Active Site Constraints in the Hydrolysis Reaction Catalyzed by Bacterial RNase P: Analysis of Precursor TRNAs with a Single 3'-S-phosphorothiolate Internucleotide Linkage
Overview
Affiliations
Endonucleolytic processing of precursor tRNAs (ptRNAs) by RNase P yields 3'-OH and 5'-phosphate termini, and at least two metal ions are thought to be essential for catalysis. To determine if the hydrolysis reaction catalyzed by bacterial RNase P (RNAs) involves stabilization of the 3'-oxyanion leaving group by direct coordination to one of the catalytic metal ions, ptRNA substrates with single 3'- S -phosphorothiolate linkages at the RNase P cleavage site were synthesized. With a 3'- S -phosphorothiolate-modified ptRNA carrying a 7 nt 5'-flank, a complete shift of the cleavage site to the next unmodified phosphodiester in the 5'-direction was observed. Cleavage at the modified linkage was not restored in the presence of thiophilic metal ions, such as Mn(2+)or Cd(2+). To suppress aberrant cleavage, we also constructed a 3'- S -phosphorothiolate-modified ptRNA with a 1 nt 5'-flank. No detectable cleavage of this substrate was seen in reactions catalyzed by RNase P RNAs from Escherichia coli and Bacillus subtilis, independent of the presence of thiophilic metal ions. Ground state binding of modified ptRNAs was not impaired, suggesting that the 3'- S -phosphorothiolate modification specifically prevents formation of the transition state, possibly by excluding catalytic metal ions from the active site.
Not making the cut: Techniques to prevent RNA cleavage in structural studies of RNase-RNA complexes.
Jones S, Goossen C, Lewis S, Delaney A, Gleghorn M J Struct Biol X. 2022; 6:100066.
PMID: 35340590 PMC: 8943300. DOI: 10.1016/j.yjsbx.2022.100066.
Isolation, purification and characterization of 5'-phosphodiesterase from Aspergillus fumigatus.
Luo Z, Fan Y, Li Q, Han B, Liu Y, Li S PLoS One. 2017; 12(10):e0186011.
PMID: 29073277 PMC: 5657630. DOI: 10.1371/journal.pone.0186011.
Nucleic acid catalysis: metals, nucleobases, and other cofactors.
Ward W, Plakos K, DeRose V Chem Rev. 2014; 114(8):4318-42.
PMID: 24730975 PMC: 4002065. DOI: 10.1021/cr400476k.
Unexpected diversity of RNase P, an ancient tRNA processing enzyme: challenges and prospects.
Lai L, Vioque A, Kirsebom L, Gopalan V FEBS Lett. 2009; 584(2):287-96.
PMID: 19931535 PMC: 2799185. DOI: 10.1016/j.febslet.2009.11.048.
Identification of catalytic metal ion ligands in ribozymes.
Frederiksen J, Piccirilli J Methods. 2009; 49(2):148-66.
PMID: 19651216 PMC: 3470912. DOI: 10.1016/j.ymeth.2009.07.005.