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Crystal structure and fluorescence properties of the iSpinach aptamer in complex with DFHBI

机译:与DFHBI复合物中ispinach适体的晶体结构和荧光特性

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摘要

Fluorogenic RNA aptamers are short nucleic acids able to specifically interact with small molecules and strongly enhance their fluorescence upon complex formation. Among the different systems recently introduced, Spinach, an aptamer forming a fluorescent complex with the 3,5-difluoro-4-hydroxybenzylidene imidazolinone (DFHBI), is one of the most promising. Using random mutagenesis and ultrahigh-throughput screening, we recently developed iSpinach, an improved version of the aptamer, endowed with an increased folding efficiency and thermal stability. iSpinach is a shorter version of Spinach, comprising five mutations for which the exact role has not yet been deciphered. In this work, we cocrystallized a reengineered version of iSpinach in complex with the DFHBI and solved the X-ray structure of the complex at 2 angstrom resolution. Only a few mutations were required to optimize iSpinach production and crystallization, underlying the good folding capacity of the molecule. The measured fluorescence half-lives in the crystal were 60% higher than in solution. Comparisons with structures previously reported for Spinach sheds some light on the possible function of the different beneficial mutations carried by iSpinach.
机译:荧光RNA适体是能够与小分子特异性相互作用的短核酸,并在复杂的形成时强烈地增强它们的荧光。在最近引入的不同系统中,用3,5-二氟-4-羟基苄基咪唑啉酮(DFHBI)形成荧光复合物的适体,是最有前途的。使用随机诱变和超高通量筛选,我们最近开发了Ispinach,一种改进的适体版,赋予了增加的折叠效率和热稳定性。 Ispinach是菠菜的较短版本,包括五个突变,其中确切的作用尚未破译。在这项工作中,我们通过DFHBI将ReengineERed的Ispinach形式与DFHBI进行了组合,并以2埃分辨率解决了复合物的X射线结构。仅需要几种突变来优化Ispinach生产和结晶,其底层分子的良好折叠能力。晶体中的测量荧光半衰期比溶液高60%。具有先前针对菠菜的结构的比较揭示了Ispinach携带的不同有益突变的可能函数。

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