Description:
CEPH/UTAH PEDIGREE 1350
INTERNATIONAL HAPMAP PROJECT - CEPH (PLATE I) [UTAH RESIDENTS WITH ANCESTRY FROM NORTHERN AND WESTERN EUROPE]
CYTOCHROME P450, SUBFAMILY IIC, POLYPEPTIDE 9; CYP2C9
CYTOCHROME P450, SUBFAMILY IIC, POLYPEPTIDE 19; CYP2C19
INTERNATIONAL HAPMAP PROJECT - CEPH [UTAH RESIDENTS WITH ANCESTRY FROM NORTHERN AND WESTERN EUROPE]
NA CUSTOM SERVICE PLATE 01
Repository
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NIGMS Human Genetic Cell Repository
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Subcollection |
CEPH Repository Linkage Families Pharmacogenetics PIGI Consented Sample |
Quantity |
25 µg |
Quantitation Method |
Please see our FAQ |
Biopsy Source
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Peripheral vein
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Cell Type
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B-Lymphocyte
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Tissue Type
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Blood
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Transformant
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Epstein-Barr Virus
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Sample Source
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DNA from LCL
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Race
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White
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Ethnicity
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UTAH/MORMON
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Country of Origin
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USA
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Family Member
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13
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Relation to Proband
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maternal grandmother
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Confirmation
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Clinical summary/Case history
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Species
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Homo sapiens
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Common Name
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Human
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Remarks
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IDENTIFICATION OF SPECIES OF ORIGIN |
Species of Origin Confirmed by Nucleoside Phosphorylase, Glucose-6-Phosphate Dehydrogenase, and Lactate Dehydrogenase Isoenzyme Electrophoresis |
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Remarks |
Maternal Grandmother; donor subject is heterozygous for an A>C change at nucleotide 1061 (1061A>C) in exon 7 of the CYP2C9 gene (CYP2C9*3) which results in a substitution of leucine for isoleucine at codon 359 [Ile359Leu (I359L)]; donor subject has a single bp (G-to-A) transition at nucleotide 681 in exon 5 of the CYP2C19 gene (CYP2C19*2) which creates an aberrant splice site. The change altered the reading frame of the mRNA starting with amino acid 215 and produced a premature stop codon 20 amino acids downstream, resulting in a truncated, nonfunctional protein. Because of the aberrant splice site, a 40-bp deletion occurred at the beginning of exon 5 (from bp 643 to bp 682), resulting in deletion of amino acids 215 to 227. The truncated protein had 234 amino acids and would be catalytically inactive because it lacked the heme-binding region. |
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PubMed ID: 36006120 |
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PubMed ID: 33632895 |
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PubMed ID: 33203694 |
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PubMed ID: 33127893 |
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PubMed ID: 31401124 |
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PubMed ID: 31754017 |
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PubMed ID: 31206625 |
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Sangkuhl K, Whirl-Carrillo M, Whaley RM, Woon M, Lavertu A, Altman RB, Carter L, Verma A, Ritchie MD, Klein TE, Pharmacogenomics Clinical Annotation Tool (PharmCAT) Clinical pharmacology and therapeutics11:5482 2019 |
PubMed ID: 31306493 |
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Twesigomwe D, Wright GEB, Drögemöller BI, da Rocha J, Lombard Z, Hazelhurst S, A systematic comparison of pharmacogene star allele calling bioinformatics algorithms: a focus on NPJ genomic medicine5:30 2019 |
PubMed ID: 32789024 |
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Chen X, Li D, ERVcaller: identifying polymorphic endogenous retrovirus and other transposable element insertions using whole-genome sequencing data Bioinformatics (Oxford, England)35:3913-3922 2018 |
PubMed ID: 30895294 |
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Dias C, Elzein S, Sladek R, Goodyer CG, Sex-specific effects of a microsatellite polymorphism on human growth hormone receptor gene expression Molecular and cellular endocrinology492:110442 2018 |
PubMed ID: 31063794 |
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PubMed ID: 31530810 |
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Luzum JA, English JD, Ahmad US, Sun JW, Canan BD, Sadee W, Kitzmiller JP, Binkley PF, Association of Genetic Polymorphisms in the Beta-1 Adrenergic Receptor with Recovery of Left Ventricular Ejection Fraction in Patients with Heart Failure Journal of cardiovascular translational research12:280-289 2018 |
PubMed ID: 30756358 |
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Maggiolini FAM, Cantsilieris S, D'Addabbo P, Manganelli M, Coe BP, Dumont BL, Sanders AD, Pang AWC, Vollger MR, Palumbo O, Palumbo P, Accadia M, Carella M, Eichler EE, Antonacci F, Genomic inversions and GOLGA core duplicons underlie disease instability at the 15q25 locus PLoS genetics15:e1008075 2018 |
PubMed ID: 30917130 |
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Swart M, Stansberry WM, Pratt VM, Medeiros EB, Kiel PJ, Shen F, Schneider BP, Skaar TC, Analytical Validation of Variants to Aid in Genotype-Guided Therapy for Oncology The Journal of molecular diagnostics : JMD21:491-502 2018 |
PubMed ID: 30794985 |
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Garieri M1,2,3, Delaneau O1,2,3, Santoni F1,4, Fish RJ1, Mull D1, Carninci P5, Dermitzakis ET1,2,3, Antonarakis SE1,2,4, Fort A6., The effect of genetic variation on promoter usage and enhancer activity. Nat Commun8(1):1358 2017 |
PubMed ID: 29116076 |
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Numanagic I, Malikic S, Ford M, Qin X, Toji L, Radovich M, Skaar TC, Pratt VM, Berger B, Scherer S, Sahinalp SC, Allelic decomposition and exact genotyping of highly polymorphic and structurally variant genes Nature communications9:828 2017 |
PubMed ID: 29483503 |
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Pratt VM, Everts RE, Aggarwal P, Beyer BN, Broeckel U, Epstein-Baak R, Hujsak P, Kornreich R, Liao J, Lorier R, Scott SA, Smith CH, Toji LH, Turner A, Kalman LV., Allelic decomposition and exact genotyping of highly polymorphic and structurally variant genes Characterization of 137 Genomic DNA Reference Materials for 28 Pharmacogenetic Genes: A GeT-RM Collaborative Project.18(1):109-23 2016 |
PubMed ID: 26621101 |
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Londin ER, Keller MA, Maista C, Smith G, Mamounas LA, Zhang R, Madore SJ, Gwinn K, Corriveau RA.
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PubMed ID: 20976178 |
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PubMed ID: 21704271 |
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PubMed ID: 19737746 |
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Riethman H, Human subtelomeric copy number variations Cytogenetic and genome research123:244-52 2008 |
PubMed ID: 19287161 |
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PubMed ID: 18516229 |
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PubMed ID: 18056683 |
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PubMed ID: 18237385 |
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PubMed ID: 16998491 |
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