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Genomic and transcriptomic analysis of pituitary adenomas reveals the impacts of copy number variations on gene expression and clinical prognosis among prolactin-secreting subtype

机译:垂体腺瘤的基因组和转录组分析显示拷贝数变异对催乳素分泌亚型基因表达和临床预后的影响

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摘要

Pituitary adenomas (PAs) are slow growing and benign primary intracranial tumors that often cause occupying effects or endocrine symptoms. PAs can be classified into various subtypes according to hormone secretion. Although widespread transcriptional alterations that cause aberrant hormone secretion have been characterized, the impact of genomic variations on transcriptional alterations is unclear due to the rare occurrence of single-nucleotide variations in PA. In this study, we performed whole-genome sequencing (WGS) on 76 PA samples across three clinical subtypes (PRL-PAs; GH-PAs, and NFPAs); transcriptome sequencing (RNA-seq) of 54 samples across these subtypes was also conducted. Nine normal pituitary tissues were used as controls. Common and subtype-specific transcriptional alterations in PAs were identified. Strikingly, widespread genomic copy number amplifications were discovered for PRL-PAs, which are causally involved in transcriptomic changes in this subtype. Moreover, we found that the high copy number variations (CNVs) in PRL-PA cause increased prolactin production, drug resistance and proliferative capacity, potentially through key genes with copy number amplification and transcriptional activation, such as BCAT1. This study provides insight into how genomic CNVs affect the transcriptome and clinical outcomes of PRL-PA and sheds light on the development of potential therapeutics for aberrantly activated targets.
机译:垂体腺瘤(PAS)缓慢生长和良性原发性颅内肿瘤,通常导致占据效应或内分泌症状。根据激素分泌,PA可以分为各种亚型。尽管已经表征了引起异常激素分泌的广泛转录改变,但由于PA的罕见发生单核苷酸变化,基因组变异对转录改变的影响尚不清楚。在这项研究中,我们在三个临床亚型(PRL-PAS; GH-PAS和NFPA)上进行了全基因组测序(WGS)。还进行了在这些亚型上的54个样品的转录体测序(RNA-SEQ)。用九个正常脑垂体组织作为对照。鉴定了PAS中的常见和亚型特异性转录改变。尖锐的是,对于PRL-PAS发现了广泛的基因组拷贝数扩增,其因转发组的转录组变化而导致该亚型。此外,我们发现,PRL-PA中的高拷贝数变化(CNV)导致催乳素产生,耐药性和增殖能力增加,可能通过具有拷贝数扩增和转录激活的关键基因,例如BCAT1。本研究提供了介绍基因组CNV如何影响PRL-PA的转录组和临床结果,并揭示了潜在治疗的潜在治疗靶标的潜在治疗。

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