Mirtrons, short hairpin pre-microRNA (miRNA) mimics directly produced by intronic splicing, have recently been identified and experimentally confirmed in invertebrates. While there is evidence to suggest several mammalian miRNAs have mirtron origins, this has yet to be experimentally demonstrated. Here, we characterize the biogenesis of mammalian mirtrons by ectopic expression of splicing-dependent mirtron precursors. The putative mirtrons hsa-miR-877, hsa-miR-1226 and mmu-miR-1224 were designed as introns within eGFP. Correct splicing and function of these sequences as introns was shown through eGFP fluorescence and RT-PCR, while all mirtrons suppressed perfectly complementary luciferase reporter targets to levels similar to that of corres...
International audienceIntrons represent almost half of the human genome, although they are eliminate...
Mirtrons are introns that form pre-miRNA hairpins after splicing to produce RNA interference (RNAi) ...
The discovery of microRNAs (miRNAs) lin-4 and let-7 as temporal regulators in Caenorhabditis elegans...
Mirtrons, short hairpin pre-microRNA (miRNA) mimics directly produced by intronic splicing, have rec...
Mirtrons, short hairpin pre-microRNA (miRNA) mimics directly produced by intronic splicing, have rec...
<div><p>Mirtrons are microRNA (miRNA) substrates that utilize the splicing machinery to bypass the n...
Mirtrons are microRNA (miRNA) substrates that utilize the splicing machinery to bypass the necessity...
Mirtrons are short hairpin introns recently found in flies and nematodes that provide an alternative...
Mirtrons are alternative precursors for microRNA biogenesis that were recently described in inverteb...
Abstract Background MicroRNAs proceeds through the different canonical and non-canonical pathways; t...
SummaryThe canonical microRNA (miRNA) pathway converts primary hairpin precursor transcripts into ∼2...
Mirtrons are introns that form pre-miRNA hairpins after splicing to produce RNA interference (RNAi) ...
The scientific review presents the biogenesis of miRNAs. To write the article, information was searc...
Nuclear pre-mRNA splicing is an important step in eukaryotic RNA processing and can yield a variety ...
Mirtrons are introns that form pre-miRNA hairpins after splicing to produce RNA interference (RNAi) ...
International audienceIntrons represent almost half of the human genome, although they are eliminate...
Mirtrons are introns that form pre-miRNA hairpins after splicing to produce RNA interference (RNAi) ...
The discovery of microRNAs (miRNAs) lin-4 and let-7 as temporal regulators in Caenorhabditis elegans...
Mirtrons, short hairpin pre-microRNA (miRNA) mimics directly produced by intronic splicing, have rec...
Mirtrons, short hairpin pre-microRNA (miRNA) mimics directly produced by intronic splicing, have rec...
<div><p>Mirtrons are microRNA (miRNA) substrates that utilize the splicing machinery to bypass the n...
Mirtrons are microRNA (miRNA) substrates that utilize the splicing machinery to bypass the necessity...
Mirtrons are short hairpin introns recently found in flies and nematodes that provide an alternative...
Mirtrons are alternative precursors for microRNA biogenesis that were recently described in inverteb...
Abstract Background MicroRNAs proceeds through the different canonical and non-canonical pathways; t...
SummaryThe canonical microRNA (miRNA) pathway converts primary hairpin precursor transcripts into ∼2...
Mirtrons are introns that form pre-miRNA hairpins after splicing to produce RNA interference (RNAi) ...
The scientific review presents the biogenesis of miRNAs. To write the article, information was searc...
Nuclear pre-mRNA splicing is an important step in eukaryotic RNA processing and can yield a variety ...
Mirtrons are introns that form pre-miRNA hairpins after splicing to produce RNA interference (RNAi) ...
International audienceIntrons represent almost half of the human genome, although they are eliminate...
Mirtrons are introns that form pre-miRNA hairpins after splicing to produce RNA interference (RNAi) ...
The discovery of microRNAs (miRNAs) lin-4 and let-7 as temporal regulators in Caenorhabditis elegans...