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首页> 外文期刊>Journal of molecular graphics & modelling >Structural insights into type I and type II of nsp4 porcine reproductive and respiratory syndrome virus (nsp4 PRRSV) by molecular dynamics simulations
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Structural insights into type I and type II of nsp4 porcine reproductive and respiratory syndrome virus (nsp4 PRRSV) by molecular dynamics simulations

机译:通过分子动力学模拟对NSP4猪生殖和呼吸综合征病毒(NSP4 PRRSV)的I型和II型和II型的结构见解

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摘要

Porcine reproductive and respiratory virus (PRRSV) causes major economic concerns for the swine industry worldwide. We have performed molecular dynamics simulations (MD) and principle component analysis (PCA) to investigate the role of the catalytic triad and conformational dynamics of type I and type II of nsp4 PRRSV. The results showed that the RMSF of residues 136-142 near the active site of all models was highly flexible. Moreover, we identified the effect of single structural mutations of the catalytic triad. The percentage of residue with a 0.1 nm RMSF value and PCA results revealed that the mutations affected domain I and II suggesting the wild types were more stable than the mutants. At the catalytic triad, the distances between H39 and 5118 were very flexible while the distances between H39 and D64 were very stable. H39, D64 and 5118 showed high occupancy percentage of the hydrogen bond interaction with many residues that are conserved in PRRSVAS, PRRSVES, LDVC, LDVP and EAV. More-over, 5118 of wild-type protein formed H-bonds with T134 and G135 but these interactions were lost in PRRSVAV (S118A) and PRRSVES (S117A) indicating that the substitution of important H-bond interaction in PRRSVAS (S118A) and PRRSVES (S117A) affected the flexibility around the catalytic triad, conformation and proteolytic activity. Overall, our study may provide the structural basic of the catalytic triad and be useful for testing the protein activity in future experiments. (C) 2017 Elsevier Inc. All rights reserved.
机译:猪生殖和呼吸道病毒(PRRSV)对全球猪业产生重大的经济问题。我们已经进行了分子动力学模拟(MD)和原理分量分析(PCA),以研究I型和NSP4 PRRSV的II型和II型的作用。结果表明,所有型号的活性部位附近的残留物136-142的RMSF非常灵活。此外,我们确定了催化三合会的单一结构突变的影响。含有0.1nm的RMSF值和PCA结果的残基百分比显示突变影响结构域I和II表明野生类型比突变体更稳定。在催化三合会,H39和5118之间的距离非常柔韧,而H39和D64之间的距离非常稳定。 H39,D64和5118显示了氢键相互作用的高占用百分比与许多残留在PRRSVAS,PRRSVE,LDVC,LDVP和EAV中。更多 - 超过,5118种野生型蛋白质形成H键,但是在PRRSVAV(S118A)和PRRSVE(S117A)中丢失了这些相互作用,表明在PRRSVAS(S118A)和PRRSVE中的重要H键相互作用替代(S117A)影响催化三合会,构象和蛋白水解活性周围的灵活性。总体而言,我们的研究可以提供催化三合会的结构基础,可用于在未来的实验中测试蛋白质活动。 (c)2017年Elsevier Inc.保留所有权利。

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