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HIV-1 protease flaps spontaneously open and reclose in molecular dynamics simulations

机译:HIV-1蛋白酶皮瓣在分子动力学模拟中自发打开和重新闭合

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摘要

We report unrestrained, all-atom molecular dynamics simulations of HIV-1 protease that sample large conformational changes of the active site flaps. In particular, the unliganded protease undergoes multiple conversions between the "closed" and "semiopen" forms observed in crystal structures of inhibitor-bound and unliganded protease, respectively, including reversal of flap "handedness." Simulations in the presence of a cyclic urea inhibitor yield stable closed flaps. Furthermore, we observe several events in which the flaps of the unliganded protease open to a much greater degree than observed in crystal structures and subsequently return to the semiopen state. Our data strongly support the hypothesis that the unliganded protease predominantly populates the semiopen conformation, with closed and fully open structures being a minor component of the overall ensemble. The results also provide a model for the flap opening and closing that is considered to be essential to enzyme function.
机译:我们报告了HIV-1蛋白酶的不受约束的,全原子的分子动力学模拟,该模拟取样了活性位点皮瓣的大构象变化。特别地,未结合的蛋白酶分别在抑制剂结合的和未结合的蛋白酶的晶体结构中观察到的“闭合”和“半开放”形式之间经历多次转化,包括反转襟翼“惯性”。在环状脲抑制剂存在下的模拟产生稳定的封闭襟翼。此外,我们观察到一些事件,其中未配体蛋白酶的襟翼打开的程度比在晶体结构中观察到的程度大得多,随后返回到半开放状态。我们的数据强有力地支持了以下假设:未配体的蛋白酶主要构成半开放构象,而封闭和完全开放的结构是整体整体的次要组成部分。结果还提供了皮瓣打开和关闭的模型,该模型被认为对酶功能至关重要。

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