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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Conformational changes associated with L16P and T118M mutations in the membrane-embedded PMP22 protein, consequential in CMT-1A
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Conformational changes associated with L16P and T118M mutations in the membrane-embedded PMP22 protein, consequential in CMT-1A

机译:膜嵌入PMP22蛋白中的L16P和T118M突变相关的构象变化,CMT-1A中的相应

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Peripheral myelin protein 22 (PMP22) resides in the plasma membrane and is required for myelin formation in the peripheral nervous system. Excess PMP22 mutants accumulate in the endoplasmic reticulum (ER) resulting in the inherited neuropathies of Charcot-Marie-Tooth disease. However, there was no evidence of the structure of PMP22 or how mutations affect its folding. Therefore, in this study, we combined bioinformatics and homology modeling approaches to obtain three-dimensional native and mutated PMP22 models and its anchoring to a POPC membrane, submitted to .5-s MD simulations, to determine how the L16P and T118M mutations affect the conformational behavior of PMP22. In addition, we investigated the ability of the native and mutated species to accumulate in the ER, via interaction with RER1, by combining protein-protein docking and MD simulations, taking the conformations that were most representative of the native and mutated PMP22 systems and RER1 conformations. Principal component analysis over MD simulations revealed that L16P and T118M mutations resulted in increased structural instability compared to the native form, which is consistent with previous experimental findings of increased structural fluctuations along a loop connecting transmembrane -helix1 and -helix2. Docking and MD simulations coupled with the MMGBSA approach allowed the identification that the binding interface for the PMP22-RER1 complex takes place through transmembrane -helix1 and -helix2, with higher effective binding free energy values between the mutated PMP22 systems and RER1 than for the native PMP22, mainly through van der Waals interactions.
机译:外周髓鞘蛋白22(PMP22)在血浆膜中存在,并且需要在外周神经系统中形成髓鞘形成。过量的PMP22突变体积聚在内质网(ER)中,导致Charcot-Marie-Dooth疾病的遗传性神经病。然而,没有证据表明PMP22的结构或突变如何影响其折叠。因此,在本研究中,我们组合生物信息学和同源性建模方法,以获得三维天然和突变的PMP22型号及其锚定对POPC膜,提交到.5-S MD模拟,以确定L16P和T118M突变如何影响PMP22的构象行为。此外,我们通过组合蛋白质 - 蛋白对接和MD模拟,通过与RER1的相互作用来研究天然和突变物种在ER中积聚的能力,采用最多代表天然和突变的PMP22系统和RER1的构象构象。 MD模拟的主成分分析显示,与本地形式相比,L16P和T118M突变导致结构不稳定性增加,这与先前的结构波动沿环连接跨膜-Helix1和-helix2的结构波动增加一致。与MMGBSA方法耦合的对接和MD模拟允许识别PMP22-RER1复合物的结合界面通过跨膜-Helix1和-Helix2进行,并且在突变的PMP22系统和RER1之间的较高有效的自由能值和RER1而不是原生物PMP22,主要是通过Van der Waals互动。

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