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Screening for SNPs with Allele-Specific Methylation based on Next-Generation Sequencing Data.


ABSTRACT: Allele-specific methylation (ASM) has long been studied but mainly documented in the context of genomic imprinting and X chromosome inactivation. Taking advantage of the next-generation sequencing technology, we conduct a high-throughput sequencing experiment with four prostate cell lines to survey the whole genome and identify single nucleotide polymorphisms (SNPs) with ASM. A Bayesian approach is proposed to model the counts of short reads for each SNP conditional on its genotypes of multiple subjects, leading to a posterior probability of ASM. We flag SNPs with high posterior probabilities of ASM by accounting for multiple comparisons based on posterior false discovery rates. Applying the Bayesian approach to the in-house prostate cell line data, we identify 269 SNPs as candidates of ASM. A simulation study is carried out to demonstrate the quantitative performance of the proposed approach.

SUBMITTER: Hu B 

PROVIDER: S-EPMC3661303 | biostudies-literature | 2013 May

REPOSITORIES: biostudies-literature

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Screening for SNPs with Allele-Specific Methylation based on Next-Generation Sequencing Data.

Hu Bo B   Ji Yuan Y   Xu Yaomin Y   Ting Angela H AH  

Statistics in biosciences 20130501 1


Allele-specific methylation (ASM) has long been studied but mainly documented in the context of genomic imprinting and X chromosome inactivation. Taking advantage of the next-generation sequencing technology, we conduct a high-throughput sequencing experiment with four prostate cell lines to survey the whole genome and identify single nucleotide polymorphisms (SNPs) with ASM. A Bayesian approach is proposed to model the counts of short reads for each SNP conditional on its genotypes of multiple  ...[more]

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