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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Cone-rod dystrophy and a frameshift mutation in the PROM1 gene.
PMID 19718270 · PMC2732717 · Molecular vision · 2009 · 7 claims · 6 setups
A novel homozygous frameshift insertion in PROM1 (c.1349insT) causes cone-rod dystrophy with high myopia in this consanguineous family
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A missense mutation in the nuclear localization signal sequence of CERKL (p.R106S) causes autosomal recessive retinal degeneration.
PMID 18978954 · PMC2576480 · Molecular vision · 2008 · 8 claims · 6 setups
A C>A transversion in exon 2 of CERKL (c.316C>A) causes a missense change p.R106S in the nuclear localization signal sequence (KLKRR) of the protein.
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Presence of myocilin sequence variants in Japanese patients with open-angle glaucoma.
PMID 18334962 · PMC2268858 · Molecular vision · 2008 · 8 claims · 4 setups
Two MYOC sequence variants were identified in Japanese POAG patients: a novel non-synonymous variant p.Gln297His and a previously reported variant p.Ala363Thr.
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Retinitis pigmentosa: mutation analysis of RHO, PRPF31, RP1, and IMPDH1 genes in patients from India.
PMID 18552984 · PMC2426732 · Molecular vision · 2008 · 8 claims · 4 setups
Coding/flanking regions of RHO, PRPF31, and IMPDH1, plus exons 4F/4G/4H of RP1, were PCR-amplified and directly sequenced in 48 isolated and 53 adRP Indian patients and 75 controls
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Mutations in the TOPORS gene cause 1% of autosomal dominant retinitis pigmentosa.
PMID 18509552 · PMC2391085 · Molecular vision · 2008 · 7 claims · 7 setups
Point mutations and small insertions/deletions in TOPORS cause approximately 1% of adRP