Fukuda Yohta, Miura Yoshimasa, Mizohata Eiichi, Inoue Tsuyoshi
Department of Applied Chemistry, Graduate School of Engineering, Osaka University, Suita, Osaka, Japan.
FEBS Lett. 2017 Aug;591(16):2458-2469. doi: 10.1002/1873-3468.12752. Epub 2017 Aug 8.
Upon stopping metabolic processes, some tardigrades can undergo anhydrobiosis. Secretory abundant heat-soluble (SAHS) proteins have been reported as candidates for anhydrobiosis-related proteins in tardigrades, which seem to protect extracellular components and/or secretory organelles. We determined structures of a SAHS protein from Ramazzottius varieornatus (RvSAHS1), which is one of the toughest tardigrades. RvSAHS1 shows a β-barrel structure similar to fatty acid-binding proteins (FABPs), in which hydrophilic residues form peculiar hydrogen bond networks, which would provide RvSAHS1 with better tolerance against dehydration. We identified two putative ligand-binding sites: one that superimposes on those of some FABPs and the other, unique to and conserved in SAHS proteins. These results indicate that SAHS proteins constitute a new FABP family.
在停止代谢过程后,一些缓步动物可以进入隐生状态。分泌性丰富热溶性(SAHS)蛋白已被报道为缓步动物中与隐生相关蛋白的候选者,它们似乎能保护细胞外成分和/或分泌细胞器。我们确定了来自Ramazzottius varieornatus(RvSAHS1)的一种SAHS蛋白的结构,Ramazzottius varieornatus是最具耐受力的缓步动物之一。RvSAHS1呈现出一种类似于脂肪酸结合蛋白(FABP)的β桶结构,其中亲水性残基形成特殊的氢键网络,这将使RvSAHS1具有更好的耐脱水能力。我们确定了两个假定的配体结合位点:一个与某些FABP的配体结合位点重叠,另一个是SAHS蛋白特有的且保守的。这些结果表明SAHS蛋白构成了一个新的FABP家族。