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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Bindings of hMRP1 transmembrane peptides with dodecylphosphocholine and dodecyl-beta-D-maltoside micelles: A molecular dynamics simulation study
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Bindings of hMRP1 transmembrane peptides with dodecylphosphocholine and dodecyl-beta-D-maltoside micelles: A molecular dynamics simulation study

机译:HMRP1跨膜肽与十二烷基磷胆碱和十二烷基β-D-麦芽糖胶质胶束的结合:分子动力学模拟研究

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In this paper, we describe molecular dynamics simulation results of the interactions between four peptides (mTM10, mTM16, TM17 and KTM17) with micelles of dodecylphosphocholine (DPC) and dodecyl-beta-D-maltoside (DDM). These peptides represent three transmembrane fragments (TM10, 16 and 17) from the MSD1 and MSD2 membrane-spanning domains of an ABC membrane protein (hMRP1), which play roles in the protein functions. The peptide-micelle complex structures, including the tryptophan accessibility and dynamics were compared to circular dichroism and fluorescence studies obtained in water, trifluoroethanol and with micelles. Our work provides additional results not directly accessible by experiments that give further support to the fact that these peptides adopt an interfacial conformation within the micelles. We also show that the peptides are more buried in DDM than in DPC, and consequently, that they have a larger surface exposure to water in DPC than in DDM. As noted previously by simulations and experiments we have also observed formation of cation-pi bonds between the phosphocholine DPC headgroup and Trp peptide residue. Concerning the peptide secondary structures (SS), we find that in TFE their initial helical conformations are maintained during the simulation, whereas in water their initial SS are lost after few nanoseconds of simulation. An intermediate situation is observed with micelles, where the peptides remain partially folded and more structured in DDM than in DPC. Finally, our results show no sign of beta-strand structure formation as invoked by far-UV CD experiments even when three identical peptides are simulated either in water or with micelles. (C) 2013 Elsevier B.V. All rights reserved.
机译:在本文中,我们描述了用十二烷基磷胆碱(DPC)和十二烷基 - β-D-麦芽糖苷(DDM)的四种肽(MTM10,MTM16,TM17和KTM17)之间的分子动力学模拟结果。这些肽代表来自ABC膜蛋白(HMRP1)的MSD1和MSD2膜跨越结构域的三种跨膜片段(TM10,16和17),其在蛋白质功能中起作用。将肽 - 胶束复合结构包括在水,三氟乙醇和胶束中获得的圆形二色性和荧光研究进行了比较。我们的工作提供了不可直接访问的额外结果,实验不能进一步支持这些肽在胶束内采用界面构象的事实。我们还表明,肽比DPC更暗集DDM,因此,它们在DPC中具有更大的表面暴露而不是DDM。如前所述,通过模拟和实验所知,我们还观察到普华啉DPC头组和TRP肽残基之间的形成阳离子-PI键。关于肽二次结构(SS),我们发现在TFE中,它们在模拟期间保持初始螺旋构象,而在水中缺少少数纳秒的仿真之后,它们的初始SS丢失。用胶束观察中间情况,其中肽保持部分折叠,并且比DPC在DDM中更具构造。最后,我们的结果表明,即使在水中或用胶束模拟三种相同的肽,也没有通过FAR-UV CD实验调用的β-链结构形成的迹象。 (c)2013年elestvier b.v.保留所有权利。

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