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首页> 外文期刊>Journal of molecular modeling >The intrinsic helical propensities of the helical fragments in prion protein under neutral and low pH conditions: A replica exchange molecular dynamics study
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The intrinsic helical propensities of the helical fragments in prion protein under neutral and low pH conditions: A replica exchange molecular dynamics study

机译:中性和低pH条件下病毒蛋白中螺旋片段的内在螺旋倾向:副本交换分子动力学研究

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摘要

Replica exchange molecular dynamics simulations in neutral and acidic aqueous solutions were employed to study the intrinsic helical propensities of three helices in both Syrian hamster (syPrP) and human (huPrP) prion proteins. The helical propensities of syPrP HA and huPrP HA are very high under both pH conditions, which implies that HA is barely involved in the helix-to-β transition. The SyPrP HB chain has a strong tendency to adopt an extended conformation, which is possibly involved in the mechanism of infectious prion diseases in Syrian hamster. HuPrP HC has more of a preference for the extended conformation than huPrP HA and huPrP HB do, which leads to the conjecture that it is more likely to be the source of β-rich structure for human prion protein. We also noticed that the presence of salt bridges is not correlated with helical propensity, indicating that salt bridges do not stabilize helices.
机译:使用中性和酸性水溶液中的复制子交换分子动力学模拟来研究叙利亚仓鼠(syPrP)和人(huPrP)pr病毒蛋白中三个螺旋的固有螺旋倾向。 syPrP HA和huPrP HA在两个pH条件下的螺旋倾向都很高,这意味着HA几乎不参与螺旋向β的转变。 SyPrP HB链倾向于采用扩展构象,这可能与叙利亚仓鼠的传染性pr病毒疾病机制有关。 HuPrP HC比huPrP HA和huPrP HB更喜欢扩展构象,这导致人们猜测它更可能是人类病毒蛋白富含β的结构的来源。我们还注意到盐桥的存在与螺旋倾向无关,表明盐桥不能稳定螺旋。

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