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Molecular modeling and molecular dynamics simulations based structural analysis of the SG2NA protein variants

机译:基于分子建模和分子动力学模拟的SG2NA蛋​​白变异体的结构分析

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Background SG2NA is a member of the striatin sub-family of WD-40 repeat proteins. Striatin family members have been associated with diverse physiological functions. SG2NA has also been shown to have roles in cell cycle progression, signal transduction etc. They have been known to interact with a number of proteins including Caveolin and Calmodulin and also propagate the formation of a multimeric protein unit called striatin-interacting phosphatase and kinase. As a pre-requisite for such interaction ability, these proteins are known to be unstable and primarily disordered in their arrangement. Earlier we had identified that it has multiple isoforms (namely 35, 78, 87?kDa based on its molecular weight) which are generated by alternative splicing. However, detailed structural information of SG2NA is still eluding the researchers. Results This study was aimed towards three-dimensional molecular modeling and characterization of SG2NA protein and its isoforms. One structure out of five was selected for each variant having the least value for C score. Out of these, m35 kDa with a C score value of ?3.21was the most poorly determined structure in comparison to m78 kDa and m87 kDa variants with C scores of ?1.16 and ?1.97 respectively. Further evaluation resulted in about 61.6% residues of m35 kDa, 76.6% residues of m78 kDa and 72.1% residues of m87 kDa falling in the favorable regions of Ramchandran Plot. Molecular dynamics simulations were also carried out to obtain biologically relevant structural models and compared with previous atomic coordinates. N-terminal region of all variants was found to be highly disordered. Conclusion This study provides first-hand detailed information to understand the structural conformation of SG2NA protein variants (m35?kDa, m78 kDa and m87 kDa). The WD-40 repeat domain was found to constitute antiparallel strands of β-sheets arranged circularly. This study elucidates the crucial structural features of SG2NA proteins which are involved in various protein-protein interactions and also reveals the extent of disorder present in the SG2NA structure crucial for excessive interaction and multimeric protein complexes. The study also potentiates the role of computational approaches for preliminary examination of unknown proteins in the absence of experimental information.
机译:背景SG2NA是WD-40重复蛋白的striatin亚家族的成员。 Striatin家族成员与多种生理功能有关。 SG2NA还被证明在细胞周期进程,信号转导等方面具有作用。已知它们可以与多种蛋白质相互作用,包括小窝蛋白和钙调蛋白,还可以传播称为striatin相互作用的磷酸酶和激酶的多聚蛋白质单元的形成。作为这种相互作用能力的先决条件,已知这些蛋白质是不稳定的,并且其排列主要是无序的。先前我们已经确定它具有多种同工型(基于其分子量分别为35、78、87?kDa),这些同工型是通过可变剪接产生的。但是,SG2NA的详细结构信息仍使研究人员望而却步。结果本研究旨在对SG2NA蛋​​白及其同工型进行三维分子建模和表征。对于每个具有C得分最低值的变体,从五种结构中选择一种。其中,与C得分分别为?1.16和?1.97的m78 kDa和m87 kDa变异体相比,C得分为?3.21的m35 kDa是确定性最差的结构。进一步评估发现,m35 kDa的残基约占61.6%,m78 kDa的残基约占76.6%,m87 kDa的残基占72.1%,落在Ramchandran图的有利区域。还进行了分子动力学模拟以获得生物学上相关的结构模型,并与先前的原子坐标进行了比较。发现所有变体的N末端区域高度无序。结论这项研究提供了第一手详细信息,以了解SG2NA蛋​​白变体(m35?kDa,m78 kDa和m87 kDa)的结构构象。发现WD-40重复结构域构成圆形排列的β-折叠的反平行链。这项研究阐明了SG2NA蛋​​白质的关键结构特征,这些蛋白质参与了各种蛋白质-蛋白质相互作用,还揭示了SG2NA结构中存在的对过度相互作用和多聚体蛋白质复合物至关重要的无序程度。在缺乏实验信息的情况下,该研究还增强了计算方法对未知蛋白质的初步检查的作用。

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