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Crystal structure of secretory abundant heat soluble protein 4 from one of the toughest water bears micro‐animals Ramazzottius Varieornatus

机译:来自最坚韧的水熊微型动物之一的分泌丰富的热可溶蛋白4的晶体结构

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摘要

Though anhydrobiotic tardigrades (micro‐animals also known as water bears) possess many genes of secretory abundant heat soluble (SAHS) proteins unique to Tardigrada, their functions are unknown. A previous crystallographic study revealed that a SAHS protein (RvSAHS1) from one of the toughest tardigrades, Ramazzottius varieornatus, has a β‐barrel architecture similar to fatty acid binding proteins (FABPs) and two putative ligand binding sites (LBS1 and LBS2) where fatty acids can bind. However, some SAHS proteins such as RvSAHS4 have different sets of amino acid residues at LBS1 and LBS2, implying that they prefer other ligands and have different functions. Here RvSAHS4 was crystallized and analyzed under a condition similar to that for RvSAHS1. There was no electron density corresponding to a fatty acid at LBS1 of RvSAHS4, where a putative fatty acid was observed in RvSAHS1. Instead, LBS2 of RvSAHS4, which was composed of uncharged residues, captured a putative polyethylene glycol molecule. These results suggest that RvSAHS4 mainly uses LBS2 for the binding of uncharged molecules.
机译:尽管无水生的节肢动物(微型动物也称为水熊)拥有许多独特的分泌性热可溶(SAHS)蛋白质基因,但其功能尚不清楚。先前的晶体学研究表明,来自最艰难的等级之一的变种Ramazzottius varieornatus的SAHS蛋白(RvSAHS1)具有类似于脂肪酸结合蛋白(FABPs)的β桶结构,并且具有两个假定的配体结合位点(LBS1和LBS2)酸可以结合。但是,某些SAHS蛋白(例如RvSAHS4)在LBS1和LBS2上具有不同的氨基酸残基集,这意味着它们更喜欢其他配体并具有不同的功能。在此,RvSAHS4在类似于RvSAHS1的条件下结晶并分析。在RvSAHS4的LBS1处没有对应于脂肪酸的电子密度,在RvSAHS1中观察到了假定的脂肪酸。相反,由不带电荷的残基组成的RvSAHS4的LBS2捕获了假定的聚乙二醇分子。这些结果表明,RvSAHS4主要使用LBS2结合不带电荷的分子。

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