同类型的细胞色素。然而,相当数量的细胞色素b561分别在531和429 nm处具有相关的β和γ带,可被琥珀酸还原,但不能被NADH还原。相当一部分膜结合的b型细胞色素不可被底物还原,在连二亚硫酸盐还原态减去底物还原态光谱中可观察到。细胞色素c2可能定位于电子传递系统的一个分支中,分支点在泛醌水平。这些独立的途径在一个共同的末端氧化酶处重新汇合。呼吸链中存在两种对KCN敏感性不同的末端氧化酶,其中一种对低浓度的KCN敏感,并与细胞色素链相连。另一种仅被高浓度氰化物抑制的末端氧化酶位于一条分支途径中,通过该途径电子可以从泛醌流向氧气,绕过细胞色素链。

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