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Gut|August 14, 1999
Screening SMAD1, SMAD2, SMAD3, and SMAD5 for germline mutations in juvenile polyposis syndromeS Bevan, K Woodford-Richens, P Rozen, et al.
Nature|March 28, 2008
Lower-crustal intrusion on the North Atlantic continental marginR S White, L K Smith, A W Roberts, et al.
The Journal of Allergy and Clinical Immunology|August 10, 2023
Complement C1q essential for aeroallergen sensitization via CSF1R+ conventional dendritic cells type 2Hyung-Geun Moon, Jacob D Eccles, Seung-Jae Kim, et al.
Human Molecular Genetics|November 13, 1998
Mutations in DPC4 (SMAD4) cause juvenile polyposis syndrome, but only account for a minority of casesR Houlston, S Bevan, A Williams, et al.
Genetics in Medicine : Official Journal of the American College of Medical Genetics|July 7, 2021
Clinical likelihood ratios and balanced accuracy for 44 in silico tools against multiple large-scale functional assays of cancer susceptibility genesC Cubuk, A Garrett, S Choi, et al.
The Journal of Allergy and Clinical Immunology|April 23, 2020
Human TH1 and TH2 cells targeting rhinovirus and allergen coordinately promote allergic asthmaLyndsey M Muehling, Peter W Heymann, Paul W Wright, et al.
The Pharmacogenomics Journal|August 6, 2014
Tamoxifen metabolism predicts drug concentrations and outcome in premenopausal patients with early breast cancerP Saladores, T Mürdter, D Eccles, et al.
Journal of Medical Genetics|November 11, 2008
Risk reducing mastectomy: outcomes in 10 European centresD G R Evans, A D Baildam, E Anderson, et al.
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