Integrating somatic CNV and gene expression in breast cancers from women with PTEN hamartoma tumor syndrome.

IF 4.7 2区 医学 Q1 GENETICS & HEREDITY
Takae Brewer, Lamis Yehia, Peter Bazeley, Charis Eng
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Abstract

Women with germline PTEN variants (PTEN hamartoma tumor syndrome, PHTS) have up to 85% lifetime risk of female breast cancer (BC). We previously showed that PHTS-derived BCs are distinct from sporadic BCs both at the clinical and genomic levels. In this study, we examined somatic copy number variations (CNV) and transcriptome data to further characterize the somatic landscape of PHTS-derived BCs. We analyzed exome sequencing data from 44 BCs from women with PHTS for CNV. The control group comprised of 558 women with sporadic BCs from The Cancer Genome Atlas (TCGA) dataset. Here, we found that PHTS-derived BCs have several distinct CNV peaks compared to TCGA. Furthermore, RNA sequencing data revealed that PHTS-derived BCs have a distinct immunologic cell type signature, which points toward cancer immune evasion. Transcriptomic data also revealed PHTS-derived BCs with pathogenic germline PTEN variants appear to have vitamin E degradation as a key pathway associated with tumorigenesis. In conclusion, our study revealed distinct CNV x transcript features in PHTS-derived BCs, which further facilitate understanding of BC biology arising in the setting of germline PTEN mutations.

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整合PTEN错构瘤综合征女性乳腺癌的体细胞CNV和基因表达。
患有种系PTEN变异(PTEN错构瘤肿瘤综合征,PHTS)的女性一生中患女性乳腺癌(BC)的风险高达85%。我们之前的研究表明,在临床和基因组水平上,phts衍生的bc与散发性bc不同。在这项研究中,我们检查了体细胞拷贝数变异(CNV)和转录组数据,以进一步表征phts衍生的bc的体细胞景观。我们分析了来自PHTS女性的44个bc的外显子组测序数据。对照组由来自癌症基因组图谱(TCGA)数据集的558名散发性bc女性组成。在这里,我们发现与TCGA相比,phts衍生的bc有几个不同的CNV峰值。此外,RNA测序数据显示,phts衍生的bc具有独特的免疫细胞类型特征,这表明癌症免疫逃避。转录组学数据还显示,具有致病性种系PTEN变异的phts来源的bc似乎具有维生素E降解,这是与肿瘤发生相关的关键途径。总之,我们的研究揭示了phts衍生的BC中不同的CNV x转录物特征,这进一步促进了对种系PTEN突变背景下BC生物学的理解。
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来源期刊
NPJ Genomic Medicine
NPJ Genomic Medicine Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
9.40
自引率
1.90%
发文量
67
审稿时长
17 weeks
期刊介绍: npj Genomic Medicine is an international, peer-reviewed journal dedicated to publishing the most important scientific advances in all aspects of genomics and its application in the practice of medicine. The journal defines genomic medicine as "diagnosis, prognosis, prevention and/or treatment of disease and disorders of the mind and body, using approaches informed or enabled by knowledge of the genome and the molecules it encodes." Relevant and high-impact papers that encompass studies of individuals, families, or populations are considered for publication. An emphasis will include coupling detailed phenotype and genome sequencing information, both enabled by new technologies and informatics, to delineate the underlying aetiology of disease. Clinical recommendations and/or guidelines of how that data should be used in the clinical management of those patients in the study, and others, are also encouraged.
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