与拷贝数变异相关的基因表达调节确定了高级别浆液性卵巢癌的关键调控程序

Martina Vescio , Lara Paracchini , Luca Beltrame , Maurizio D’Incalci , Sergio Marchini , Linda Pattini
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引用次数: 0

摘要

高级别浆液性卵巢癌(HGSOC)是一种全身性恶性肿瘤,其特征是转移病变在腹膜腔内扩散。尽管最初对铂类化疗敏感,但超过80%的患者复发并获得化疗耐药。从基因组的角度来看,HGSOC表现出高度的肿瘤间和肿瘤内异质性。更好地了解这种疾病的分子机制和识别驱动基因改变可以为诊断和预后评估提供相关的适应症。在这里,我们完成了一项双层组学分析,通过整合拷贝数变异数据和匹配的基因表达谱,在7名患者的队列中多个病变。我们确定了包含在扩增区域的潜在驱动基因,其行为似乎影响基因表达程序。它们代表了一种独特的特征,可以区分不同患者的活检。此外,进一步的分析强调ZNF696、ASPSCR1和RHPN1是关键驱动因素,其调控程序在TCGA队列中得到证实。综上所述,通过整合来自7例患者的空间分离样本的拷贝数和转录组数据,探索HSGOC中的基因表达程序,鉴定出扩增与特定基因表达模块显著相关并与生存相关的基因。
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Modulation of gene expression associated with copy number variation identifies key regulatory programs in high-grade serous ovarian carcinoma

High grade serous ovarian carcinoma (HGSOC) is a systemic malignancy characterized by metastatic lesions that spread within the peritoneal cavity. Despite initial sensibility to platinum-based chemotherapy, more than 80% of patients experience a relapse and acquire chemoresistance. From a genomic point of view, HGSOC shows a high level of inter- and intra-tumor heterogeneity. A better understanding of molecular mechanisms of this disease and the identification of driving genetic alterations could provide relevant indications for diagnostic and prognostic evaluation. Here, we accomplished a double-tier omic-analysis by integrating copy number variation data with matched gene expression profiling of multiple lesions in a cohort of 7 patients. We identified potential driver genes contained in amplified regions whose behavior seem to impact on gene expression program. They represent a distinctive signature that can segregate biopsies of different patients. Moreover, a further analysis highlighted ZNF696, ASPSCR1 and RHPN1 as key drivers, whose regulatory program is confirmed in TCGA cohort. In conclusion, exploration of gene expression program in HSGOC by integrating copy number and transcriptomic data from spatially separated samples obtained from seven patients led to the identification of genes whose amplification is significantly correlated to specific gene expression modules and are related to survival.

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来源期刊
Advances in cancer biology - metastasis
Advances in cancer biology - metastasis Cancer Research, Oncology
CiteScore
2.40
自引率
0.00%
发文量
0
审稿时长
103 days
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