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Interstrand Dipole-Dipole Interactions Can Stabilize the Collagen Triple Helix

机译:链间偶极-偶极相互作用可以稳定胶原三螺旋

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摘要

The amino acid sequence of collagen is composed of GlyXaaYaa repeats. A prevailing paradigm maintains that stable collagen triple helices form when (2S)-proline (Pro) or Pro derivatives that prefer the Cγ-endo ring pucker are in the Xaa position and Pro derivatives that prefer the Cγ-exo ring pucker are in the Yaa position. Anomalously, an amino acid sequence in an invertebrate collagen has (2S,4R)-4-hydroxyproline (Hyp), a Cγ-exo-puckered Pro derivative, in the Xaa position. In certain contexts, triple helices with Hyp in the Xaa position are now known to be hyperstable. Most intriguingly, the sequence (GlyHypHyp)n forms a more stable triple helix than does the sequence (GlyProHyp)n. Competing theories exist for the physicochemical basis of the hyperstability of (GlyHypHyp)n triple helices. By synthesizing and analyzing triple helices with different Cγ-exo-puckered proline derivatives in the Xaa and Yaa positions, we conclude that interstrand dipole-dipole interactions are the primary determinant of their additional stability. These findings provide a new framework for understanding collagen stability.
机译:胶原蛋白的氨基酸序列由GlyXaaYaa重复序列组成。一种流行的范例认为,当(2S)-脯氨酸(Pro)或Pro衍生物或C衍生物喜欢Caa时,Pro衍生物或C衍生物倾向于Xaa时,会形成稳定的胶原三螺旋。 γ -exo圆环在Yaa位置。异常地,无脊椎动物胶原蛋白的氨基酸序列在Xaa位置具有(2S,4R)-4-羟基脯氨酸(Hyp),一种C γ -exo-puckeded Pro衍生物。在某些情况下,现在已知在Xaa位置具有Hyp的三重螺旋是超稳定的。最有趣的是,序列(GlyHypHyp)n形成比序列(GlyProHyp)n更稳定的三重螺旋。对于(GlyHypHyp)n三重螺旋的超稳定性的物理化学基础,存在一些竞争性理论。通过合成和分析在Xaa和Yaa位置具有不同C γ -exo-pucked脯氨酸衍生物的三重螺旋,我们得出结论,链间偶极-偶极相互作用是其额外稳定性的主要决定因素。这些发现为理解胶原蛋白的稳定性提供了新的框架。

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