Group I-like ribozymes with a novel core organization perform obligate sequential hydrolytic cleavages at two processing sites
- 1 May 1998
- journal article
- research article
- Published by Cold Spring Harbor Laboratory in RNA
- Vol. 4 (5) , 530-541
- https://doi.org/10.1017/s1355838298971758
Abstract
A new category of self-splicing group I introns with conserved structural organization and function is found among the eukaryotic microorganisms Didymium and Naegleria. These complex rDNA introns contain two distinct ribozymes with different functions: a regular group I splicing-ribozyme and a small internal group I-like ribozyme (GIR1), probably involved in protein expression. GIR1 was found to cleave at two internal sites in an obligate sequential order. Both sites are located 3′ of the catalytic core. GIR1-catalyzed transesterification reactions could not be detected. We have compared all available GIR1 sequences and propose a common RNA secondary structure resembling that of group I splicing-ribozymes, but with some important differences. The GIR1s lack most peripheral sequence components, as well as a P1 segment, and, at approximately 160–190 nt, they are the smallest functional group I ribozymes known from nature. All GIR1s were found to contain a novel 6-bp pseudoknot (P15) within their catalytic core region. Experimental support of the proposed structure was obtained from the Didymium GIR1 by RNA structure probing and site-directed mutagenesis. Three-dimensional modeling indicates a compactly folded ribozyme with the functionally essential P15 exposed in the cleft between the two principal domains P3–P8 and P4–P6.Keywords
This publication has 26 references indexed in Scilit:
- Function of a pseudoknot in the suppression of an alternative splicing event in a group I intronBiochimie, 1996
- DRAWNA: A program for drawing schematic views of nucleic acidsJournal of Molecular Graphics, 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
- Activation of the catalytic core of a group I intron by a remote 3' splice junction.Genes & Development, 1992
- Function of P11, a tertiary base pairing in self-splicing introns of subgroup IAJournal of Molecular Biology, 1991
- Incipient mitochondrial evolution in yeasts: II. The complete sequence of the gene coding for cytochrome b in Saccharomyces douglasii reveals the presence of both new and conserved introns and discloses major differences in the fixation of mutations in evolutionJournal of Molecular Biology, 1991
- Modelling of the three-dimensional architecture of group I catalytic introns based on comparative sequence analysisJournal of Molecular Biology, 1990
- The guanosine binding site of the Tetrahymena ribozymeNature, 1989
- Determinants of the 3' splice site for self-splicing of the Tetrahymena pre-rRNA.Genes & Development, 1988