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NA12264 DNA from LCL

Description:

CEPH/UTAH PEDIGREE 1375
INTERNATIONAL HAPMAP PROJECT - CEPH (PLATE I) [UTAH RESIDENTS WITH ANCESTRY FROM NORTHERN AND WESTERN EUROPE]
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

Affected:

No Data

Sex:

Male

Age:

No Data

  • Overview
  • Characterizations
  • Phenotypic Data
  • Publications
  • External Links

Overview

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Repository NIGMS Human Genetic Cell Repository
Subcollection CEPH
Repository Linkage Families
Pharmacogenetics
PIGI Consented Sample
Quantity 25 µg
Quantitation Method Please see our FAQ
Biopsy Source Peripheral vein
Cell Type B-Lymphocyte
Tissue Type Blood
Transformant Epstein-Barr Virus
Sample Source DNA from LCL
Race White
Ethnicity UTAH/MORMON
Country of Origin USA
Family Member 11
Relation to Proband maternal grandfather
Confirmation Clinical summary/Case history
Species Homo sapiens
Common Name Human
Remarks Maternal Grandfather; subsequent to the submission of this sample and the establishment of the cell line, a detailed analysis of HapMap data has shown that the sample is from an unreported relative of another member or members of this panel, as described in Nature 437:1299-1320 (2005). (See Supplementary Table 15 and Supplementary Information on p.12. [PMID: 16255080]); 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.

Characterizations

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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
 

Phenotypic Data

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Remarks Maternal Grandfather; subsequent to the submission of this sample and the establishment of the cell line, a detailed analysis of HapMap data has shown that the sample is from an unreported relative of another member or members of this panel, as described in Nature 437:1299-1320 (2005). (See Supplementary Table 15 and Supplementary Information on p.12. [PMID: 16255080]); 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.

Publications

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Ebert P, Audano PA, Zhu Q, Rodriguez-Martin B, Porubsky D, Bonder MJ, Sulovari A, Ebler J, Zhou W, Serra Mari R, Yilmaz F, Zhao X, Hsieh P, Lee J, Kumar S, Lin J, Rausch T, Chen Y, Ren J, Santamarina M, Höps W, Ashraf H, Chuang NT, Yang X, Munson KM, Lewis AP, Fairley S, Tallon LJ, Clarke WE, Basile AO, Byrska-Bishop M, Corvelo A, Evani US, Lu TY, Chaisson MJP, Chen J, Li C, Brand H, Wenger AM, Ghareghani M, Harvey WT, Raeder B, Hasenfeld P, Regier AA, Abel HJ, Hall IM, Flicek P, Stegle O, Gerstein MB, Tubio JMC, Mu Z, Li YI, Shi X, Hastie AR, Ye K, Chong Z, Sanders AD, Zody MC, Talkowski ME, Mills RE, Devine SE, Lee C, Korbel JO, Marschall T, Eichler EE, Haplotype-resolved diverse human genomes and integrated analysis of structural variation Science (New York, NY)372: 2020
PubMed ID: 33632895
 
Fløyel T, Meyerovich K, Prause MC, Kaur S, Frørup C, Mortensen HB, Nielsen LB, Pociot F, Cardozo AK, Størling J, SKAP2, a Candidate Gene for Type 1 Diabetes, Regulates ß-Cell Apoptosis and Glycaemic Control in Newly Diagnosed Patients Diabetes372: 2020
PubMed ID: 33203694
 
Giner-Delgado C, Villatoro S, Lerga-Jaso J, Gayà-Vidal M, Oliva M, Castellano D, Pantano L, Bitarello BD, Izquierdo D, Noguera I, Olalde I, Delprat A, Blancher A, Lalueza-Fox C, Esko T, O'Reilly PF, Andrés AM, Ferretti L, Puig M, Cáceres M, Evolutionary and functional impact of common polymorphic inversions in the human genome Nature communications10:4222 2018
PubMed ID: 31530810
 
Londin ER, Keller MA, Maista C, Smith G, Mamounas LA, Zhang R, Madore SJ, Gwinn K, Corriveau RA. , CoAIMs: A Cost-Effective Panel of Ancestry Informative Markers for Determining Continental Origins. Plos One5(10):e13443 2010
PubMed ID: 20976178
 
Xue Y, Zhang X, Huang N, Daly A, Gillson CJ, Macarthur DG, Yngvadottir B, Nica AC, Woodwark C, Chen Y, Conrad DF, Ayub Q, Mehdi SQ, Li P, Tyler-Smith C, Population differentiation as an indicator of recent positive selection in humans: an empirical evaluation Genetics183:1065-77 2009
PubMed ID: 19737746
 
Riethman H, Human subtelomeric copy number variations Cytogenetic and genome research123:244-52 2008
PubMed ID: 19287161
 
Podder M, Ruan J, Tripp W, Chu E, Tebbutt J, Robust SNP genotyping by multiplex PCR and arrayed primer extension BMC medical genomics1:5 2007
PubMed ID: 18237385
 
de Bakker PI, McVean G, Sabeti PC, Miretti MM, Green T, Marchini J, Ke X, Monsuur AJ, Whittaker P, Delgado M, Morrison J, Richardson A, Walsh EC, Gao X, Galver L, Hart J, Hafler DA, Pericak-Vance M, Todd JA, Daly MJ, Trowsdale J, Wijmenga C, Vyse TJ, Beck S, Murray SS, Carrington M, Gregory S, Deloukas P, Rioux JD, A high-resolution HLA and SNP haplotype map for disease association studies in the extended human MHC Nature Genetics38(10):1166-1172 2006
PubMed ID: 16998491
 
