来自Anabaena sp. PCC7120的FurC (PerR)的金属结合和寡聚化性能:一个额外的监管层?

IF 2.9 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Metallomics Pub Date : 2022-10-20 DOI:10.1093/mtomcs/mfac077
Cristina Sarasa-Buisan, Etienne Emonot, Marta Martínez-Júlvez, Emma Sevilla, Adrián Velázquez-Campoy, Serge Crouzy, M Teresa Bes, Isabelle Michaud-Soret, María F Fillat
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引用次数: 2

摘要

蓝藻中的金属和氧化还原平衡受到严格控制,以保护光合机制免受金属错配,并最大限度地减少细胞损伤。这种控制主要是由铁摄取调节蛋白(FUR)完成的。在Anabaena sp. PCC7120中,FurC作为PerR(过氧化物反应)类似物。尽管它很重要,但这种调节剂的特性仍然很差。虽然FurC缺乏典型的CXXC基序存在于FUR蛋白中,但它每个亚基含有一个紧密结合的锌。FurC: Zn在第二位点结合锌和锰,锰在FurC: Zn与DNA靶PprxA结合时效率更高。FurC: Zn的寡聚分析证明了从二聚体到八聚体的不同聚集体的存在。值得注意的是,分子间二硫键不参与FurC: Zn二聚化,二聚体是蛋白质的最还原形式。二聚体的低聚反应发生在硫醇被H2O2或二胺氧化时,并且可以被1,4-二硫苏糖醇(DTT)逆转。调节剂的不可逆失活是由亚铁促进的金属催化氧化引起的。然而,在没有铁的情况下,用H2O2氧化后的失活可以通过添加DTT来恢复。使用AlphaFold Colab和SWISS-MODEL获得的FurC: Zn二聚体和四聚体模型的比较,可以推断形成金属结合位点的残基,并提出Cys86参与可逆四聚体的形成。我们的研究结果揭示了Anabaena sp. PCC7120中存在两个水平的FurC: Zn失活,一个是通过二硫化物形成的FurC: Zn四聚体可逆失活,另一个是不可逆的金属催化氧化失活。这种额外的可逆调节可能是特定的蓝藻。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Metal binding and oligomerization properties of FurC (PerR) from Anabaena sp. PCC7120: an additional layer of regulation?

Metal and redox homeostasis in cyanobacteria is tightly controlled to preserve the photosynthetic machinery from mismetallation and minimize cell damage. This control is mainly taken by FUR (ferric uptake regulation) proteins. FurC works as the PerR (peroxide response) paralog in Anabaena sp. PCC7120. Despite its importance, this regulator remained poorly characterized. Although FurC lacks the typical CXXC motifs present in FUR proteins, it contains a tightly bound zinc per subunit. FurC: Zn stoichiometrically binds zinc and manganese in a second site, manganese being more efficient in the binding of FurC: Zn to its DNA target PprxA. Oligomerization analyses of FurC: Zn evidence the occurrence of different aggregates ranging from dimers to octamers. Notably, intermolecular disulfide bonds are not involved in FurC: Zn dimerization, dimer being the most reduced form of the protein. Oligomerization of dimers occurs upon oxidation of thiols by H2O2 or diamide and can be reversed by 1,4-Dithiothreitol (DTT). Irreversible inactivation of the regulator occurs by metal catalyzed oxidation promoted by ferrous iron. However, inactivation upon oxidation with H2O2 in the absence of iron was reverted by addition of DTT. Comparison of models for FurC: Zn dimers and tetramers obtained using AlphaFold Colab and SWISS-MODEL allowed to infer the residues forming both metal-binding sites and to propose the involvement of Cys86 in reversible tetramer formation. Our results decipher the existence of two levels of inactivation of FurC: Zn of Anabaena sp. PCC7120, a reversible one through disulfide-formed FurC: Zn tetramers and the irreversible metal catalyzed oxidation. This additional reversible regulation may be specific of cyanobacteria.

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来源期刊
Metallomics
Metallomics 生物-生化与分子生物学
CiteScore
7.00
自引率
5.90%
发文量
87
审稿时长
1 months
期刊介绍: Global approaches to metals in the biosciences
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