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使用质谱法鉴定细胞色素c6与光系统I亚基PsaF之间精确的静电识别位点。

Identification of precise electrostatic recognition sites between cytochrome c6 and the photosystem I subunit PsaF using mass spectrometry.

作者信息

Sommer Frederik, Drepper Friedel, Haehnel Wolfgang, Hippler Michael

机构信息

Institute of Plant Science, Department of Biology, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Biol Chem. 2006 Nov 17;281(46):35097-103. doi: 10.1074/jbc.M607384200. Epub 2006 Sep 19.

Abstract

The reduction of the photo-oxidized special chlorophyll pair P700 of photosystem I (PSI) in the photosynthetic electron transport chain of eukaryotic organisms is facilitated by the soluble copper-containing protein plastocyanin (pc). In the absence of copper, pc is functionally replaced by the heme-containing protein cytochrome c6 (cyt c6) in the green alga Chlamydomonas reinhardtii. Binding and electron transfer between both donors and PSI follows a two-step mechanism that depends on electrostatic and hydrophobic recognition between the partners. Although the electrostatic and hydrophobic recognition sites on pc and PSI are well known, the precise electrostatic recognition site on cyt c6 is unknown. To specify the interaction sites on a molecular level, we cross-linked cyt c6 and PSI using a zero-length cross-linker and obtained a cross-linked complex competent in fast and efficient electron transfer. As shown previously, cyt c6 cross-links specifically with the PsaF subunit of PSI. Mass spectrometric analysis of tryptic peptides from the cross-linked product revealed specific interaction sites between residues Lys27 of PsaF and Glu69 of cyt c6 and between Lys23 of PsaF and Glu69/Glu70 of cyt c6. Using these new data, we present a molecular model of the intermolecular electron transfer complex between eukaryotic cyt c6 and PSI.

摘要

在真核生物的光合电子传递链中,可溶性含铜蛋白质体蓝素(pc)有助于光合系统I(PSI)中光氧化的特殊叶绿素对P700的还原。在缺乏铜的情况下,绿藻莱茵衣藻中,含血红素的蛋白质细胞色素c6(cyt c6)在功能上取代了pc。供体与PSI之间的结合和电子转移遵循两步机制,这取决于伙伴之间的静电和疏水识别。虽然pc和PSI上的静电和疏水识别位点是众所周知的,但cyt c6上精确的静电识别位点尚不清楚。为了在分子水平上确定相互作用位点,我们使用零长度交联剂将cyt c6和PSI交联,得到了一种能够进行快速高效电子转移的交联复合物。如前所示,cyt c6与PSI的PsaF亚基特异性交联。对交联产物的胰蛋白酶肽段进行质谱分析,揭示了PsaF的Lys27残基与cyt c6的Glu69之间以及PsaF的Lys23与cyt c6的Glu69/Glu70之间的特异性相互作用位点。利用这些新数据,我们提出了真核生物cyt c6与PSI之间分子间电子转移复合物的分子模型。

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