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Measurements of weak interactions between truncated substrates and a hammerhead ribozyme by competitive kinetic analyses: implications for the design of new and efficient ribozymes with high sequence specificity

机译:通过竞争动力学分析测量截短的底物和锤头状核酶之间的弱相互作用:对设计具有高序列特异性的新型高效核酶的意义

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摘要

Exploitation of ribozymes in a practical setting requires high catalytic activity and strong specificity. The hammerhead ribozyme R32 has considerable potential in this regard since it has very high catalytic activity. In this study, we have examined how R32 recognizes and cleaves a specific substrate, focusing on the mechanism behind the specificity. Comparing rates of cleavage of a substrate in a mixture that included the correct substrate and various substrates with point mutations, we found that R32 cleaved the correct substrate specifically and at a high rate. To clarify the source of this strong specificity, we quantified the weak interactions between R32 and various truncated substrates, using truncated substrates as competitive inhibitors since they were not readily cleaved during kinetic measurements of cleavage of the correct substrate, S11. We found that the strong specificity of the cleavage reaction was due to a closed form of R32 with a hairpin structure. The self-complementary structure within R32 enabled the ribozyme to discriminate between the correct substrate and a mismatched substrate. Since this hairpin motif did not increase the Km (it did not inhibit the binding interaction) or decrease the kcat (it did not decrease the cleavage rate), this kind of hairpin structure might be useful for the design of new ribozymes with strong specificity and high activity.
机译:在实际环境中开发核酶需要高催化活性和强特异性。锤头状核酶R32在这方面具有相当大的潜力,因为它具有很高的催化活性。在这项研究中,我们研究了R32如何识别和切割特定底物,重点研究了特异性背后的机制。比较包括正确底物和具有点突变的各种底物的混合物中底物的切割速率,我们发现R32特异性地并以高速率切割正确的底物。为了阐明这种强特异性的来源,我们使用截短的底物作为竞争性抑制剂,定量了R32与各种截短的底物之间的弱相互作用,因为在动力学测量正确底物S11的裂解过程中,它们不容易被裂解。我们发现裂解反应的强特异性是由于具有发夹结构的R32的封闭形式。 R32中的自我互补结构使核酶能够区分正确的底物和错配的底物。由于这种发夹基序不会增加Km(不会抑制结合相互作用)或降低kcat(不会降低裂解速率),因此这种发夹结构可能对设计具有较强特异性和特异性的新型核酶很有用。高活动。

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