The classic organization of a gene structure has followed the Jacob and Monod bacterial gene model proposed more than 50 years ago. Since then, empirical determinations of the complexity of the transcriptomes found in yeast to human has blurred the definition and physical boundaries of genes. Using multiple analysis approaches we have characterized individual gene boundaries mapping on human chromosomes 21 and 22. Analyses of the locations of the 5′ and 3′ transcriptional termini of 492 protein coding genes revealed that for 85% of these genes the boundaries extend beyond the current annotated termini, most often connecting with exons of transcripts from other well annotated genes. The biological and evolutionary importance of these chimeri...
It’s increasingly clear that the three-dimensional genome organization is dependent on the functiona...
Eukaryotic cells make many types of primary and processed RNAs that are found either in specific sub...
Recently, we mapped the sites of transcription across ∼30% of the human genome and elucidated the st...
The classic organization of a gene structure has followed the Jacob and Monod bacterial gene model p...
The classic organization of a gene structure has followed the Jacob and Monod bacterial gene model p...
International audienceThe classic organization of a gene structure has followed the Jacob and Monod ...
Evidence for transcript networks composed of chimeric RNAs in human cells DJEBALI, Sarah, et al. The...
AbstractOver half of the DNA of mammalian genomes is transcribed, and one of the emerging enigmas in...
High-throughput experiments have produced convicing evidence for an extensive contribution of divers...
Eukaryotic cells make many types of primary and processed RNAs that are found either in specific sub...
Eukaryotic cells make many types of primary and processed RNAs that are found either in specific sub...
The discovery that the non-protein coding part of human genome, dismissed as “junk DNA,” is actively...
Deep sequencing of 'transcriptomes'--the collection of all RNA transcripts produced at a given time-...
<div><p>Chimeric RNAs originating from two or more different genes are known to exist not only in ca...
It’s increasingly clear that the three-dimensional genome organization is dependent on the functiona...
Eukaryotic cells make many types of primary and processed RNAs that are found either in specific sub...
Recently, we mapped the sites of transcription across ∼30% of the human genome and elucidated the st...
The classic organization of a gene structure has followed the Jacob and Monod bacterial gene model p...
The classic organization of a gene structure has followed the Jacob and Monod bacterial gene model p...
International audienceThe classic organization of a gene structure has followed the Jacob and Monod ...
Evidence for transcript networks composed of chimeric RNAs in human cells DJEBALI, Sarah, et al. The...
AbstractOver half of the DNA of mammalian genomes is transcribed, and one of the emerging enigmas in...
High-throughput experiments have produced convicing evidence for an extensive contribution of divers...
Eukaryotic cells make many types of primary and processed RNAs that are found either in specific sub...
Eukaryotic cells make many types of primary and processed RNAs that are found either in specific sub...
The discovery that the non-protein coding part of human genome, dismissed as “junk DNA,” is actively...
Deep sequencing of 'transcriptomes'--the collection of all RNA transcripts produced at a given time-...
<div><p>Chimeric RNAs originating from two or more different genes are known to exist not only in ca...
It’s increasingly clear that the three-dimensional genome organization is dependent on the functiona...
Eukaryotic cells make many types of primary and processed RNAs that are found either in specific sub...
Recently, we mapped the sites of transcription across ∼30% of the human genome and elucidated the st...