Kinetic and Secondary Structure Analysis of Naegleria andersoni GIR1, a Group I Ribozyme Whose Putative Biological Function Is Site-Specific Hydrolysis
- 1 December 1997
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 36 (51) , 16345-16354
- https://doi.org/10.1021/bi9718595
Abstract
NanGIR1 is a catalytic element inserted in the P6 loop of a group I intron (NanGIR2) in the small subunit rRNA precursor of the protist Naegleria andersoni [Einvik, C., Decatur, W. A., Embley, T. M., Vogt, V. M., and Johansen, S. (1997) RNA 3, 710-720]. It catalyzes site-specific hydrolysis at an internal processing site (IPS) after a G residue that immediately follows the P9 stem-loop. Functional and structural analyses were initiated to compare NanGIR1 to group I introns that carry out self-splicing. Chemical modification and site-directed mutagenesis studies showed that NanGIR1 shares many structural elements with other group I introns, but also contains a pseudoknot (P15), which is important for catalytic activity. Deletion analysis revealed the boundaries of the minimum self-cleaving unit (178 nucleotides). The rate of self-cleavage was measured as a function of mono- and divalent ion concentration, temperature, and pH. The reaction at the IPS yields 5'-phosphate and 3'-hydroxyl termini, requires Mg2+or Mn2+ ions, and is first-order in [OH-] between pH 5.0 and 8.5. The latter results suggest that the nucleophile in the reaction is hydroxide or possibly a Mg2+-coordinated hydroxide. With a second-order rate constant of 1 x 10(5) min-1 M-1, the self-cleavage reaction of NanGIR1 is 2 orders of magnitude faster than a similar site-specific hydrolysis reaction of the circular form of the Tetrahymena group I intron.Keywords
This publication has 12 references indexed in Scilit:
- Two Universally Conserved Adenosines of the Group I Intron That Are Important for Self-Splicing but Not for Core Catalytic Activity1The Journal of Biochemistry, 1994
- Automatic Identification of Group I Intron Cores in Genomic DNA SequencesJournal of Molecular Biology, 1994
- Requirements of a Group I Intron for Reactions at the 3′ Splice SiteJournal of Molecular Biology, 1993
- A family of nuclear homing endonucleasesNucleic Acids Research, 1993
- Metal ion catalysis in the Tetrahymena ribozyme reactionNature, 1993
- Self-splicing introns in prokaryotes: Migrant fossils?Cell, 1991
- Modelling of the three-dimensional architecture of group I catalytic introns based on comparative sequence analysisJournal of Molecular Biology, 1990
- Localization of the binding site for protein S4 on 16 S ribosomal RNA by chemical and enzymatic probing and primer extensionJournal of Molecular Biology, 1986
- New reactions of the ribosomal RNA precursor of Tetrahymena and the mechanism of self-splicingJournal of Molecular Biology, 1986
- Barium Ethylene PhosphateJournal of the American Chemical Society, 1956