In silico analyses have established that transcripts from some genes can be processed into RNAs with rearranged exon order relative to genomic structure (post-transcriptional exon shuffling, or PTES). Although known to contribute to transcriptome diversity in some species, to date the structure, distribution, abundance, and functional significance of human PTES transcripts remains largely unknown. Here, using high-throughput transcriptome sequencing, we identify 205 putative human PTES products from 176 genes. We validate 72 out of 112 products analyzed using RT-PCR, and identify additional PTES products structurally related to 61% of validated targets. Sequencing of these additional products reveals GT-AG dinucleotides at >95% of the splic...
[[abstract]]Comparison of human and mouse genomics revealed a similar long range sequences organizat...
Alternative splicing, an unknown mechanism 20 years ago, is now recognized as a major mechanism for ...
[[abstract]]Alternative mRNA splicing (AS) is a major mechanism for increasing regulatory complexity...
In silico analyses have established that transcripts from some genes can be processed into RNAs with...
PhD ThesisMost eukaryotic genes undergo splicing to remove introns and join exons sequentially to p...
To illuminate the extent and roles of exonic sequences in the splicing of human RNA transcripts, we ...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Biology, 2012.Cataloged from PDF vers...
Mining massive amounts of transcript data for alternative splicing information is paramount to help ...
The functional complexity of the human transcriptome is not yet fully elucidated. We report a high-t...
Understanding pre-mRNA splicing is crucial to accurately diagnosing and treating genetic diseases. H...
High-throughput sequencing studies revealed that the majority of human and mouse multi-exon genes ha...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Biology, 2005.Includes bibliographica...
High-throughput sequencing studies revealed that the majority of human and mouse multi-exon genes ha...
Abstract:-Comparison of human and mouse genomics revealed a similar long range sequences organizatio...
Mutually exclusive splicing of exons is a mechanism of functional gene and protein diversification w...
[[abstract]]Comparison of human and mouse genomics revealed a similar long range sequences organizat...
Alternative splicing, an unknown mechanism 20 years ago, is now recognized as a major mechanism for ...
[[abstract]]Alternative mRNA splicing (AS) is a major mechanism for increasing regulatory complexity...
In silico analyses have established that transcripts from some genes can be processed into RNAs with...
PhD ThesisMost eukaryotic genes undergo splicing to remove introns and join exons sequentially to p...
To illuminate the extent and roles of exonic sequences in the splicing of human RNA transcripts, we ...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Biology, 2012.Cataloged from PDF vers...
Mining massive amounts of transcript data for alternative splicing information is paramount to help ...
The functional complexity of the human transcriptome is not yet fully elucidated. We report a high-t...
Understanding pre-mRNA splicing is crucial to accurately diagnosing and treating genetic diseases. H...
High-throughput sequencing studies revealed that the majority of human and mouse multi-exon genes ha...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Biology, 2005.Includes bibliographica...
High-throughput sequencing studies revealed that the majority of human and mouse multi-exon genes ha...
Abstract:-Comparison of human and mouse genomics revealed a similar long range sequences organizatio...
Mutually exclusive splicing of exons is a mechanism of functional gene and protein diversification w...
[[abstract]]Comparison of human and mouse genomics revealed a similar long range sequences organizat...
Alternative splicing, an unknown mechanism 20 years ago, is now recognized as a major mechanism for ...
[[abstract]]Alternative mRNA splicing (AS) is a major mechanism for increasing regulatory complexity...