Suppr超能文献

在绿色谱系中,必需的胞质铁硫蛋白Nbp35在没有Cfd1伴侣的情况下发挥作用。

The essential cytosolic iron-sulfur protein Nbp35 acts without Cfd1 partner in the green lineage.

作者信息

Bych Katrine, Netz Daili J A, Vigani Gianpiero, Bill Eckhard, Lill Roland, Pierik Antonio J, Balk Janneke

机构信息

Department of Plant Sciences, University of Cambridge, Cambridge CB2 3EA, United Kingdom.

出版信息

J Biol Chem. 2008 Dec 19;283(51):35797-804. doi: 10.1074/jbc.M807303200. Epub 2008 Oct 28.

Abstract

In photosynthetic eukaryotes assembly components of iron-sulfur (Fe-S) cofactors have been studied in plastids and mitochondria, but how cytosolic and nuclear Fe-S cluster proteins are assembled is not known. We have characterized a plant P loop NTPase with sequence similarity to Nbp35 of yeast and mammals, a protein of the cytosolic Cfd1-Nbp35 complex mediating Fe-S cluster assembly. Genome analysis revealed that NBP35 is conserved in the green lineage but that CFD1 is absent. Moreover, plant and algal NBP35 proteins lack the characteristic CXXC motif in the C terminus, thought to be required for Fe-S cluster binding. Nevertheless, chemical reconstitution and spectroscopy showed that Arabidopsis (At) NBP35 bound a [4Fe-4S] cluster in the C terminus as well as a stable [4Fe-4S] cluster in the N terminus. Holo-AtNBP35 was able to transfer an Fe-S cluster to an apoprotein in vitro. When expressed in yeast, AtNBP35 bound 55Fe dependent on the cysteine desulfurase Nfs1 and was able to partially rescue the growth of a cfd1 mutant but not of an nbp35 mutant. The AtNBP35 gene is constitutively expressed in planta, and its disruption was associated with an arrest of embryo development. These results show that despite considerable divergence from the yeast Cfd1-Nbp35 Fe-S scaffold complex, AtNBP35 has retained similar Fe-S cluster binding and transfer properties and performs an essential function.

摘要

在光合真核生物中,铁硫(Fe-S)辅因子的组装成分已在质体和线粒体中得到研究,但胞质和细胞核中的Fe-S簇蛋白是如何组装的尚不清楚。我们鉴定了一种植物P环NTPase,其序列与酵母和哺乳动物的Nbp35相似,是胞质Cfd1-Nbp35复合物中一种介导Fe-S簇组装的蛋白质。基因组分析表明,NBP35在绿色谱系中保守,但CFD1不存在。此外,植物和藻类的NBP35蛋白在C端缺乏特征性的CXXC基序,而该基序被认为是Fe-S簇结合所必需的。然而,化学重组和光谱分析表明,拟南芥(At)NBP35在C端结合了一个[4Fe-4S]簇,在N端也结合了一个稳定的[4Fe-4S]簇。全AtNBP35能够在体外将一个Fe-S簇转移到脱辅基蛋白上。当在酵母中表达时,AtNBP35依赖于半胱氨酸脱硫酶Nfs1结合55Fe,并能够部分挽救cfd1突变体的生长,但不能挽救nbp35突变体的生长。AtNBP35基因在植物中组成型表达,其破坏与胚胎发育停滞有关。这些结果表明,尽管与酵母Cfd1-Nbp35 Fe-S支架复合物有很大差异,但AtNBP35保留了相似的Fe-S簇结合和转移特性,并执行着重要功能。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验