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β-螺旋抗冻蛋白的晶体结构指向一种通用的冰结合模型。

Crystal structure of beta-helical antifreeze protein points to a general ice binding model.

作者信息

Leinala Eeva K, Davies Peter L, Jia Zongchao

机构信息

Department of Biochemistry, Queen's University, Kingston, Ontario K7L 3N6, Canada.

出版信息

Structure. 2002 May;10(5):619-27. doi: 10.1016/s0969-2126(02)00745-1.

Abstract

Reported here is the 2.3 A resolution crystal structure of spruce budworm (Choristoneura fumiferana) antifreeze protein (CfAFP), solved by single anomalous scattering. The structure reveals an extremely regular left-handed beta-helical platform consisting of 15-amino acid loops with a repetitive Thr-X-Thr motif displayed on one of the helix's three faces. This motif results in a two-dimensional array of threonine residues in an identical orientation to those in the nonhomologous, right-handed beta-helical beetle AFP from Tenebrio molitor (TmAFP). The CfAFP structure led us to reevaluate our ice binding model, and the analysis of three possible modes of docking gives rise to a binding mechanism based on surface complementarity. This general mechanism is applicable to both fish and insect AFPs.

摘要

本文报道了通过单异常散射解析得到的云杉芽虫(Choristoneura fumiferana)抗冻蛋白(CfAFP)2.3埃分辨率的晶体结构。该结构揭示了一个极其规则的左手β-螺旋平台,由15个氨基酸环组成,在螺旋的三个面之一上展示出重复的苏氨酸-X-苏氨酸基序。该基序导致苏氨酸残基形成二维阵列,其方向与来自黄粉虫(Tenebrio molitor,TmAFP)的非同源右手β-螺旋甲虫抗冻蛋白中的苏氨酸残基方向相同。CfAFP结构使我们重新评估了我们的冰结合模型,对三种可能的对接模式的分析产生了一种基于表面互补性的结合机制。这种通用机制适用于鱼类和昆虫的抗冻蛋白。

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