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将侧链相互作用添加到修正的利夫森-罗伊格螺旋-卷曲理论中:应用于苯丙氨酸-甲硫氨酸相互作用的能量学

Addition of side chain interactions to modified Lifson-Roig helix-coil theory: application to energetics of phenylalanine-methionine interactions.

作者信息

Stapley B J, Rohl C A, Doig A J

机构信息

Department of Biochemistry and Applied Molecular Biology, University of Manchester Institute of Science and Technology, United Kingdom.

出版信息

Protein Sci. 1995 Nov;4(11):2383-91. doi: 10.1002/pro.5560041117.

Abstract

We introduce here i, i + 3 and i, i + 4 side chain interactions into the modified Lifson-Roig helix-coil theory of Doig et al. (1994, Biochemistry 33:3396-3403). The helix/coil equilibrium is a function of initiation, propagation, capping, and side chain interaction parameters. If each of these parameters is known, the helix content of any isolated peptide can be predicted. The model considers every possible conformation of a peptide, is not limited to peptides with only a single helical segment, and has physically meaningful parameters. We apply the theory to measure the i, i + 4 interaction energies between Phe and Met side chains. Peptides with these residues spaced i, i + 4 are significantly more helical than controls where they are spaced i, i + 5. Application of the model yields delta G for the Phe-Met orientation to be -0.75 kcal.mol-1, whereas that for the Met-Phe orientation is -0.54 kcal.mol-1. These orientational preferences can be explained, in part, by rotamer preferences for the interacting side chains. We place Phe-Met i, i + 4 at the N-terminus, the C-terminus, and in the center of the host peptide. The model quantitatively predicts the observed helix contents using a single parameter for the side chain-side chain interaction energy. This result indicates that the model works well even when the interaction is at different locations in the helix.

摘要

我们在此将i,i + 3和i,i + 4侧链相互作用引入Doig等人(1994年,《生物化学》33:3396 - 3403)改进的Lifson - Roig螺旋 - 卷曲理论中。螺旋/卷曲平衡是起始、延伸、封端和侧链相互作用参数的函数。如果这些参数中的每一个都是已知的,那么任何分离肽段的螺旋含量都可以预测。该模型考虑了肽段的每一种可能构象,不限于仅具有单个螺旋片段的肽段,并且具有物理意义明确的参数。我们应用该理论来测量苯丙氨酸(Phe)和甲硫氨酸(Met)侧链之间的i,i + 4相互作用能。这些残基间隔为i,i + 4的肽段比残基间隔为i,i + 5的对照肽段具有显著更高的螺旋度。该模型的应用得出,Phe - Met取向的ΔG为 - 0.75 kcal·mol⁻¹,而Met - Phe取向的ΔG为 - 0.54 kcal·mol⁻¹。这些取向偏好部分可以通过相互作用侧链的旋转异构体偏好来解释。我们将Phe - Met i,i + 4置于宿主肽的N端、C端以及中间位置。该模型使用侧链 - 侧链相互作用能的单个参数定量预测了观察到的螺旋含量。这一结果表明,即使相互作用位于螺旋的不同位置,该模型也能很好地发挥作用。

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