Redon R, Ishikawa S, Fitch KR, Feuk L, Perry GH, Andrews TD, Fiegler H, Shapero MH, Carson AR, Chen W, Cho EK, Dallaire S, Freeman JL, González JR, Gratacòs M, Huang J, Kalaitzopoulos D, Komura D, MacDonald JR, Marshall CR, Mei R, Montgomery L, Nishimura K, Okamura K, Shen F, Somerville MJ, Tchinda J, Valsesia A, Woodwark C, Yang F, Zhang J, Zerjal T, Zhang J, Armengol L, Conrad DF, Estivill X, Tyler-Smith C, Carter NP, Aburatani H, Lee C, Jones KW, Scherer SW, Hurles ME, Global variation in copy number in the human genome Nature444:444-54 2006
PubMed ID: 17122850
 
Altshuler D, Brooks LD, Chakravarti A, Collins FS, Daly MJ, Donnelly P; International HapMap Consortium, A haplotype map of the human genome. Nature437(7063):1299-320 2005
PubMed ID: 16255080
 
Ferraren DO, Liu C, Badner JA, Corona W, Rezvani A, Monje VD, Gershon ES, Bonner TI, Detera-Wadleigh SD, Linkage disequilibrium analysis in the LOC93081-KDELC1-BIVM region on 13q in bipolar disorder. Am J Med Genet B Neuropsychiatr Genet133(1):12-7 2005
PubMed ID: 15635705
 
Miretti MM, Walsh EC, Ke X, Delgado M, Griffiths M, Hunt S, Morrison J, Whittaker P, Lander ES, Cardon LR, Bentley DR, Rioux JD, Beck S, Deloukas P, A high-resolution linkage-disequilibrium map of the human major histocompatibility complex and first generation of tag single-nucleotide polymorphisms. Am J Hum Genet76(4):634-46 2005
PubMed ID: 15747258
 
Yakub I, Lillibridge KM, Moran A, Gonzalez OY, Belmont J, Gibbs RA, Tweardy DJ, Single nucleotide polymorphisms in genes for 2'-5'-oligoadenylate synthetase and RNase L inpatients hospitalized with West Nile virus infection The Journal of infectious diseases192:1741-8 2005
PubMed ID: 16235172
 
Matsuzaki H, Dong S, Loi H, Di X, Liu G, Hubbell E, Law J, Berntsen T, Chadha M, Hui H, Yang G, Kennedy GC, Webster TA, Cawley S, Walsh PS, Jones KW, Fodor SP, Mei R, Genotyping over 100,000 SNPs on a pair of oligonucleotide arrays. Nat Methods1(2):109-11 2004
PubMed ID: 15782172
 
Norman PJ, Cook MA, Carey BS, Carrington CV, Verity DH, Hameed K, Ramdath DD, Chandanayingyong D, Leppert M, Stephens HA, Vaughan RW, SNP haplotypes and allele frequencies show evidence for disruptive and balancing selection in the human leukocyte receptor complex Immunogenetics56:225-37 2004
PubMed ID: 15185041
 
Hall MA, Norman PJ, Thiel B, Tiwari H, Peiffer A, Vaughan RW, Prescott S, Leppert M, Schork NJ, Lanchbury JS, Quantitative trait loci on chromosomes 1, 2, 3, 4, 8, 9, 11, 12, and 18 control variation in levels of T and B lymphocyte subpopulations. Am J Hum Genet70(5):1172-82 2002
PubMed ID: 11951176

External Links

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dbSNP dbSNP ID: 373
Gene Cards CYP2C19
Gene Ontology GO:0004497 monooxygenase activity
GO:0005783 endoplasmic reticulum
GO:0005792 microsome
GO:0006118 electron transport
GO:0016020 membrane
GO:0018676 (S)-limonene 7-monooxygenase activity
GO:0019825 oxygen binding
GEO GEO Accession No: GSM1315169
GEO Accession No: GSM1315170
GEO Accession No: GSM136727
GEO Accession No: GSM159555
GEO Accession No: GSM188821
GEO Accession No: GSM189003
GEO Accession No: GSM238637
GEO Accession No: GSM238638
GEO Accession No: GSM238639
GEO Accession No: GSM245630
GEO Accession No: GSM420842
GEO Accession No: GSM424350
GEO Accession No: GSM486817
GEO Accession No: GSM486818
GEO Accession No: GSM83663
GEO Accession No: GSM83664
GEO Accession No: GSM83665
GEO Accession No: GSM83762
GEO Accession No: GSM83763
GEO Accession No: GSM83764
NCBI Gene Gene ID:1557
NCBI GTR 124020 CYTOCHROME P450, SUBFAMILY IIC, POLYPEPTIDE 19; CYP2C19
OMIM 124020 CYTOCHROME P450, SUBFAMILY IIC, POLYPEPTIDE 19; CYP2C19
Pricing
International/Commercial/For-profit:
$281.00USD
U.S. Academic/Non-profit/Government:
$139.00USD
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How to Order
  • Ordering Instructions
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  • Statement of Research Intent Form
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