Long D M, LaRiviere F J, Uhlenbeck O C
Department of Chemistry and Biochemistry, University of Colorado, Boulder 80309-0215, USA.
Biochemistry. 1995 Nov 7;34(44):14435-40. doi: 10.1021/bi00044a021.
Thermodynamics of RNA cleavage/ligation were measured for a self-cleaving hammerhead ribozyme in the presence of Ca2+, Co2+, Mg2+, and Mn2+. The internal equilibrium, the ratio of cleaved to ligated RNA, decreases with increasing concentrations of each of the four divalent metal ions in a hyperbolic dependence that shows saturation. The metal ion dependence is not due to changes in ionic strength, and the value of the equilibrium constant at saturation is different for each metal ion. The concentration required to achieve half-saturation of the equilibrium is also different for each metal ion, and the order of apparent metal ion dissociation constants correlates with those measured for dissociation of the same metal ions complexed with tRNA and nucleotides. We interpret the divalent metal ion dependence of the equilibrium in terms of a thermodynamic model invoking noncooperative metal ion dissociation from the cleaved RNA. Thus, at 10 mM Mg2+, a commonly employed condition for hammerhead kinetic studies, metal ion dissociation contributes substantially to the free energy of the equilibrium and drives the hammerhead reaction toward cleaved RNA. Temperature dependencies of the equilibrium reveal that while the entropy and enthalpy changes of the equilibrium depend on the identity of the divalent metal ion, in each case a large entropic driving force overcomes an unfavorable change in enthalpy. This agrees with thermodynamics previously measured for an intermolecular hammerhead in the presence of Mg2+ [Hertel, K. J., & Uhlenbeck, O. C. (1995) Biochemistry 34, 1744-1749].
在存在Ca2+、Co2+、Mg2+和Mn2+的情况下,对一种自我切割的锤头状核酶的RNA切割/连接热力学进行了测量。内部平衡,即切割RNA与连接RNA的比例,随着四种二价金属离子中每一种浓度的增加而呈双曲线依赖性降低,显示出饱和现象。金属离子依赖性并非由于离子强度的变化,并且每种金属离子在饱和时的平衡常数的值不同。实现平衡半饱和所需的浓度对于每种金属离子也不同,并且表观金属离子解离常数的顺序与那些与tRNA和核苷酸络合的相同金属离子的解离测量值相关。我们根据一个热力学模型来解释平衡对二价金属离子的依赖性,该模型假定金属离子从切割的RNA上非协同解离。因此,在10 mM Mg2+(锤头状动力学研究常用的条件)下,金属离子解离对平衡的自由能有很大贡献,并驱使锤头状反应朝着切割的RNA方向进行。平衡的温度依赖性表明,虽然平衡的熵变和焓变取决于二价金属离子的种类,但在每种情况下,一个大的熵驱动力克服了不利的焓变。这与之前在Mg2+存在下对分子间锤头状核酶测量的热力学结果一致[赫特尔,K. J.,& 乌伦贝克,O. C.(1995年)《生物化学》34卷,1744 - 1749页]。