A KINETIC AND THERMODYNAMIC ANALYSIS OF CLEAVAGE SITE MUTATIONS IN THE HAMMERHEAD RIBOZYME

Citation
N. Baidya et Oc. Uhlenbeck, A KINETIC AND THERMODYNAMIC ANALYSIS OF CLEAVAGE SITE MUTATIONS IN THE HAMMERHEAD RIBOZYME, Biochemistry, 36(5), 1997, pp. 1108-1114
Citations number
43
Categorie Soggetti
Biology
Journal title
ISSN journal
00062960
Volume
36
Issue
5
Year of publication
1997
Pages
1108 - 1114
Database
ISI
SICI code
0006-2960(1997)36:5<1108:AKATAO>2.0.ZU;2-C
Abstract
Two kinetically well-characterized hammerheads with different arm leng ths were used to reinvestigate the cleavage properties of substrates w ith the four natural nucleotides at position 17, the residue 5' to the cleavage site. From experiments measuring substrate binding affinity, cleavage rates, and the internal equilibrium, free energy profiles of the reaction of all four substrates were constructed. Each nucleotide at the cleavage site affects the energy profile quite differently. Wh ereas C and U have the same ground stale energy, U destabilizes the tr ansition state by 1 kcal/mol. A destabilizes both the ground and trans ition stales by 1 kcal/mol, and G stabilizes the ground state by 2 kca l/mol and destabilizes the transition state by 4 kcal/mol. These data, along with experiments with the C3U mutant hammerhead, indicate that although an N3-N17 pair can form, the contribution to the binding ener gy for the wild-type (C3-C17) hammerhead is quite small. Thus, the ene rgetic cost of disrupting the C3-C17 pair is not great, consistent wit h several proposals that this occurs during cleavage. The data also su ggest that the structure in the transition state involves different st abilizing interactions with nucleotide 17 than those that are observed in the ground state. Finally, the A17 hammerhead may cleave by a slig htly different reaction pathway.