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首页> 外文期刊>Biochemical Society Transactions >Cytochrome c6A: discovery, structure and properties responsible for its low haem redox potential.
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Cytochrome c6A: discovery, structure and properties responsible for its low haem redox potential.

机译:细胞色素C6A:导致其低血红素潜力的发现,结构和特性。

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摘要

Cytochrome c(6A) is a unique dithio-cytochrome of green algae and plants. It has a very similar core structure to that of bacterial and algal cytochromes c(6), but is unable to fulfil the same function of transferring electrons from cytochrome f to Photosystem I. A key feature of cytochrome c(6A) is that its haem midpoint potential is more than 200 mV below that of cytochrome c(6) (E(m) approximately +340 mV) despite both cytochromes having histidine and methionine residues as axial haem-iron ligands. One salient difference between the haem pockets is that a valine residue in cytochrome c(6A) replaces a highly conserved glutamine residue in cytochrome c(6). This difference has been probed using site-directed mutagenesis, X-ray crystallography and protein film voltammetry studies. It has been found that the stereochemistry of the glutamine residue within the haem pocket has a destabilizing effect and is responsible for tuning the haem's midpoint potential by over 100 mV. This large effect may have contributed to the evolution of a new biological function for cytochrome c(6A).
机译:细胞色素c(6a)是绿藻和植物的独特的圆锥形色素。它具有与细菌和藻类细胞色素c(6)的核心结构非常相似,但无法实现将电子从细胞色素F转移到光系统I的相同功能。尽管两种细胞色素均具有组氨酸和蛋氨酸残基作为轴向出血铁配体,但中点电势比细胞色素C(6)(6)(6)(E(M)大约+340 mV)的电势高出200 mV。血浆口袋之间的一个显着差异是,细胞色素C(6A)中的瓣膜残基取代了细胞色素C中高度保守的谷氨酰胺残基(6)。使用位置定向的诱变,X射线晶体学和蛋白质膜伏安法研究探测了这种差异。已经发现,血迹袋中的谷氨酰胺残留物的立体化学具有不稳定的作用,并负责使血迹的中点电位通过100 mV以上。这种巨大的影响可能导致细胞色素C的新生物学功能的演变(6a)。

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