Crystallographic Study of Mechanism of Ribonuclease Ti-Catalysed Specific RNA Hydrolysis
- 1 October 1983
- journal article
- research article
- Published by Taylor & Francis in Journal of Biomolecular Structure and Dynamics
- Vol. 1 (2) , 523-538
- https://doi.org/10.1080/07391102.1983.10507459
Abstract
Ribonuclease T1 (RNase T1) cleaves the phosphodiester bond of RNA specifically at the 2′-end of guanosine. 2′-guanosinemonophosphate (2′-GMP) acts as inhibitor for this reaction and was cocrystallized with RNase T1. X-Ray analysis provided insight in the geometry of the active site and in the parts of the enzyme involved in the recognition of guanosine. RNase T1 is globular in shape and consists of a 4.5 turns α-helix lying “below” a four-stranded antiparallel β-sheet containing recognition center as well as active site. The latter is indicated by the position of phosphate and sugar residues of 2′-GMP and shows that Glu58, His92 and Arg77 are active in phosphodiester hydrolysis. Guanine is recognized by a stretch of protein from Tyr42 to Tyr45. Residues involved in recognition are peptide NH and C=O, guanine O6 and N1H which form hydrogen bonds and a stacking interaction of Tyr45 on guanine. Although, on a theoretical basis, many specific amino acid-guanine interactions are possible, none is employed in the RNase T1.guanine recognition.This publication has 36 references indexed in Scilit:
- Crystal structure of a microbial ribonuclease, RNase StNature, 1982
- Crystallographic refinement and atomic models of two different forms of citrate synthase at 2·7 and 1·7 Å resolutionJournal of Molecular Biology, 1982
- Molecular structure of a new family of ribonucleasesNature, 1982
- Structure of a B-DNA dodecamerJournal of Molecular Biology, 1981
- Homology between prokaryotic and eukaryotic ribonucleasesJournal of Molecular Evolution, 1980
- Crystallization of ribonuclease T1Journal of Molecular Biology, 1980
- Subsite interactions and ribonuclease T1 catalysis: kinetic studies with ApGpC and ApGpUBiochemistry, 1979
- Proton and phosphorus nuclear magnetic resonance studies of ribonuclease T1Biochemistry, 1979
- Proton magnetic resonance studies of ribonuclease T1 Assignment of histidine‐27 C2‐H and C5‐H proton resonances by a photooxidation reactionFEBS Letters, 1978
- The structure of cytidilyl(2′,5′)adenosine when bound to pancreatic ribonuclease SJournal of Molecular Biology, 1977