Experiments
Searchable full-text extractions: founding hypothesis, core claims, experimental setups, key results and statistics — pulled out of each paper as structure. Search a cell line, an assay or an entity (e.g. HUH7) and find every paper that worked with it. This corpus stands on its own: most entries carry no reproduction assessment (yet).
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Genome mapping and expression analyses of human intronic noncoding RNAs reveal tissue-specific patterns and enrichment in genes related to regulation of transcription.
PMID 17386095 · PMC1868932 · Genome biology · 2007 · 8 claims · 4 setups
More than 55,000 totally intronic noncoding (TIN) RNAs are transcribed from the introns of 74% of unique RefSeq genes.
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Systematic identification of pseudogenes through whole genome expression evidence profiling.
PMID 16945953 · PMC1636364 · Nucleic acids research · 2006 · 8 claims · 8 setups
Developed a novel bioinformatics method that identifies pseudogenes by profiling whole-genome transcript and protein expression evidence
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GenBank.
PMID 16381837 · PMC1347519 · Nucleic acids research · 2006 · 8 claims · 8 setups
GenBank is a comprehensive public database of nucleotide sequences with supporting bibliographic and biological annotation, built and distributed by NCBI.
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Prediction-based approaches to characterize bidirectional promoters in the mammalian genome.
PMID 18366609 · PMC2386062 · BMC genomics · 2008 · 8 claims · 7 setups
The mapping algorithm identified 5,647 candidate bidirectional promoter regions in the mouse genome, similar in number to those previously found in human.
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Genomic structure and expression of Jmjd6 and evolutionary analysis in the context of related JmjC domain containing proteins.
PMID 18564434 · PMC2453528 · BMC genomics · 2008 · 8 claims · 6 setups
Jmjd6 has been misleadingly annotated as a transmembrane receptor for engulfment of apoptotic cells; recent evidence contradicts this transmembrane receptor function
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Non-EST based prediction of exon skipping and intron retention events using Pfam information.
PMID 16204458 · PMC1243800 · Nucleic acids research · 2005 · 7 claims · 5 setups
A novel ab initio method predicts exon skipping and intron retention events using only Pfam domain annotation, via a Viterbi-like dynamic programming algorithm applied to the Pfam alignment.