Conserved sequences in the Drosophila mod(mdg4) intron promote poly(A)-independent transcription termination and trans-splicing
Консервативные последовательности в интроне Drosophila mod(mdg4) способствуют поли(А)-независимой терминации транскрипции и транс-сплайсингу
2018-07-26
SCID: 54.1/5he6abp4
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73-bp intronic regionDrosophila mod(mdg4) locuspaused RNA polymerase IIpoly(A)-independent transcription terminationtrans-splicing
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Abstract (AI)
Alternative splicing (AS) is a regulatory mechanism of gene expression that greatly expands the coding capacities of genomes by allowing the generation of multiple mRNAs from a single gene. In Drosophila, the mod(mdg4) locus is an extreme example of AS that produces more than 30 different mRNAs via trans-splicing that joins together the common exons and the 3' variable exons generated from alternative promoters. To map the regions required for trans-splicing, we have developed an assay for measuring trans-splicing events and identified a 73-bp region in the last common intron that is critical for trans-splicing of three pre-mRNAs synthesized from different DNA strands. We have also found that conserved sequences in the distal part of the last common intron induce polyadenylation-independent transcription termination and are enriched by paused RNA polymerase II (RNAP II). These results suggest that all mod(mdg4) mRNAs are formed by joining in trans the 5' splice site in the last common exon with the 3' splice site in one of the alternative exons.
Key Findings
1
A 73-bp region in the last common intron is critical for trans-splicing among three mod(mdg4) pre-mRNAs synthesized from different DNA strands.
2
Conserved sequences in the distal last common intron promote polyadenylation-independent transcription termination and are enriched with paused RNA polymerase II.
3
The findings support a model in which all mod(mdg4) mRNAs form by trans-splicing the last common exon’s 5′ splice site to a 3′ splice site in an alternative exon.
4
The mod(mdg4) locus generates more than 30 distinct mRNAs through trans-splicing of common exons with variable 3′ exons from alternative promoters.
Research Object
The Drosophila mod(mdg4) locus and its alternatively trans-spliced pre-mRNAs
Research Subject
The roles of conserved sequences in the last common intron in trans-splicing and poly(A)-independent transcription termination, including RNAP II pausing
Publication Details
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2018-07-26
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