Structural Variations Induced by Temperature Changes in Rotavirus VP6 Protein Immersed in an Electric Field and Their Effects on Epitopes of The Region 300-396

C. Peña-Negrete, M. Fuentes-Acosta, J. Mulia, L. A. Mandujano-Rosas, D. Osorio-González
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引用次数: 1

Abstract

Rotavirus diarrhea is an infectious intestinal disease that causes about 215 thousand deaths annually in infants under five years old. This virus is formed by three layers of concentric proteins that envelop its genome, from which VP6 structural protein is the most conserved among rotavirus serotypes and an excellent vaccine candidate. Recent studies have shown that structural proteins are susceptible to losing their biological function when their conformation is modified by moderate temperature increments, and in the case of VP6, its antigen efficiency decreases. We performed an in silicoanalysis to identify the structural variations in the epitopes 301-315, 357-366, and 376-384 of the rotavirus VP6 protein -in a hydrated medium- when the temperature is increased from 310 K to 322 K. In the latter state, we applied an electric field equivalent to a low energy laser pulse and calculated the fluctuations per amino acid residue. We identified that the region 301-315 has greater flexibility and density of negative electrical charge; nevertheless, at 322 K it experiences a sudden change of secondary structure that could decrease its efficiency as an antigenic determinant. The applied electric field induces electrical neutrality in the region 357-366, whereas in 376-384 inverts the charge, implying that temperature changes in the range 310 K-322 K are a factor that promotes thermoelectric effects in the VP6 protein epitopes in the region 300-396.
电场作用下轮状病毒VP6蛋白温度变化对300-396区表位的影响
轮状病毒腹泻是一种传染性肠道疾病,每年导致约21.5万5岁以下婴儿死亡。该病毒由包裹其基因组的三层同心蛋白构成,其中VP6结构蛋白在轮状病毒血清型中最为保守,是一种极好的候选疫苗。最近的研究表明,当结构蛋白的构象被适度的温度增加修饰时,结构蛋白容易失去其生物学功能,以VP6为例,其抗原效率降低。当温度从310 K升高到322 K时,我们对轮状病毒VP6蛋白表位301-315、357-366和376-384的结构变化进行了硅分析。在后一种状态下,我们施加了一个相当于低能量激光脉冲的电场,并计算了每个氨基酸残基的波动。我们发现301-315区域具有更大的灵活性和负电荷密度;然而,在322 K时,它经历了二级结构的突然变化,这可能会降低其作为抗原决定因子的效率。外加电场在357-366区诱导电中性,而在376-384区使电荷反转,这意味着310 K-322 K范围内的温度变化是促进300-396区VP6蛋白表位热电效应的一个因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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