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首页> 外文期刊>PLoS Computational Biology >Positive allosteric modulators of lecithin: Cholesterol acyltransferase adjust the orientation of the membrane-binding domain and alter its spatial free energy profile
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Positive allosteric modulators of lecithin: Cholesterol acyltransferase adjust the orientation of the membrane-binding domain and alter its spatial free energy profile

机译:卵磷脂的正变构调节剂:胆固醇酰基转移酶调节膜结合结构域的取向,改变其空间自由能曲线

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Lecithin:cholesterol acyltransferase protein (LCAT) promotes the esterification reaction between cholesterol and phospholipid-derived acyl chains. Positive allosteric modulators have been developed to treat LCAT deficiencies and, plausibly, also cardiovascular diseases in the future. The mechanism of action of these compounds is poorly understood. Here computational docking and atomistic molecular dynamics simulations were utilized to study the interactions between LCAT and the activating compounds. Results indicate that all drugs bind to the allosteric binding pocket in the membrane-binding domain in a similar fashion. The presence of the compounds in the allosteric site results in a distinct spatial orientation and sampling of the membrane-binding domain (MBD). The MBD’s different spatial arrangement plausibly affects the lid’s movement from closed to open state and vice versa, as suggested by steered molecular dynamics simulations.
机译:卵磷脂:胆固醇酰基转移酶蛋白(LCAT)促进胆固醇和磷脂衍生的酰基链之间的酯化反应。 已经开发出阳性颠振调制剂以治疗LCAT缺陷,并享受未来的心血管疾病。 这些化合物的作用机制较差地理解。 这里利用计算对接和原子分子动力学模拟来研究LCAT与活化化合物之间的相互作用。 结果表明,所有药物以类似的方式以膜结合结构域中的囊状结合口袋结合。 在变构位点中的化合物的存在导致膜结合结构域(MBD)的明显的空间取向和取样。 如引导的分子动力学模拟所提出的,MBD的不同空间布置合理地影响盖子从关闭到开放状态的运动,反之亦然。

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