Deletion of a conserved dinucleotide inhibits the second step of group II intron splicing
- 1 April 2000
- journal article
- other
- Published by Cold Spring Harbor Laboratory in RNA
- Vol. 6 (11) , 1509-1515
- https://doi.org/10.1017/s1355838200000972
Abstract
Few point mutations have been described that specifically inhibit the second step of group II intron splicing. Furthermore, the effects of such mutations are typically not apparent unless the mutations are studied in the context of a substrate that harbors a very short 5′ exon. Truncation of the 5′ exon slows the second step of splicing. Once the second step has been slowed, the effects of point mutations can be seen. We report the unexpected observation that the deletion of a conserved GA dinucleotide dramatically inhibits the second step of splicing, even when the mutation is studied in the context of a full-length substrate. In contrast, we find that this mutation does not significantly affect the first step of splicing, unless the mutation is studied in combination with a second point mutation that is known to inhibit the first step. Even in that context, the effect of the GA deletion mutation on the first step is modest. These observations, together with the inferred location of the GA dinucleotide in the three-dimensional structure of the intron, suggest that this dinucleotide plays a particularly important role in the second step of splicing.Keywords
This publication has 16 references indexed in Scilit:
- Comparative and functional anatomy of group II catalytic introns — a reviewPublished by Elsevier ,2003
- Domain 5 binds near a highly conserved dinucleotide in the joiner linking domains 2 and 3 of a group II intron.1998
- An RNA conformational change between the two chemical steps of group II self-splicing.The EMBO Journal, 1996
- Stereochemical Selectivity of Group II Intron Splicing, Reverse Splicing, and Hydrolysis ReactionsMolecular and Cellular Biology, 1995
- Studies of Point Mutants Define Three Essential Paired Nucleotides in the Domain 5 Substructure of a Group II IntronMolecular and Cellular Biology, 1995
- Branch-point attack in group II introns is a highly reversible transesterification, providing a potential proofreading mechanism for 5'-splice site selection.1995
- STRUCTURE AND ACTIVITIES OF GROUP II INTRONSAnnual Review of Biochemistry, 1995
- Catalytically critical nucleotide in domain 5 of a group II intron.Proceedings of the National Academy of Sciences, 1995
- Catalytic Site Components Common to Both Splicing Steps of a Group II IntronScience, 1994
- Base-pairing interactions involving the 5′ and 3′-terminal nucleotides of group II self-splicing intronsJournal of Molecular Biology, 1990