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 · 59
Integrative network modeling reveals mechanisms underlying T cell exhaustion.
PMID 32024856 · PMC7002445 · Scientific reports · 2020 · 8 claims · 7 setups
TCE arises from changes in diverse gene regulatory interactions across a shared network rather than dysregulation of a single gene
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Fifty Generations of Amitosis: Tracing Asymmetric Allele Segregation in Polyploid Cells with Single-Cell DNA Sequencing.
PMID 34576874 · PMC8467633 · Microorganisms · 2021 · 7 claims · 7 setups
Amitosis causes random assortment of somatic alleles (IESs) in the highly polyploid Paramecium macronucleus, which can be tracked without phenotypic markers using scDNA-seq.
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Antigenic diversity, transmission mechanisms, and the evolution of pathogens.
PMID 19847288 · PMC2759524 · PLoS computational biology · 2009 · 8 claims · 3 setups
Three distinct infection types (A, B, C) emerge as maxima in the pathogen fitness landscape, each with characteristic within-host dynamics, contact network structure, and transmission mode
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Has reproduction · 78
Emergent dynamics of underlying regulatory network links EMT and androgen receptor-dependent resistance in prostate cancer.
PMID 36851919 · PMC9957767 · Computational and structural biotechnology journal · 2023 · 8 claims · 7 setups
Simulations of the EMT-AR crosstalk network reveal four possible phenotypes: epithelial-sensitive (ES), epithelial-resistant (ER), mesenchymal-resistant (MR), and mesenchymal-sensitive (MS), with MS occurring rarely
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Has reproduction · 50
Quality control method for RNA-seq using single nucleotide polymorphism allele frequency.
PMID 25243705 · PMC4231238 · Genes to cells : devoted to molecular & cellular mechanisms · 2014 · 8 claims · 8 setups
SNP allele frequency distributions from RNA-seq reads can detect contaminating cells whose genomic background differs from the target cells; the mode of the distribution reflects the cellular composition while its variance reflects PCR bias.
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Threshold-dominated regulation hides genetic variation in gene expression networks.
PMID 18062810 · PMC2238762 · BMC systems biology · 2007 · 8 claims · 2 setups
Threshold robustness (insensitivity of a singular/regulating variable's equilibrium value to parameter perturbations, except threshold changes) increases with increasing response function steepness and is present even under Michaelis-Menten conditions, not just in the step-function limit.
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A universal mechanism ties genotype to phenotype in trinucleotide diseases.
PMID 18039028 · PMC2082501 · PLoS computational biology · 2007 · 8 claims · 5 setups
A universal mechanism of somatic, length-dependent trinucleotide repeat expansion toward a disease-specific pathological threshold explains genotype-phenotype correlations common to trinucleotide diseases
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Has reproduction · 49
Numb prevents a complete epithelial-mesenchymal transition by modulating Notch signalling.
PMID 29187638 · PMC5721160 · Journal of the Royal Society, Interface · 2017 · 8 claims · 8 setups
Numb/Numbl acts as a 'phenotypic stability factor' (PSF) that inhibits a complete EMT by stabilizing the hybrid E/M phenotype
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Emergence of recombinant forms of HIV: dynamics and scaling.
PMID 17967052 · PMC2041978 · PLoS computational biology · 2007 · 7 claims · 5 setups
A detailed mathematical model incorporating multiple cell infections and recombination quantitatively captures experimental observations of recombinant HIV emergence dynamics in vitro
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Genomic variability within an organism exposes its cell lineage tree.
PMID 16261192 · PMC1274291 · PLoS computational biology · 2005 · 8 claims · 5 setups
Somatic mutations accumulated during normal development implicitly encode an organism's entire cell lineage tree with very high precision.