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细菌金属硫蛋白:过去、现在和未来的问题。

Bacterial metallothioneins: past, present, and questions for the future.

机构信息

Department of Chemistry, University of Warwick, Gibbet Hill Road, Coventry, CV4 7AL, UK.

出版信息

J Biol Inorg Chem. 2011 Oct;16(7):1011-24. doi: 10.1007/s00775-011-0790-y. Epub 2011 May 19.

Abstract

Bacterial metallothioneins (MTs) have been known since the mid-1980s. The only family known until recently was the BmtA family, exemplified by the zinc- and cadmium-binding SmtA from the cyanobacterium Synechococcus PCC 7942, for which a structure was determined in 2001. Only in 2008 was a second type of bacterial MT identified in mycobacteria, and the copper-binding gene product was called MymT. Many of the features of SmtA either have been unexpected or are otherwise "unusual", for example the presence of a zinc finger fold and the kinetic inertness of one of the four zinc ions bound to the protein. The unpredictability of molecular properties of this protein exemplified the need for continued biophysical studies of novel proteins. Homologues for SmtA have been identified in a limited number of bacterial genomes from cyanobacteria, pseudomonads, alphaproteobacteria, gammaproteobacteria, and firmicutes. Except for the residues defining the zinc finger fold, these homologous protein sequences display an intriguing variety, especially in terms of metal ligand position and identity. The increased number of homologues has allowed use of hidden Markov models to look for more remote relatives of SmtA, leading to the identification of a novel family of putative hybrid LIM domain MTs. However, database searches based on sequence similarity are of limited use for mining for further "overlooked" bacterial MTs, as so far undiscovered bacterial MTs may be too diverse from any other known MTs, and other approaches are required.

摘要

细菌金属硫蛋白(MTs)自 20 世纪 80 年代中期以来就为人所知。直到最近,人们才知道唯一的 BmtA 家族,其代表是来自蓝藻聚球藻 PCC 7942 的锌和镉结合 SmtA,其结构于 2001 年确定。直到 2008 年,在分枝杆菌中才发现第二种类型的细菌 MT,铜结合基因产物称为 MymT。SmtA 的许多特征要么出人意料,要么“不寻常”,例如锌指折叠的存在以及与蛋白质结合的四个锌离子之一的动力学惰性。该蛋白质的分子性质的不可预测性说明了需要继续对新型蛋白质进行生物物理研究。在蓝藻、假单胞菌、α变形菌、γ变形菌和Firmicutes 的少数细菌基因组中鉴定出 SmtA 的同源物。除了定义锌指折叠的残基外,这些同源蛋白序列显示出令人着迷的多样性,尤其是在金属配体位置和身份方面。同源物数量的增加使得可以使用隐马尔可夫模型来寻找 SmtA 的更多远程同源物,从而鉴定出一种新型的假定混合 LIM 结构域 MT 家族。然而,基于序列相似性的数据库搜索对于挖掘进一步的“被忽视”细菌 MT 来说用处有限,因为到目前为止,尚未发现的细菌 MT 可能与任何其他已知的 MT 过于不同,因此需要其他方法。

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