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四环受体介导的RNA螺旋堆积的热力学与折叠途径

Thermodynamics and folding pathway of tetraloop receptor-mediated RNA helical packing.

作者信息

Vander Meulen Kirk A, Davis Jared H, Foster Trenton R, Record M Thomas, Butcher Samuel E

机构信息

Department of Biochemistry, University of Wisconsin-Madison, 433 Babcock Dr., Madison, WI 53706, USA.

出版信息

J Mol Biol. 2008 Dec 19;384(3):702-17. doi: 10.1016/j.jmb.2008.09.049. Epub 2008 Sep 27.

Abstract

Little is known about the thermodynamic forces that drive the folding pathways of higher-order RNA structure. In this study, we employ calorimetric [isothermal titration calorimetry (ITC) and differential scanning calorimetry (DSC)] and spectroscopic (NMR and UV) methods to characterize the thermodynamics of the GAAA tetraloop-receptor interaction, utilizing a previously described bivalent construct. ITC studies indicate that the bivalent interaction is enthalpy driven and highly stable, with a binding constant (K(obs)) of 5.5x10(6) M(-1) and enthalpy (DeltaH(obs)(o)) of -33.8 kcal/mol at 45 degrees C in 20 mM KCl and 2 mM MgCl(2). Thus, we derive the DeltaH(obs)(o) for a single tetraloop-receptor interaction to be -16.9 kcal/mol at these conditions. UV absorbance data indicate that an increase in base stacking quality contributes to the enthalpy of complex formation. These highly favorable thermodynamics are consistent with the known critical role for the tetraloop-receptor motif in the folding of large RNAs. Additionally, a significant heat capacity change (DeltaC(p,obs)(o)) of -0.24 kcal mol(-1) K(-1) was determined by ITC. DSC and UV-monitored thermal denaturation experiments indicate that the bivalent tetraloop-receptor construct follows a minimally five-state unfolding pathway and suggest the observed DeltaC(p,obs)(o) for the interaction results from a temperature-dependent unbound receptor RNA structure.

摘要

关于驱动高阶RNA结构折叠途径的热力学力,人们了解甚少。在本研究中,我们采用量热法[等温滴定量热法(ITC)和差示扫描量热法(DSC)]以及光谱法(核磁共振和紫外)来表征GAAA四环-受体相互作用的热力学,使用的是先前描述的二价构建体。ITC研究表明,二价相互作用是由焓驱动的且高度稳定,在45℃、20 mM KCl和2 mM MgCl₂条件下,结合常数(K(obs))为5.5×10⁶ M⁻¹,焓(ΔH(obs)(o))为-33.8 kcal/mol。因此,在这些条件下,我们得出单个四环-受体相互作用的ΔH(obs)(o)为-16.9 kcal/mol。紫外吸收数据表明,碱基堆积质量的增加有助于复合物形成的焓变。这些非常有利的热力学性质与四环-受体基序在大RNA折叠中已知的关键作用一致。此外,通过ITC测定出显著的热容变化(ΔC(p,obs)(o))为-0.24 kcal mol⁻¹ K⁻¹。DSC和紫外监测的热变性实验表明,二价四环-受体构建体遵循至少五态的解折叠途径,并表明观察到的该相互作用的ΔC(p,obs)(o)是由温度依赖性的未结合受体RNA结构导致的。

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本文引用的文献

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Riboswitches: emerging themes in RNA structure and function.核糖开关:RNA结构与功能中的新主题
Annu Rev Biophys. 2008;37:117-33. doi: 10.1146/annurev.biophys.37.032807.130000.
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Direct measurement of tertiary contact cooperativity in RNA folding.RNA折叠中三级接触协同性的直接测量。
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