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高等植物光合重组细胞色素 b(559)的重建、光谱学和氧化还原性质。

Reconstitution, spectroscopy, and redox properties of the photosynthetic recombinant cytochrome b(559) from higher plants.

机构信息

Estación Experimental de Aula Dei, Consejo Superior de Investigaciones Científicas, Carretera Montañana 1005, 50059 Zaragoza, Spain.

出版信息

Photosynth Res. 2012 Sep;112(3):193-204. doi: 10.1007/s11120-012-9772-3. Epub 2012 Aug 2.

DOI:10.1007/s11120-012-9772-3
PMID:22855209
Abstract

A study of the in vitro reconstitution of sugar beet cytochrome b(559) of the photosystem II is described. Both α and β cytochrome subunits were first cloned and expressed in Escherichia coli. In vitro reconstitution of this cytochrome was carried out with partially purified recombinant subunits from inclusion bodies. Reconstitution with commercial heme of both (αα) and (ββ) homodimers and (αβ) heterodimer was possible, the latter being more efficient. The absorption spectra of these reconstituted samples were similar to that of the native heterodimer cytochrome b(559) form. As shown by electron paramagnetic resonance and potentiometry, most of the reconstituted cytochrome corresponded to a low spin form with a midpoint redox potential +36 mV, similar to that from the native purified cytochrome b(559). Furthermore, during the expression of sugar beet and Synechocystis sp. PCC 6803 cytochrome b(559) subunits, part of the protein subunits were incorporated into the host bacterial inner membrane, but only in the case of the β subunit from the cyanobacterium the formation of a cytochrome b(559)-like structure with the bacterial endogenous heme was observed. The reason for that surprising result is unknown. This in vivo formed (ββ) homodimer cytochrome b(559)-like structure showed similar absorption and electron paramagnetic resonance spectral properties as the native purified cytochrome b(559). A higher midpoint redox potential (+126 mV) was detected in the in vivo formed protein compared to the in vitro reconstituted form, most likely due to a more hydrophobic environment imposed by the lipid membrane surrounding the heme.

摘要

描述了体外重建糖甜菜光合系统 II 细胞色素 b(559)的研究。首先克隆并在大肠杆菌中表达了α和β细胞色素亚基。使用来自包涵体的部分纯化重组亚基进行体外重建。可以用商业血红素重建(αα)和(ββ)同源二聚体以及(αβ)异源二聚体,后者更有效。这些重建样品的吸收光谱与天然异源二聚体细胞色素 b(559)形式相似。如电子顺磁共振和电位测定所示,大多数重建的细胞色素对应于一种低自旋形式,其中点还原电位为+36 mV,与天然纯化的细胞色素 b(559)相似。此外,在糖甜菜和集胞藻 PCC 6803 细胞色素 b(559)亚基的表达过程中,部分蛋白质亚基被整合到宿主细菌内膜中,但只有在蓝细菌的β亚基的情况下,才观察到与细菌内源性血红素形成细胞色素 b(559)样结构。形成这种结构的原因尚不清楚。这种在体内形成的(ββ)同源二聚体细胞色素 b(559)样结构表现出与天然纯化的细胞色素 b(559)相似的吸收和电子顺磁共振光谱特性。与体外重建形式相比,在体内形成的蛋白质中检测到更高的中点还原电位(+126 mV),这很可能是由于血红素周围的脂质膜所施加的更疏水的环境。

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本文引用的文献

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On the structure and function of cytochrome b-559.细胞色素 b-559 的结构与功能。
Photosynth Res. 1986 Jan;10(3):393-403. doi: 10.1007/BF00118305.
2
SDS-facilitated in vitro formation of a transmembrane B-type cytochrome is mediated by changes in local pH.SDS 促进的跨膜 B 型细胞色素的体外形成是由局部 pH 值变化介导的。
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A high redox potential form of cytochrome c550 in photosystem II from Thermosynechococcus elongatus.来源于嗜热盐生菌(Thermosynechococcus elongatus)的光合系统 II 中细胞色素 c550 的一种高氧化还原电势形式。
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Evidence for a novel quinone-binding site in the photosystem II (PS II) complex that regulates the redox potential of cytochrome b559.在光系统II(PS II)复合物中存在一个新型醌结合位点的证据,该位点调节细胞色素b559的氧化还原电位。
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CW-EPR and ENDOR study of cytochrome c6 from Anabaena PCC 7119.集胞藻PCC 7119细胞色素c6的连续波电子顺磁共振和电子核双共振研究
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