Pancan-MNVQTLdb: systematic identification of multi-nucleotide variant quantitative trait loci in 33 cancer types.

NAR Cancer Pub Date : 2022-12-01 DOI:10.1093/narcan/zcac043
Dongyang Wang, Wen Cao, Wenqian Yang, Weiwei Jin, Haohui Luo, Xiaohui Niu, Jing Gong
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Abstract

Multi-nucleotide variants (MNVs) are defined as clusters of two or more nearby variants existing on the same haplotype in an individual. Recent studies have identified millions of MNVs in human populations, but their functions remain largely unknown. Numerous studies have demonstrated that single-nucleotide variants could serve as quantitative trait loci (QTLs) by affecting molecular phenotypes. Therefore, we propose that MNVs can also affect molecular phenotypes by influencing regulatory elements. Using the genotype data from The Cancer Genome Atlas (TCGA), we first identified 223 759 unique MNVs in 33 cancer types. Then, to decipher the functions of these MNVs, we investigated the associations between MNVs and six molecular phenotypes, including coding gene expression, miRNA expression, lncRNA expression, alternative splicing, DNA methylation and alternative polyadenylation. As a result, we identified 1 397 821 cis-MNVQTLs and 402 381 trans-MNVQTLs. We further performed survival analysis and identified 46 173 MNVQTLs associated with patient overall survival. We also linked the MNVQTLs to genome-wide association studies (GWAS) data and identified 119 762 MNVQTLs that overlap with existing GWAS loci. Finally, we developed Pancan-MNVQTLdb (http://gong_lab.hzau.edu.cn/mnvQTLdb/) for data retrieval and download. Pancan-MNVQTLdb will help decipher the functions of MNVs in different cancer types and be an important resource for genetic and cancer research.

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panan - mnvqtldb: 33种癌症多核苷酸变异数量性状位点的系统鉴定。
多核苷酸变异(Multi-nucleotide variant, mnv)是指个体中存在于同一单倍型上的两个或多个邻近变异的集群。最近的研究已经在人群中发现了数以百万计的mnv,但它们的功能在很大程度上仍然未知。大量研究表明,单核苷酸变异可以通过影响分子表型作为数量性状位点(qtl)。因此,我们提出mnv也可以通过影响调控元件来影响分子表型。利用来自癌症基因组图谱(TCGA)的基因型数据,我们首先在33种癌症类型中鉴定出223 759个独特的mnv。然后,为了破译这些mnv的功能,我们研究了mnv与六种分子表型之间的关系,包括编码基因表达、miRNA表达、lncRNA表达、选择性剪接、DNA甲基化和选择性聚腺苷化。结果,我们鉴定出1 397 821个顺式mnvqtl和402 381个反式mnvqtl。我们进一步进行了生存分析,确定了46 173个与患者总生存相关的mnvqtl。我们还将mnvqtl与全基因组关联研究(GWAS)数据联系起来,鉴定出119762个mnvqtl与现有的GWAS位点重叠。最后,我们开发了Pancan-MNVQTLdb (http://gong_lab.hzau.edu.cn/mnvQTLdb/),用于数据检索和下载。panan - mnvqtldb将有助于破译mnv在不同癌症类型中的功能,并成为遗传和癌症研究的重要资源。
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