Involvement of a cytosine side chain in proton transfer in the rate-determining step of ribozyme self-cleavage
- 13 February 2001
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 98 (4) , 1489-1494
- https://doi.org/10.1073/pnas.98.4.1489
Abstract
Ribozymes of hepatitis delta virus have been proposed to use an active-site cytosine as an acid-base catalyst in the self-cleavage reaction. In this study, we have examined the role of cytosine in more detail with the antigenomic ribozyme. Evidence that proton transfer in the rate-determining step involved cytosine 76 (C76) was obtained from examining cleavage activity of the wild-type and imidazole buffer-rescued C76-deleted (C76Δ) ribozymes in D2O and H2O. In both reactions, a similar kinetic isotope effect and shift in the apparent pKa indicate that the buffer is functionally substituting for the side chain in proton transfer. Proton inventory of the wild-type reaction supported a mechanism of a single proton transfer at the transition state. This proton transfer step was further characterized by exogenous base rescue of a C76Δ mutant with cytosine and imidazole analogues. For the imidazole analogues that rescued activity, the apparent pKa of the rescue reaction, measured under kcat/KM conditions, correlated with the pKa of the base. From these data a Brønsted coefficient (β) of 0.51 was determined for the base-rescued reaction of C76Δ. This value is consistent with that expected for proton transfer in the transition state. Together, these data provide strong support for a mechanism where an RNA side chain participates directly in general acid or general base catalysis of the wild-type ribozyme to facilitate RNA cleavage.Keywords
This publication has 37 references indexed in Scilit:
- A pH-sensitive RNA tertiary interaction affects self-cleavage activity of the HDV ribozymes in the absence of added divalent metal ionJournal of Molecular Biology, 2001
- A Single Adenosine with a Neutral p K a in the Ribosomal Peptidyl Transferase CenterScience, 2000
- The Structural Basis of Ribosome Activity in Peptide Bond SynthesisScience, 2000
- The Complete Atomic Structure of the Large Ribosomal Subunit at 2.4 Å ResolutionScience, 2000
- A toggle duplex in hepatitis delta virus self-cleaving RNA that stabilizes an inactive and a salt-dependent pro-active ribozyme conformationJournal of Molecular Biology, 1998
- MECHANISTIC ASPECTS OF ENZYMATIC CATALYSIS: Lessons from Comparison of RNA and Protein EnzymesAnnual Review of Biochemistry, 1997
- Efficiency of proton transfer catalysis. Intramolecular general acid catalysis of the hydrolysis of dialkyl acetals of benzaldehydeJournal of the Chemical Society, Perkin Transactions 2, 1997
- A three-dimensional model of hepatitis delta virus ribozyme based on biochemical and mutational analysesCurrent Biology, 1994
- Models for nuclease catalysis: mechanisms for general acid catalysis of the rapid intramolecular displacement of methoxide from a phosphate diesterJournal of the Chemical Society, Perkin Transactions 2, 1993
- Experimental charge measurement at leaving oxygen in the bovine ribonuclease. A catalyzed cyclization of uridine 3'-phosphate aryl estersBiochemistry, 1988