Literature DB >> 19676055

Detection of parent-of-origin effects using general pedigree data.

Ji-Yuan Zhou1, Jie Ding, Wing K Fung, Shili Lin.   

Abstract

Genomic imprinting is an important epigenetic factor in complex traits study, which has generally been examined by testing for parent-of-origin effects of alleles. For a diallelic marker locus, the parental-asymmetry test (PAT) based on case-parents trios and its extensions to incomplete nuclear families (1-PAT and C-PAT) are simple and powerful for detecting parent-of-origin effects. However, these methods are suitable only for nuclear families and thus are not amenable to general pedigree data. Use of data from extended pedigrees, if available, may lead to more powerful methods than randomly selecting one two-generation nuclear family from each pedigree. In this study, we extend PAT to accommodate general pedigree data by proposing the pedigree PAT (PPAT) statistic, which uses all informative family trios from pedigrees. To fully utilize pedigrees with some missing genotypes, we further develop the Monte Carlo (MC) PPAT (MCPPAT) statistic based on MC sampling and estimation. Extensive simulations were carried out to evaluate the performance of the proposed methods. Under the assumption that the pedigrees and their associated affection patterns are randomly drawn from a population of pedigrees with at least one affected offspring, we demonstrated that MCPPAT is a valid test for parent-of-origin effects in the presence of association. Further, MCPPAT is much more powerful compared to PAT for trios or even PPAT for all informative family trios from the same pedigrees if there is missing data. Application of the proposed methods to a rheumatoid arthritis dataset further demonstrates the advantage of MCPPAT. 2009 Wiley-Liss, Inc.

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Year:  2010        PMID: 19676055      PMCID: PMC3011930          DOI: 10.1002/gepi.20445

Source DB:  PubMed          Journal:  Genet Epidemiol        ISSN: 0741-0395            Impact factor:   2.135


  16 in total

1.  Methods for detection of parent-of-origin effects in genetic studies of case-parents triads.

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2.  Parametric and nonparametric multipoint linkage analysis with imprinting and two-locus-trait models: application to mite sensitization.

Authors:  K Strauch; R Fimmers; T Kurz; K A Deichmann; T F Wienker; M P Baur
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Review 3.  Genomic imprinting: implications for human disease.

Authors:  J G Falls; D J Pulford; A A Wylie; R L Jirtle
Journal:  Am J Pathol       Date:  1999-03       Impact factor: 4.307

4.  Possible genomic imprinting of three human obesity-related genetic loci.

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Journal:  Am J Hum Genet       Date:  2005-01-12       Impact factor: 11.025

5.  Power calculations for likelihood ratio tests for offspring genotype risks, maternal effects, and parent-of-origin (POO) effects in the presence of missing parental genotypes when unaffected siblings are available.

Authors:  E Rampersaud; R W Morris; C R Weinberg; M C Speer; E R Martin
Journal:  Genet Epidemiol       Date:  2007-01       Impact factor: 2.135

6.  Maternal effects as the cause of parent-of-origin effects that mimic genomic imprinting.

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7.  An imprinted gene(s) for diabetes?

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9.  Whole-genome scan, in a complex disease, using 11,245 single-nucleotide polymorphisms: comparison with microsatellites.

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Journal:  Am J Hum Genet       Date:  2004-05-20       Impact factor: 11.025

10.  Data for Genetic Analysis Workshop (GAW) 15 Problem 2, genetic causes of rheumatoid arthritis and associated traits.

Authors:  Christopher I Amos; Wei Vivien Chen; Elaine Remmers; Katherine A Siminovitch; Michael F Seldin; Lindsey A Criswell; Annette T Lee; Sally John; Neil D Shephard; Jane Worthington; Francois Cornelis; Robert M Plenge; Ann B Begovich; Thomas D Dyer; Daniel L Kastner; Peter K Gregersen
Journal:  BMC Proc       Date:  2007-12-18
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Authors:  Alejandro A Schäffer; Mathieu Lemire; Jürg Ott; G Mark Lathrop; Daniel E Weeks
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2.  A powerful association test for qualitative traits incorporating imprinting effects using general pedigree data.

Authors:  Ji-Yuan Zhou; Hai-Qiang He; Xiao-Ping You; Shao-Zhan Li; Ping-Yan Chen; Wing Kam Fung
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3.  Nonparametric method for detecting imprinting effect using all members of general pedigrees with missing data.

Authors:  Fangyuan Zhang; Shili Lin
Journal:  J Hum Genet       Date:  2014-08-14       Impact factor: 3.172

4.  Detection of parent-of-origin effects for quantitative traits using general pedigree data.

Authors:  Hai-Qiang He; Wei-Gao Mao; Dongdong Pan; Ji-Yuan Zhou; Ping-Yan Chen; Wing Kam Fung
Journal:  J Genet       Date:  2014-08       Impact factor: 1.166

5.  Detection of imprinting effects for hypertension based on general pedigrees utilizing all affected and unaffected individuals.

Authors:  Fangyuan Zhang; Shili Lin
Journal:  BMC Proc       Date:  2014-06-17

6.  A powerful parent-of-origin effects test for qualitative traits on X chromosome in general pedigrees.

Authors:  Qi-Lei Zou; Xiao-Ping You; Jian-Long Li; Wing Kam Fung; Ji-Yuan Zhou
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7.  Generalized disequilibrium test for association in qualitative traits incorporating imprinting effects based on extended pedigrees.

Authors:  Jian-Long Li; Peng Wang; Wing Kam Fung; Ji-Yuan Zhou
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