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蓝藻念珠藻属Nostoc sp. PCC 7119中细胞色素f与质体蓝素之间相互作用的特异性主要由铜蛋白决定。

The specificity in the interaction between cytochrome f and plastocyanin from the cyanobacterium Nostoc sp. PCC 7119 is mainly determined by the copper protein.

作者信息

Albarrán Cristina, Navarro José A, De la Rosa Miguel A, Hervás Manuel

机构信息

Instituto de Bioquímica Vegetal y Fotosíntesis, Centro de Investigaciones Científicas Isla de la Cartuja, Universidad de Sevilla y Consejo Superior de Investigaciones Científicas, Sevilla, Spain.

出版信息

Biochemistry. 2007 Jan 30;46(4):997-1003. doi: 10.1021/bi0620757.

DOI:10.1021/bi0620757
PMID:17240983
Abstract

The plastocyanin-cytochrome f complex from Nostoc exhibits relevant structural differences when compared with the homologous complexes from other cyanobacteria and plants, with electrostatic and hydrophobic interactions being differently involved in each case. Here, five negatively charged residues of a recombinant form of cytochrome f from Nostoc have been replaced with either neutral or positively charged residues, and the effects of mutations on the kinetics of electron transfer to wild-type and mutant forms of plastocyanin have been measured by laser flash absorption spectroscopy. Cytochrome f mutants with some negative charges replaced with neutral residues exhibit an apparent electron transfer rate constant with wild-type plastocyanin similar to or slightly higher than that of the wild-type species, whereas the mutants with negative charges replaced with positive residues exhibit a significantly lower reactivity. Taken together, these results indicate that the effects of neutralizing residues at the electrostatically charged patch of cytochrome f are smaller than those previously observed for mutants of plastocyanin, thus suggesting that it is the copper protein which determines the specificity of the electrostatic interaction with the heme protein. Moreover, cross reactions between mutants of both proteins reveal the presence of some short-range specific electrostatic interactions. Our findings also make evident the fact that in Nostoc the main contribution to the electrostatic nature of the complex is provided by the small domain of cytochrome f.

摘要

与其他蓝细菌和植物的同源复合物相比,念珠藻中的质体蓝素 - 细胞色素f复合物表现出相关的结构差异,在每种情况下,静电和疏水相互作用的参与方式不同。在这里,念珠藻重组形式的细胞色素f的五个带负电荷的残基已被中性或带正电荷的残基取代,并且通过激光闪光吸收光谱法测量了突变对向野生型和突变型质体蓝素电子转移动力学的影响。一些负电荷被中性残基取代的细胞色素f突变体与野生型质体蓝素的表观电子转移速率常数与野生型物种相似或略高,而负电荷被正残基取代的突变体表现出明显较低的反应活性。综上所述,这些结果表明,在细胞色素f的带静电补丁处中和残基的影响小于先前观察到的质体蓝素突变体的影响,因此表明是铜蛋白决定了与血红素蛋白静电相互作用的特异性。此外,两种蛋白质突变体之间的交叉反应揭示了一些短程特异性静电相互作用的存在。我们的研究结果还表明,在念珠藻中,复合物静电性质的主要贡献由细胞色素f的小结构域提供。

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1
The specificity in the interaction between cytochrome f and plastocyanin from the cyanobacterium Nostoc sp. PCC 7119 is mainly determined by the copper protein.蓝藻念珠藻属Nostoc sp. PCC 7119中细胞色素f与质体蓝素之间相互作用的特异性主要由铜蛋白决定。
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2
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引用本文的文献

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通过定点二维红外光谱揭示质体蓝素-细胞色素 f 复合物中的不均匀和高度动态界面。
J Phys Chem B. 2019 Mar 7;123(9):2114-2122. doi: 10.1021/acs.jpcb.8b12157. Epub 2019 Feb 21.
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The complex of cytochrome f and plastocyanin from Nostoc sp. PCC 7119 is highly dynamic.鱼腥藻 PCC 7119 的细胞色素 f 和质体蓝素复合物具有高度动态性。
Chembiochem. 2012 Jun 18;13(9):1312-8. doi: 10.1002/cbic.201200073. Epub 2012 May 22.