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绿藻斜生栅藻中一种新型铁氢化酶与光合电子传递链相关。

A novel type of iron hydrogenase in the green alga Scenedesmus obliquus is linked to the photosynthetic electron transport chain.

作者信息

Florin L, Tsokoglou A, Happe T

机构信息

Botanisches Institut der Universität Bonn, Karlrobert-Kreiten-Strasse 13, 53115 Bonn, Germany.

出版信息

J Biol Chem. 2001 Mar 2;276(9):6125-32. doi: 10.1074/jbc.M008470200. Epub 2000 Nov 28.

Abstract

Hydrogen evolution is observed in the green alga Scenedesmus obliquus after a phase of anaerobic adaptation. In this study we report the biochemical and genetical characterization of a new type of iron hydrogenase (HydA) in this photosynthetic organism. The monomeric enzyme has a molecular mass of 44.5 kDa. The complete hydA cDNA of 2609 base pairs comprises an open reading frame encoding a polypeptide of 448 amino acids. The protein contains a short transit peptide that routes the nucleus encoded hydrogenase to the chloroplast. Antibodies raised against the iron hydrogenase from Chlamydomonas reinhardtii react with both the isolated and in Escherichia coli overexpressed protein of S. obliquus as shown by Western blotting. By analyzing 5 kilobases of the genomic DNA, the transcription initiation site and five introns within hydA were revealed. Northern experiments suggest that hydA transcription is induced during anaerobic incubation. Alignments of S. obliquus HydA with known iron hydrogenases and sequencing of the N terminus of the purified protein confirm that HydA belongs to the class of iron hydrogenases. The C terminus of the enzyme including the catalytic site (H cluster) reveals a high degree of identity to iron hydrogenases. However, the lack of additional Fe-S clusters in the N-terminal domain indicates a novel pathway of electron transfer. Inhibitor experiments show that the ferredoxin PetF functions as natural electron donor linking the enzyme to the photosynthetic electron transport chain. PetF probably binds to the hydrogenase through electrostatic interactions.

摘要

在经历一段厌氧适应期后,在斜生栅藻中观察到了氢气释放现象。在本研究中,我们报道了这种光合生物中一种新型铁氢化酶(HydA)的生化和遗传学特征。该单体酶的分子量为44.5 kDa。2609个碱基对的完整hydA cDNA包含一个编码448个氨基酸多肽的开放阅读框。该蛋白质含有一个短转运肽,可将细胞核编码的氢化酶引导至叶绿体。如蛋白质免疫印迹所示,针对莱茵衣藻铁氢化酶产生的抗体与斜生栅藻分离的以及在大肠杆菌中过表达的蛋白质均发生反应。通过分析5千碱基的基因组DNA,揭示了hydA内的转录起始位点和五个内含子。Northern实验表明,hydA转录在厌氧培养期间被诱导。将斜生栅藻HydA与已知铁氢化酶进行比对以及对纯化蛋白质的N端进行测序,证实HydA属于铁氢化酶类别。该酶的C端包括催化位点(H簇)与铁氢化酶具有高度同源性。然而,N端结构域缺乏额外的铁硫簇表明存在一条新的电子传递途径。抑制剂实验表明,铁氧化还原蛋白PetF作为天然电子供体,将该酶与光合电子传递链相连。PetF可能通过静电相互作用与氢化酶结合。

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