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首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Conformation Dependence of the (CD alpha)-D-alpha Stretch Mode in Peptides. II. Explicitly Hydrated Alanine Peptide Structures
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Conformation Dependence of the (CD alpha)-D-alpha Stretch Mode in Peptides. II. Explicitly Hydrated Alanine Peptide Structures

机译:(CDα)-D-α拉伸模式在肽中的构象依赖性。二。显式水合丙氨酸肽结构

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Our previous studies of the potential utility of the (CD alpha)-D-alpha stretch frequency, nu(CD), as a tool for determining conformation in peptide systems (Mirkin and Krimm, J Phys Chem A 2004, 108, 10923-10924; 2007, 111, 53005303) dealt with the spectroscopic characteristics of isolated alanine peptides with alpha(R), beta, and polyproline II structures. We have now extended these ab initio calculations to include various explicit-water environments interacting with such conformers. I've find that the structure-discriminating feature of this technique is in fact enhanced as a result of the conformation-specific interactions of the bonding waters, in part due to our finding (Mirkin and Krimm, J Phys Chem B 2008, 112, 15268) that C-alpha-D-alpha center dot center dot center dot O(water) hydrogen bonds can be present in addition to those expected between water and the CO and NH of the peptide groups. In fact, nu(CD) is hardly affected by the latter bonding but can be shifted by tip to 70 cm(-1) by the former hydrogen bonds. We also discuss the factors that will have to be considered in developing the molecular dynamics (MD) treatment needed to satisfactorily take account of the influence of outer water layers on the structure of the first-layer water molecules that hydrogen bond to the peptide backbone.
机译:我们先前对(CD alpha)-D-alpha延伸频率nu(CD)作为确定肽系统构象的工具的潜在用途的研究(Mirkin和Krimm,J Phys Chem A 2004,108,10923-10924 ; 2007,111,53005303)涉及具有α(R),β和聚脯氨酸II结构的分离的丙氨酸肽的光谱特征。现在,我们已经将这些从头算扩展到了包括与这种构象子相互作用的各种显性水环境。我发现,由于键合水的构象特异性相互作用,该技术的结构区分功能实际上得到了增强,部分原因是由于我们的发现(Mirkin和Krimm,J Phys Chem B 2008,112, 15268)除了在水与肽基团的CO和NH之间预期的键外,还可以存在C-α-D-α中心点中心点中心点O(水)氢键。实际上,nu(CD)几乎不受后者键的影响,但可以通过前面的氢键尖端移至70 cm(-1)。我们还讨论了在开发分子动力学(MD)处理时必须考虑的因素,以令人满意地考虑到外水层对氢键合至肽主链的第一层水分子结构的影响。

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