
pmid: 30639771
The formation of a kissing-loop through the introduction of complementary 7-membered loops is known to dramatically increase the activity of truncated R3C ligase ribozymes that otherwise display reduced activity. Restoration of activity is thought to result from kissing complex formation-induced rearrangement of two molecules with complementary loops. By combining two types of R3C ligase ribozyme mutants, and , the influence of loop composition on ligation activity was investigated. Substrate ligation occurred in , but not in , despite the absence of a substrate-binding site in . Loop-loop interactions of - and -variants with complementary 6-membered loops also resulted in proper kissing-complex formation-induced substrate ligation. However, heterogeneous combinations of 7- and 6-membered loops, and/or of 6- and 5-membered loops had distinct results that depended upon the sequence and bulged nucleotides of the loop regions. These differences suggest that both thermodynamic and kinetic controls act upon the kissing-loop interaction-mediated rearrangement of the shortened trans-R3C ribozymes.
Binding Sites, Base Sequence, Kinetics, Polynucleotide Ligases, Catalytic Domain, Mutation, Nucleic Acid Conformation, RNA, Thermodynamics, RNA, Catalytic, Base Pairing
Binding Sites, Base Sequence, Kinetics, Polynucleotide Ligases, Catalytic Domain, Mutation, Nucleic Acid Conformation, RNA, Thermodynamics, RNA, Catalytic, Base Pairing
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