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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Has reproduction · 67
Essential Genes of Vibrio anguillarum and Other Vibrio spp. Guide the Development of New Drugs and Vaccines.
PMID 34745063 · PMC8564382 · Frontiers in microbiology · 2021 · 7 claims · 7 setups
Tn-seq using the TnSC189 mariner transposon identified 329 essential genes in V. anguillarum NB10Sm from a library of 52,662 insertion mutants.
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targetTB: a target identification pipeline for Mycobacterium tuberculosis through an interactome, reactome and genome-scale structural analysis.
PMID 19099550 · PMC2651862 · BMC systems biology · 2008 · 8 claims · 8 setups
A comprehensive in silico target identification pipeline (targetTB) integrating interactome, reactome, essentiality, sequence and structural analyses can identify high-confidence drug targets for Mtb
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Helicobacter pylori: after the genomes, back to biology.
PMID 12668641 · PMC2193897 · The Journal of experimental medicine · 2003 · 8 claims · 5 setups
STM screening of 960 H. pylori mutants in gerbils identifies genes required for in vivo colonization
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High-precision mapping of protein protein interfaces: an integrated genetic strategy combining en masse mutagenesis and DNA-level parallel analysis on a yeast two-hybrid platform.
PMID 17702760 · PMC2018616 · Nucleic acids research · 2007 · 7 claims · 4 setups
An integrated strategy combining en masse pentapeptide insertion mutagenesis, yeast two-hybrid screening, and parallel genetic footprinting can map protein-protein interfaces at amino acid precision and is generally applicable to any interacting protein pair.
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The key role of genomics in modern vaccine and drug design for emerging infectious diseases.
PMID 19855822 · PMC2752168 · PLoS genetics · 2009 · 8 claims · 8 setups
Reverse vaccinology (in silico genome screening for surface/secreted proteins) can identify vaccine candidates far faster than conventional approaches, as demonstrated by the MenB project.