Faculty of Frontiers of Innovative Research in Science and Technology, Konan University, 7-1-20, Minatojima-minamimachi, Chuo-ku, Kobe, 650-0047, Japan.
J Am Chem Soc. 2009 Nov 25;131(46):16881-8. doi: 10.1021/ja9066628.
Short RNA sequences exhibiting the activity of a target RNA cleavage are promising for cellular gene regulation and biosensor research, but the reaction media different from an aqueous solution may cause unanticipated molecular interactions and properties. In this study, we investigated the molecular crowding effects arising from steric crowding and altered solvent properties on the hammerhead ribozyme activity using water-soluble neutral cosolutes. Poly(ethylene glycol) (PEG) and other cosolutes at 20 wt % increased the RNA hydrolysis rate by a factor of 2.0-6.6 at 10 mM MgCl(2) and much more at lower MgCl(2) concentrations. Remarkably, although the cosolutes decreased the stability of the ribozyme stem helices, the thermal inactivation temperature of the ribozyme was significantly raised, resulting in a higher reaction rate, up to 270 times at 50 degrees C. More significantly, PEG decreased the metal ion concentration to perform the reaction even with a limiting Mg(2+) or Na(+) concentration, facilitated the catalytic turnover, and activated a catalytically less active ribozyme sequence. These observations agreed that the cosolutes acted as an osmolyte stabilizing the water-release reaction of the RNA tertiary folding but destabilizing the water-uptake reaction of Watson-Crick base pairing. The opposite cosolute effect on the stabilities of RNA secondary and tertiary structures, which is fundamentally different from a protein folding, suggests how RNA stabilizes a tertiary structure and enhances the catalytic activity in molecular crowding media.
短 RNA 序列表现出靶 RNA 切割活性,在细胞基因调控和生物传感器研究中很有前景,但与水溶液不同的反应介质可能会引起意想不到的分子相互作用和性质。在这项研究中,我们使用水溶性中性共溶剂研究了空间拥挤和改变溶剂性质对锤头核酶活性的分子拥挤效应。聚乙二醇(PEG)和其他共溶剂在 20wt%时,在 10mM MgCl2 下将 RNA 水解速率提高了 2.0-6.6 倍,在较低的 MgCl2 浓度下提高得更多。值得注意的是,尽管共溶剂降低了核酶茎环螺旋的稳定性,但核酶的热失活温度显著升高,导致反应速率提高,在 50°C 时高达 270 倍。更重要的是,PEG 降低了金属离子浓度,即使在限制 Mg2+或 Na+浓度下也能进行反应,促进了催化周转,并激活了催化活性较低的核酶序列。这些观察结果表明,共溶剂作为一种渗透剂稳定了 RNA 三级折叠的水释放反应,但破坏了 Watson-Crick 碱基配对的水摄取反应。共溶剂对 RNA 二级和三级结构稳定性的相反影响与蛋白质折叠根本不同,这表明了 RNA 如何稳定三级结构并在分子拥挤介质中增强催化活性。