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Functional insights by comparison of modeled structures of 18kDa small heat shock protein and its mutant in Mycobacterium leprae

机译:通过比较麻风分枝杆菌中18kDa小热激蛋白及其突变体的建模结构获得的功能见解

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摘要

In this work we are proposing Homology modeled structures of Mycobacterium leprae 18kDa heat shock protein and its mutant. The more closely related structure of the small heat shock protein (sHSP) belonging to the eukaryotic species from wheat sHSP16.9 and 16.3kDa ACR1 protein from Mycobacterium tuberculosis were used as template structures. Each model contains an N-terminal domain, alpha-crystalline domain and a C-terminal tail. The models showed that a single point mutation from serine to proline at 52nd position causes structural changes. The structural changes are observed in N-terminal region and alpha-crystalline domains. Serine in 52nd position is observed in β4 strand and Proline in 52nd position is observed in loop. The number of residues contributing α helix at N-terminal region varies in both models. In 18S more number of residues is present in α helix when compared to 18P. The loop regions between β3 and β4 strands of both models vary in number of residues present in it. Number of residues contributing β4 strand in both models vary. β6 strand is absent in both models. Major functional peptide region of alpha crystalline domains of both models varies. These differences observed in secondary structures support their distinct functional roles. It also emphasizes that a point mutation can cause structural variation.
机译:在这项工作中,我们提出了分枝状的麻风分枝杆菌18kDa热激蛋白及其突变体的同源结构模型。属于小麦sHSP16.9真核生物的小热激蛋白(sHSP)和来自结核分枝杆菌的16.3kDa ACR1蛋白的更紧密相关的结构用作模板结构。每个模型都包含一个N末端结构域,一个α晶体结构域和一个C末端尾巴。这些模型显示,在52 nd 位置从丝氨酸到脯氨酸的单点突变会引起结构变化。在N-末端区域和α-晶域中观察到结构变化。在β4链中观察到丝氨酸在52 位置,脯氨酸在环中观察到52 位置。在两个模型中,在N端区域贡献α螺旋的残基数均不同。与18P相比,在18S中,α螺旋中存在更多的残基。两种模型的β3和β4链之间的环区的残基数量都不同。在两个模型中,贡献β4链的残基数量不同。在两个模型中都没有β6链。两种模型的α晶域的主要功能性肽区均不同。在二级结构中观察到的这些差异支持其独特的功能角色。它还强调点突变会导致结构变异。

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