Hunsicker L M, DeRose V J
Department of Chemistry, Texas A&M University, College Station 77842-3012, USA.
J Inorg Biochem. 2000 Jul 1;80(3-4):271-81. doi: 10.1016/s0162-0134(00)00079-9.
The roles of metals in the phosphodiester bond cleavage reaction performed by the hammerhead ribozyme are under investigation. In this study, the apparent affinities and the abilities of several different metals to support ribozyme activity are reported. The relative affinities of divalent cations for the hammerhead ribozyme are determined by measuring their ability to release bound Mn2+. The EPR-detected Mn2+ competition studies give an order of apparent affinity of Mn2+ approximately Co2+ approximately Zn2+ > Cd2+ >> Mg2. This ordering generally follows the trend of maximum rates of cleavage determined at pH 7.0, 0.1 M NaCl, and saturating metal concentrations, of Mn2+ > Co2+ > Cd2+ > Mg2+. The maximum rate is observed for Mn2+ under these conditions and may be related to the high affinity, low pKa and low deltaHhyd of this ion. Substitution of phosphorothioates 5' to each of the nine adenosines in the enzyme strand yields a change in the Mn2+ binding properties of the hammerhead complex. In the phosphorothioate-substituted hammerhead complex, eight to nine Mn2+ bind in two types of classes: 'type 1' (n = 1+/-0.3, Kd = 1.1+/-1 microM) and weaker 'type 2' (n = 7.7+/-0.3, Kd = 125+/-27 microM). The multiple phosphorothioate substitutions result in the loss of two to three of the higher affinity sites observed in the unmodified ribozyme. Metal competition studies with the phosphorothioate-substituted ribozyme indicate that the relative affinities of the metals are Cd2+ > Zn2+ > Co2+, Mg2+ with the number of Mn2+ displaced and apparent affinity of the thiophilic Cd2+ most affected by the phosphorothioate substitutions.
金属在锤头状核酶催化的磷酸二酯键切割反应中的作用正在研究中。在本研究中,报道了几种不同金属支持核酶活性的表观亲和力和能力。通过测量二价阳离子释放结合的Mn2+的能力,确定了它们对锤头状核酶的相对亲和力。电子顺磁共振检测的Mn2+竞争研究给出了表观亲和力的顺序:Mn2+≈Co2+≈Zn2+>Cd2+>>Mg2+。这种排序通常遵循在pH 7.0、0.1 M NaCl和饱和金属浓度下测定的切割最大速率的趋势:Mn2+>Co2+>Cd2+>Mg2+。在这些条件下观察到Mn2+的最大速率,这可能与该离子的高亲和力、低pKa和低水合焓有关。在酶链中九个腺苷的每一个的5'位用硫代磷酸酯取代,导致锤头状复合物的Mn2+结合特性发生变化。在硫代磷酸酯取代的锤头状复合物中,八到九个Mn2+以两种类型结合:“1型”(n = 1±0.3,Kd = 1.1±1 μM)和较弱的“2型”(n = 7.7±0.3,Kd = 125±27 μM)。多个硫代磷酸酯取代导致在未修饰的核酶中观察到的两到三个高亲和力位点的丧失。用硫代磷酸酯取代的核酶进行的金属竞争研究表明,金属的相对亲和力为Cd2+>Zn2+>Co2+,Mg2+,其中被取代的Mn2+数量和亲硫性Cd2+的表观亲和力受硫代磷酸酯取代的影响最大。