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金鱼RICH蛋白催化结构域的溶液结构

Solution structure of the catalytic domain of RICH protein from goldfish.

作者信息

Kozlov Guennadi, Denisov Alexey Y, Pomerantseva Ekaterina, Gravel Michel, Braun Peter E, Gehring Kalle

机构信息

Department of Biochemistry, McGill University, 3655 Promenade Sir William Osler, Montreal, Quebec, Canada.

出版信息

FEBS J. 2007 Mar;274(6):1600-9. doi: 10.1111/j.1742-4658.2007.05707.x.

Abstract

Regeneration-induced CNPase homolog (RICH) is an axonal growth-associated protein, which is induced in teleost fish upon optical nerve injury. RICH consists of a highly acidic N-terminal domain, a catalytic domain with 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNPase) activity and a C-terminal isoprenylation site. In vitro RICH and mammalian brain CNPase specifically catalyze the hydrolysis of 2',3'-cyclic nucleotides to produce 2'-nucleotides, but the physiologically relevant in vivo substrate remains unknown. Here, we report the NMR structure of the catalytic domain of goldfish RICH and describe its binding to CNPase inhibitors. The structure consists of a twisted nine-stranded antiparallel beta-sheet surrounded by alpha-helices on both sides. Despite significant local differences mostly arising from a seven-residue insert in the RICH sequence, the active site region is highly similar to that of human CNPase. Likewise, refinement of the catalytic domain of rat CNPase using residual dipolar couplings gave improved agreement with the published crystal structure. NMR titrations of RICH with inhibitors point to a similar catalytic mechanism for RICH and CNPase. The results suggest a functional importance for the evolutionarily conserved phosphodiesterase activity and hint of a link with pre-tRNA splicing.

摘要

再生诱导型CNPase同源物(RICH)是一种轴突生长相关蛋白,在硬骨鱼视神经损伤后被诱导产生。RICH由一个高度酸性的N端结构域、一个具有2',3'-环核苷酸3'-磷酸二酯酶(CNPase)活性的催化结构域和一个C端异戊二烯化位点组成。在体外,RICH和哺乳动物脑CNPase特异性催化2',3'-环核苷酸水解生成2'-核苷酸,但体内生理相关底物仍不清楚。在此,我们报道了金鱼RICH催化结构域的核磁共振结构,并描述了其与CNPase抑制剂的结合情况。该结构由一个扭曲的九股反平行β-折叠组成,两侧被α-螺旋包围。尽管主要由于RICH序列中的一个七残基插入导致显著的局部差异,但活性位点区域与人类CNPase的高度相似。同样,使用剩余偶极耦合对大鼠CNPase催化结构域进行优化,与已发表的晶体结构的一致性得到了改善。用抑制剂对RICH进行核磁共振滴定表明,RICH和CNPase具有相似的催化机制。结果表明,进化保守的磷酸二酯酶活性具有功能重要性,并暗示其与前体tRNA剪接存在联系。

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