ArticleJournal of molecular biology2018
A Highly Proliferative Group IIC Intron from Geobacillus stearothermophilus Reveals New Features of Group II Intron Mobility and Splicing.
Article in Journal of molecular biology, 2018. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
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Who cites it
10 citing papers in PubMed.
- Cysteine Mutagenesis of a Group II Intron-Encoded Protein Supports Splicing, Mobility, and Site-Specific Labeling.Biochemistry · 2025Article
- Article
- Group IIC self-splicing intron-derived novel circular RNA vaccine elicits superior immune response against RSV.Frontiers in immunology · 2025Article
- Distinct Expansion of Group II Introns During Evolution of Prokaryotes and Possible Factors Involved in Its Regulation.Frontiers in microbiology · 2022Article
- A new RNA-DNA interaction required for integration of group II intron retrotransposons into DNA targets.Nucleic acids research · 2021Article
- Bacterial Group II Intron Genomic Neighborhoods Reflect Survival Strategies: Hiding and Hijacking.Molecular biology and evolution · 2020Article
- Transitions between the steps of forward and reverse splicing of group IIC introns.RNA (New York, N.Y.) · 2020Article
- Template-switching mechanism of a group II intron-encoded reverse transcriptase and its implications for biological function and RNA-Seq.The Journal of biological chemistry · 2019Article
- Improved TGIRT-seq methods for comprehensive transcriptome profiling with decreased adapter dimer formation and bias correction.Scientific reports · 2019Article
- Group II Intron RNPs and Reverse Transcriptases: From Retroelements to Research Tools.Cold Spring Harbor perspectives in biology · 2019Review
Corrections and comments
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Authors and funding
8 authors.
Funding
Abstract
The thermostable Geobacillus stearothermophilus GsI-IIC intron is among the few bacterial group II introns found to proliferate to high copy number in its host genome. Here, we developed a bacterial genetic assay for retrohoming and biochemical assays for protein-dependent and self-splicing of GsI-IIC. We found that GsI-IIC, like other group IIC introns, retrohomes into sites having a 5'-exon DNA hairpin, typically from a bacterial transcription terminator, followed by short intron-binding sequences (IBSs) recognized by base pairing of exon-binding sequences (EBSs) in the intron RNA. Intron RNA insertion occurs preferentially but not exclusively into the parental lagging strand at DNA replication forks, using a nascent lagging strand DNA as a primer for reverse transcription. In vivo mobility assays, selections, and mutagenesis indicated that a variety of GC-rich DNA hairpins of 7-19 bp with continuous base pairs or internal elbow regions support efficient intron mobility and identified a critically recognized nucleotide (T-5) between the hairpin and IBS1, a feature not reported previously for group IIC introns. Neither the hairpin nor T-5 is required for intron excision or lariat formation during RNA splicing, but the 5'-exon sequence can affect the efficiency of exon ligation. Structural modeling suggests that the 5'-exon DNA hairpin and T-5 bind to the thumb and DNA-binding domains of GsI-IIC reverse transcriptase. This mode of DNA target site recognition enables the intron to proliferate to high copy number by recognizing numerous transcription terminators and then finding the best match for the EBS/IBS interactions within a short distance downstream.
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Registered trials
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