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直接证据表明,在具有 Pro-Pro-芳基模体的肽中,CH···π 相互作用介导 Pro-cisPro 键的稳定。

Direct evidence for CH···π interaction mediated stabilization of Pro-cisPro bond in peptides with Pro-Pro-aromatic motifs.

机构信息

Department of Biophysics, Bose Institute, P-1/12 CIT Scheme VIIM, Kolkata 700054, India.

出版信息

J Am Chem Soc. 2012 Mar 14;134(10):4661-9. doi: 10.1021/ja209334v. Epub 2012 Mar 1.

DOI:10.1021/ja209334v
PMID:22335630
Abstract

Although weak interactions play subtle but important roles in dictating protein structures, their experimental detection is nontrivial. From NOE experiments we provide direct evidence for the presence of CH···π interaction, operational between the C(α)-H of the first Pro and the aromatic (Aro) side chain of Xaa, in a peptide series with the general sequence Ac-Pro-Pro-Xaa-NH(2). Indirect evidence of CH···π interaction is provided from ring current-induced upfield displacement of Pro(1) C(α)-H chemical shifts and restriction of side-chain (χ1) rotation of Xaa. A consequence of this interaction is the enhanced stability of the Pro-cisPro conformer in Ac-Pro-Pro-Xaa-NH(2) when Xaa is aromatic. The free energies associated with trans to cis transformation of the Pro-Pro moiety are 0.35, 0.59, 0.64, and 0.82 kcal/mol when Xaa is Tyr, Trp, Phe, and His (pH of 8.4), respectively. In comparison, the corresponding free energy is ∼1.55 kcal/mol when Xaa is nonaromatic. The observed population of Pro-cisPro-His and the pH-induced perturbation of electron density of the His side chain were correlated, providing further evidence for a direct role of CH···π interaction in modulating the stability of Pro-cisPro population in Ac-Pro-Pro-Aro-NH(2). Our study establishes Pro-Pro-Aro to be a new sequence motif that can stabilize Pro-cisPro peptide bonds. This study not only identifies a new structurally biased sequence motif but also directly demonstrates the role played by CH···π interactions in subtly altering conformational preferences of three-residue peptide sequences with implications on the role played by cis-peptide bonds in unfolded proteins.

摘要

虽然弱相互作用在决定蛋白质结构方面起着微妙而重要的作用,但它们的实验检测并不简单。从 NOE 实验中,我们提供了直接证据,证明在具有一般序列 Ac-Pro-Pro-Xaa-NH(2) 的肽系列中存在 C(α)-H 与芳香族 (Aro) Xaa 侧链之间的 CH···π 相互作用。CH···π 相互作用的间接证据来自 Pro(1) C(α)-H 化学位移的环电流诱导向上位移和 Xaa 侧链 (χ1) 旋转的限制。这种相互作用的结果是,当 Xaa 是芳香族时,Ac-Pro-Pro-Xaa-NH(2) 中 Pro-顺式 Pro 构象的稳定性增强。当 Xaa 是 Tyr、Trp、Phe 和 His(pH 为 8.4)时,Pro-Pro 部分从反式到顺式转变的自由能分别为 0.35、0.59、0.64 和 0.82 kcal/mol。相比之下,当 Xaa 是非芳香族时,相应的自由能约为 1.55 kcal/mol。观察到 Pro-顺式 Pro-His 的存在和 His 侧链电子密度的 pH 诱导扰动相关,进一步证明了 CH···π 相互作用在调节 Ac-Pro-Pro-Aro-NH(2) 中 Pro-顺式 Pro 群体的稳定性方面的直接作用。我们的研究确立了 Pro-Pro-Aro 为一种新的序列基序,可以稳定 Pro-顺式 Pro 肽键。这项研究不仅确定了一个新的结构偏向序列基序,而且还直接证明了 CH···π 相互作用在微妙改变三残基肽序列构象偏好方面的作用,这对未折叠蛋白质中顺式肽键的作用具有启示意义。

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