Hendry P, McCall M J
CSIRO, Division of Biomolecular Engineering, North Ryde, NSW, Australia.
Nucleic Acids Res. 1995 Oct 11;23(19):3928-36. doi: 10.1093/nar/23.19.3928.
Hammerhead ribozymes targeted against two unrelated RNA substrates have been prepared. For each substrate, four ribozymes, differing in their hybridising arm length and composition (DNA or RNA), have been synthesised and kinetically characterised. The presence of DNA in the hybridising arms had little effect on the overall cleavage rate when the cleavage step was rate determining. Shortening each of the hybridising arms of ribozymes from 10 to 6 nucleotides generally resulted in modest changes in rate constants for cleavage of the same 13mer substrate. In one case the presence of long RNA hybridising arms significantly impeded the cleavage reaction. Cleavage rates displayed first order dependence on hydroxide ion concentration at low pHs. At higher pH, some ribozymes deviated from this first order dependence because of a change in the rate-determining step, possibly due to a requirement for a conformation change in the ribozyme-substrate complex prior to cleavage. Ribozyme cleavage was strongly dependent on temperature in the range 5-45 degrees C, with an activation energy for the reaction of approximately 60 kJ mol-1. The ribozymes displayed biphasic dependence on magnesium ion concentration; evidence of strong apparent binding (Kd approximately 10 mM) as well as a looser interaction was observed for all ribozymes.
已制备出针对两种不相关RNA底物的锤头状核酶。对于每种底物,已合成了四种核酶,它们的杂交臂长度和组成(DNA或RNA)不同,并进行了动力学表征。当切割步骤为速率决定步骤时,杂交臂中DNA的存在对整体切割速率影响不大。将核酶的每个杂交臂从10个核苷酸缩短到6个核苷酸,通常会导致切割相同13聚体底物的速率常数发生适度变化。在一种情况下,长RNA杂交臂的存在显著阻碍了切割反应。在低pH值下,切割速率对氢氧根离子浓度呈一级依赖性。在较高pH值下,一些核酶偏离了这种一级依赖性,这是由于速率决定步骤发生了变化,可能是因为在切割前核酶-底物复合物需要发生构象变化。核酶切割在5-45摄氏度范围内强烈依赖于温度,反应的活化能约为60 kJ mol-1。核酶对镁离子浓度呈双相依赖性;所有核酶都观察到了强表观结合(Kd约为10 mM)以及较松散相互作用的证据。