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通过进行同源建模,将Mce1A、Mce2A、Mce3A和Mce4A的序列同源性与其在结核分枝杆菌进入哺乳动物细胞中的可能功能相关联。

Correlating sequential homology of Mce1A, Mce2A, Mce3A and Mce4A with their possible functions in mammalian cell entry of Mycobacterium tuberculosis performing homology modeling.

作者信息

Mitra D, Saha B, Das D, Wiker H G, Das A K

机构信息

Department of Biotechnology, Indian Institute of Technology, Kharagpur 721 302, West Bengal, India.

出版信息

Tuberculosis (Edinb). 2005 Sep-Nov;85(5-6):337-45. doi: 10.1016/j.tube.2005.08.010. Epub 2005 Oct 26.

Abstract

OBJECTIVE

The striking homology of the Mycobacterium tuberculosis mammalian cell entry operons (mce1, mce2, mce3 and mce4) with other mycobacterial species and the proposed role of the mammalian cell entry protein 1A (Mce1A) of M. tuberculosis to facilitate invasion of host cells have led us to look into the finer details of these proteins in order to better understand their structure-function relationship.

DESIGN

We performed sequential alignments and secondary structure predictions of Mce1A, Mce2A, Mce3A and Mce4A, and compared these results with results from homology modeling by fold prediction and threading.

RESULTS

Sequential alignments showed that Mce1A and Mce2A are highly homologous, close to 70%, while the other combinations gave only about 30% similarities. The major parts of the proteins aligned without gaps and there were striking similarities by secondary structure predictions indicating that the proteins would have similar folds and to be alpha/beta proteins like the previously reported Mce1A model based on Colicin N. Fold prediction showed that the best templates for Mce2A were substrate-binding domain of DnaK and slow processing precursor penicillin acylase from Escherichia coli while the alpha-domains of Mce3A and Mce4A could both be modeled using the cytoplasmic domain of serine chemotaxis receptor as template.

CONCLUSION

Although different templates had to be used to model the MceA proteins, functional information may be derived that is relevant for their overall function in M. tuberculosis. The beta-domain is probably involved in binding with the receptors on target cells while the alpha-domain is more likely to be involved in pore formation. As predicted from the folds, Mce3A and Mce4A model structures indicate a lipid bound conformation and therefore may be required in signaling events of the mammalian cell entry process.

摘要

目的

结核分枝杆菌哺乳动物细胞进入操纵子(mce1、mce2、mce3和mce4)与其他分枝杆菌物种具有显著的同源性,且结核分枝杆菌的哺乳动物细胞进入蛋白1A(Mce1A)在促进宿主细胞侵袭方面的推测作用,促使我们深入研究这些蛋白质的细节,以便更好地理解它们的结构 - 功能关系。

设计

我们对Mce1A、Mce2A、Mce3A和Mce4A进行了序列比对和二级结构预测,并将这些结果与通过折叠预测和穿线法进行同源建模的结果进行比较。

结果

序列比对显示Mce1A和Mce2A高度同源,接近70%,而其他组合的相似性仅约为30%。蛋白质的主要部分比对时没有缺口,二级结构预测显示出显著的相似性,表明这些蛋白质具有相似的折叠,并且像先前基于大肠杆菌核酸内切酶N报道的Mce1A模型一样是α/β蛋白。折叠预测表明,Mce2A的最佳模板是DnaK的底物结合结构域和来自大肠杆菌的慢加工前体青霉素酰化酶,而Mce3A和Mce4A的α结构域都可以使用丝氨酸趋化受体的细胞质结构域作为模板进行建模。

结论

尽管必须使用不同的模板对MceA蛋白进行建模,但可能获得与其在结核分枝杆菌中的整体功能相关的功能信息。β结构域可能参与与靶细胞上受体的结合,而α结构域更可能参与孔的形成。正如从折叠结构预测的那样,Mce3A和Mce4A的模型结构表明存在脂质结合构象,因此可能在哺乳动物细胞进入过程的信号传导事件中发挥作用。

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