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The crystal structure of the designed trimeric coiled coil coil-VaLd: implications for engineering crystals and supramolecular assemblies.

机译:设计的三聚体螺旋线圈-VaLd的晶体结构:对工程晶体和超分子组装的影响。

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摘要

The three-dimensional structure of the 29-residue designed coiled coil having the amino acid sequence acetyl-E VEALEKK VAALESK VQALEKK VEALEHG-amide has been determined and refined to a crystallographic R-factor of 21.4% for all data from 10-A to 2.1-A resolution. This molecule is called coil-VaLd because it contains valine in the a heptad positions and leucine in the d heptad positions. In the trigonal crystal, three molecules, related by a crystallographic threefold axis, form a parallel three-helix bundle. The bundles are stacked head-to-tail to form a continuous coiled coil along the c-direction of the crystal. The contacts among the three helices within the coiled coil are mainly hydrophobic: four layers of valine residues alternate with four layers of leucine residues to form the core of the bundle. In contrast, mostly hydrophilic contacts mediate the interaction between trimers: here a total of two direct protein--protein hydrogen bonds are found. Based on the structure, we propose a scheme for designing crystals of peptides containing continuous two-, three-, and four-stranded coiled coils.
机译:对于从10-A到2.1的所有数据,已经确定了29个残基设计的具有氨基酸序列乙酰基-E VEALEKK VAALESK VQALEKK VEALEHG-酰胺的卷曲螺旋的三维结构,并将其精炼为21.4%的结晶R因子。 -决议。该分子被称为线圈-VaLd,因为它在七肽位置含有缬氨酸,在七肽位置含有亮氨酸。在三角晶体中,由晶体学三重轴关联的三个分子形成平行的三螺旋束。束头到尾堆叠,以沿着晶体的c方向形成连续的线圈。盘绕线圈中三个螺旋之间的接触主要是疏水的:四层缬氨酸残基与四层亮氨酸残基交替形成束的核心。相反,大多数亲水性接触介导三聚体之间的相互作用:在此总共发现了两个直接的蛋白质-蛋白质氢键。基于该结构,我们提出了一种用于设计包含连续的二,三和四链卷曲螺旋的肽晶体的方案。

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