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具有Fe3+ -螯合物还原能力的玉米细胞色素b5还原酶的克隆与特性分析

Cloning and characterization of a maize cytochrome-b5 reductase with Fe3+-chelate reduction capability.

作者信息

Bagnaresi P, Thoiron S, Mansion M, Rossignol M, Pupillo P, Briat J F

机构信息

Biochimie et Physiologie Moléculaire des Plantes, Centre National de la Recherche Scientifique (Unité de Recherche 2133), Institut National de la Recherche Agronomique et Ecole Nationale Supérieure d'Agronomie, F-34060 Montpellier cedex 1, France.

出版信息

Biochem J. 1999 Mar 1;338 ( Pt 2)(Pt 2):499-505.

Abstract

We previously purified an NADH-dependent Fe3+-chelate reductase (NFR) from maize roots with biochemical features of a cytochrome-b5 reductase (b5R) [Sparla, Bagnaresi, Scagliarini and Trost (1997) FEBS Lett. 414, 571-575]. We have now cloned a maize root cDNA that, on the basis of sequence information, calculated parameters and functional assay, codes for NFR. Maize NFR has 66% and 65% similarity to mammal and yeast b5R respectively. It has a deduced molecular mass of 31.17 kDa and a pI of 8.53. An uncharged region is observed at its N-terminus but no myristoylation consensus site is present. Taken together, these results, coupled with previous biochemical evidence, prove that NFR belongs to the b5R class and document b5R from a plant at the molecular level for the first time. We have also identified a putative Arabidopsis thaliana NFR gene. Its organization (nine exons) closely resembles mammalian b5Rs. Several NFR isoforms are expected to exist in maize. They are probably not produced by alternative translational mechanisms as occur in mammals, because of specific constraints observed in the maize NFR cDNA sequence. In contrast with yeast and mammals, tissue-specific and various subcellular localizations of maize b5R isoforms could result from differential expression of the various members of a multigene family. The first molecular characterization of a plant b5R indicates an overall remarkable evolutionary conservation for these versatile reductase systems. In addition, the well-characterized Fe3+-chelate reduction capabilities of NFR, in addition to known Fe3+-haemoglobin reduction roles for mammal b5R isoforms, suggest further and more generalized roles for the b5R class in endocellular iron reduction.

摘要

我们之前从玉米根中纯化出一种依赖NADH的Fe3+ -螯合物还原酶(NFR),其具有细胞色素b5还原酶(b5R)的生化特征[Sparla、Bagnaresi、Scagliarini和Trost(1997年)《欧洲生物化学学会联合会快报》414, 571 - 575]。我们现在克隆了一个玉米根cDNA,基于序列信息、计算参数和功能测定,它编码NFR。玉米NFR与哺乳动物和酵母的b5R分别具有66%和65%的相似性。其推导的分子量为31.17 kDa,pI为8.53。在其N端观察到一个不带电荷的区域,但不存在肉豆蔻酰化共有位点。综合这些结果,再加上之前的生化证据,证明NFR属于b5R类别,并首次在分子水平上记录了来自植物的b5R。我们还鉴定出一个拟南芥NFR推定基因。其结构(九个外显子)与哺乳动物的b5R非常相似。预计玉米中存在几种NFR同工型。由于在玉米NFR cDNA序列中观察到的特定限制,它们可能不是像在哺乳动物中那样通过可变翻译机制产生的。与酵母和哺乳动物不同,玉米b5R同工型的组织特异性和各种亚细胞定位可能是由多基因家族不同成员的差异表达导致的。植物b5R的首次分子表征表明这些多功能还原酶系统在总体上具有显著的进化保守性。此外,NFR具有特征明确的Fe3+ -螯合物还原能力,除了已知哺乳动物b5R同工型对Fe3+ -血红蛋白的还原作用外,这表明b5R类别在细胞内铁还原中具有更广泛的作用。

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