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Published May 19, 2008 | Accepted Version + Supplemental Material
Journal Article Open

An Uncharged Amine in the Transition State of the Ribosomal Peptidyl Transfer Reaction

Abstract

The ribosome has an active site comprised of RNA that catalyzes peptide bond formation. To understand how RNA promotes this reaction requires a detailed understanding of the chemical transition state. Here, we report the Brønsted coefficient of the α-amino nucleophile with a series of puromycin derivatives. Both 50S subunit- and 70S ribosome-catalyzed reactions displayed linear free-energy relationships with slopes close to zero under conditions where chemistry is rate limiting. These results indicate that, at the transition state, the nucleophile is neutral in the ribosome-catalyzed reaction, in contrast to the substantial positive charge reported for typical uncatalyzed aminolysis reactions. This suggests that the ribosomal transition state involves deprotonation to a degree commensurate with nitrogen-carbon bond formation. Such a transition state is significantly different from that of uncatalyzed aminolysis reactions in solution.

Additional Information

© 2008 Elsevier Ltd. Received: February 1, 2008. Revised: April 11, 2008. Accepted: April 14, 2008. Published: May 16, 2008. We would like to thank W. Wintermeyer, M. Beringer, N. Carrasco, I. Suydam, and D. Hiller for helpful kinetics discussions, J. Cochrane for comments on the manuscript, and C. Schillings, A. Böhm, S. Möbitz, and P. Striebeck for expert technical assistance. Funding for this work was provided by NIGMS training grant T32GM007223, a Beckman Scholar Award to R.V., a Ryobi Teien Memory Foundation grant to K.O., NSF Travel Grant OISE-0339595, NIGMS grant 54839, and grants of the Deutsche Forschungsgemeinschaft to M.V.R.

Attached Files

Accepted Version - nihms-191239.pdf

Supplemental Material - 1-s2.0-S1074552108001555-mmc1.pdf

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