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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A case report of familial benign hypocalciuric hypercalcemia: a mutation in the calcium-sensing receptor gene.
PMID 16642557 · PMC2687637 · Yonsei medical journal · 2006 · 8 claims · 6 setups
A heterozygous E297K mutation (GAG→AAG, exon 4) of the CaSR gene was identified in a Korean family with FBHH.
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Alstrom syndrome (OMIM 203800): a case report and literature review.
PMID 18154657 · PMC2266715 · Orphanet journal of rare diseases · 2007 · 8 claims · 8 setups
The proband is a compound heterozygote for two novel ALMS1 mutations, V424I (exon 6) and H3882Y (exon 17), causative for Alstrom syndrome
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Ankyrin-linked hereditary spherocytosis in an African-American kindred.
PMID 18704959 · PMC11304496 · American journal of hematology · 2008 · 6 claims · 7 setups
A novel heterozygous initiator methionine mutation (ATG→ATA, Met1Ile), termed ankyrin New Haven, was identified in exon 1 of the ankyrin-1 gene as the cause of HS in this kindred.
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Familial hypercholesterolemia in St-Petersburg: the known and novel mutations found in the low density lipoprotein receptor gene in Russia.
PMID 15701167 · PMC551615 · BMC medical genetics · 2005 · 8 claims · 6 setups
21 rare sequence variations of the LDL receptor gene were identified in St.-Petersburg FH patients, 19 of which are probably pathogenic and 2 (P518P, T705I) neutral.
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Anticipation in familial lattice corneal dystrophy type I with R124C mutation in the TGFBI (BIGH3) gene.
PMID 18470323 · PMC2373796 · Molecular vision · 2008 · 7 claims · 4 setups
The R124C mutation (C417T) in exon 4 of TGFBI cosegregates with lattice corneal dystrophy type I in this Chilean family
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A novel connexin 50 (GJA8) mutation in a Chinese family with a dominant congenital pulverulent nuclear cataract.
PMID 18334966 · PMC2268715 · Molecular vision · 2008 · 7 claims · 5 setups
A novel 827C>T transition in GJA8 causes a serine-to-phenylalanine substitution (S276F) associated with dominant congenital pulverulent nuclear cataract in this Chinese family.
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A novel DSPP mutation is associated with type II dentinogenesis imperfecta in a Chinese family.
PMID 17686168 · PMC1995191 · BMC medical genetics · 2007 · 7 claims · 5 setups
A novel mutation c.49C>T (p.Pro17Ser) in exon 1 of DSPP causes type II DGI in this Chinese family.
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Genetics of Meesmann corneal dystrophy: a novel mutation in the keratin 3 gene in an asymptomatic family suggests genotype-phenotype correlation.
PMID 18806880 · PMC2538492 · Molecular vision · 2008 · 8 claims · 4 setups
A novel heterozygous 1493A>T mutation in exon 7 of KRT3, predicting E498V, was identified as the cause of MCD in this family
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Mutational screening of 10 genes in Chinese patients with microphthalmia and/or coloboma.
PMID 20057906 · PMC2802294 · Molecular vision · 2009 · 7 claims · 4 setups
Screening of 32 Chinese patients with microphthalmia and/or coloboma across ten candidate genes revealed no clearly causative mutation.
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Variable expression of cerebral cavernous malformations in carriers of a premature termination codon in exon 17 of the Krit1 gene.
PMID 12877753 · PMC184376 · BMC neurology · 2003 · 8 claims · 5 setups
A novel frameshift mutation (1902A insertion) in exon 17 of the Krit1 gene creates a premature TAA stop codon, predicting a truncated Y634X protein.
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Mutation analysis of the PTEN / MMAC1 gene in Japanese patients with Cowden disease.
PMID 10920277 · PMC5926416 · Japanese journal of cancer research : Gann · 2000 · 7 claims · 4 setups
Sequencing of all PTEN/MMAC1 coding regions identified five different germline mutations, four of them novel, in 5 of 12 unrelated Japanese CD patients
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PAX6 gene variations associated with aniridia in south India.
PMID 15086958 · PMC419353 · BMC medical genetics · 2004 · 7 claims · 5 setups
Mutations in PAX6 cause the aniridia phenotype via haploinsufficiency (loss-of-function/null alleles)