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首页> 外文期刊>Angewandte Chemie >Radiation Damage and Racemic Protein Crystallography Reveal the Unique Structure of the GASA/Snakin Protein Superfamily
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Radiation Damage and Racemic Protein Crystallography Reveal the Unique Structure of the GASA/Snakin Protein Superfamily

机译:辐射损伤和外消旋蛋白质晶体学揭示了GASA / Snakin蛋白质超家族的独特结构

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摘要

Proteins from the GASA/snakin superfamily are common in plant proteomes and have diverse functions, including hormonal crosstalk, development, and defense. One 63-residue member of this family, snakin-1, an antimicrobial protein from potatoes, has previously been chemically synthesized in a fully active form. Herein the 1.5 angstrom structure of snakin-1, determined by a novel combination of racemic protein crystallization and radiation-damage-induced phasing (RIP), is reported. Racemic crystals of snakin-1 and quasi-racemic crystals incorporating an unnatural 4-iodophenylalanine residue were prepared from chemically synthesized d-and l-proteins. Breakage of the C-I bonds in the quasi-racemic crystals facilitated structure determination by RIP. The crystal structure reveals a unique protein fold with six disulfide crosslinks, presenting a distinct electrostatic surface that may target the protein to microbial cell surfaces.
机译:GASA / snakin超家族的蛋白质在植物蛋白质组中很常见,并具有多种功能,包括激素串扰,发育和防御。该家族的一个有63个残基的成员snakin-1是一种来自马铃薯的抗菌蛋白,以前已经以化学合成的形式形成了完全活性的形式。本文报道了snakin-1的1.5埃结构,该结构由外消旋蛋白质结晶和辐射损伤诱导的定相(RIP)的新颖组合确定。 snakin-1的外消旋晶体和掺入非天然4-碘苯丙氨酸残基的准外消旋晶体是由化学合成的d和l蛋白制备的。准外消旋晶体中C-1键的断裂促进了通过RIP确定结构。晶体结构揭示了具有六个二硫键的独特蛋白质折叠,呈现出可将蛋白质靶向微生物细胞表面的独特静电表面。

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