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Recommendations for Accurate Resolution of Gene and Isoform Allele-Specific Expression in RNA-Seq Data

机译:准确解析RNA-Seq数据中基因和同工型等位基因特异性表达的建议

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摘要

Genetic variation modulates gene expression transcriptionally or post-transcriptionally, and can profoundly alter an individual’s phenotype. Measuring allelic differential expression at heterozygous loci within an individual, a phenomenon called allele-specific expression (ASE), can assist in identifying such factors. Massively parallel DNA and RNA sequencing and advances in bioinformatic methodologies provide an outstanding opportunity to measure ASE genome-wide. In this study, matched DNA and RNA sequencing, genotyping arrays and computationally phased haplotypes were integrated to comprehensively and conservatively quantify ASE in a single human brain and liver tissue sample. We describe a methodological evaluation and assessment of common bioinformatic steps for ASE quantification, and recommend a robust approach to accurately measure SNP, gene and isoform ASE through the use of personalized haplotype genome alignment, strict alignment quality control and intragenic SNP aggregation. Our results indicate that accurate ASE quantification requires careful bioinformatic analyses and is adversely affected by sample specific alignment confounders and random sampling even at moderate sequence depths. We identified multiple known and several novel ASE genes in liver, including WDR72, DSP and UBD, as well as genes that contained ASE SNPs with imbalance direction discordant with haplotype phase, explainable by annotated transcript structure, suggesting isoform derived ASE. The methods evaluated in this study will be of use to researchers performing highly conservative quantification of ASE, and the genes and isoforms identified as ASE of interest to researchers studying those loci.
机译:遗传变异通过转录或转录后调控基因表达,并可以深刻改变个体的表型。测量个体内杂合基因座处的等位基因差异表达(一种称为等位基因特异性表达(ASE)的现象)可以帮助识别此类因素。大规模平行的DNA和RNA测序以及生物信息学方法学的进步提供了一个在整个ASE基因组范围内进行测量的绝好机会。在这项研究中,整合了匹配的DNA和RNA测序,基因分型阵列和计算阶段性单倍型,以在单个人脑和肝脏组织样本中全面且保守地定量ASE。我们描述了用于ASE定量的常见生物信息学步骤的方法学评估和评估,并推荐了通过使用个性化单体型基因组比对,严格的比对质量控制和基因内SNP聚合来准确测量SNP,基因和同工型ASE的可靠方法。我们的结果表明,准确的ASE定量需要仔细的生物信息学分析,并且即使在中等深度的序列中,也受样品特异性比对混杂物和随机采样的不利影响。我们鉴定了肝脏中多个已知的和几个新的ASE基因,包括WDR72,DSP和UBD,以及含有不平衡方向与单倍型相不一致的ASE SNP的基因,这可以通过注释的转录本结构来解释,表明同工型衍生的ASE。在这项研究中评估的方法将对进行ASE的高度保守定量研究的研究人员有用,对于研究这些基因座的研究人员而言,鉴定为ASE的基因和同工型将是有用的。

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