LBPO.BCS02 · 生物信息与计算 · Late-Breaking

极端基因表达在癌症中普遍存在且具有功能性

Extreme gene expression is widespread and functional in cancer

海报缩略图:极端基因表达在癌症中普遍存在且具有功能性
编号 LB437 展板 5 时间 4/22 09:00–12:00 区域 Section 52 主讲 Jee Yun Han, MS;PhD
分会场 Late-Breaking Research: Bioinformatics, Computational Biology, Systems Biology, and Convergent Science 2
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作者与单位 Authors & Affiliations

Jee Yun Han1, Yash Patel1, Paul Boutros1, Jaron Arbet2, John Sahrmann, John M. 3, Julie Livingstone3, Nick Wiltsie3, Stefan Eng3, Zhuyu Qiu3, James Evans3, Amaan Jogia-Sattar3

1Sanford Burnham Prebys Med. Discovery Inst., La Jolla, CA,2City of Hope - Beckman Research Institute, Duarte, CA,3University of California, Los Angeles, Los Angeles, CA

摘要 Abstract

中文摘要
癌症在多样化的选择压力下演化,其特征为基因表达的广泛失调。转录组研究传统上依赖于预先定义的患者组之间的差异表达分析,以识别与特定临床或分子表型相关的基因。然而,癌症还表现出罕见的、极端的基因表达状态(XEGs),相对于细胞或个体群体呈现为离群值。我们使用一种新颖的离群检测算法OutSeekR,对来自多个独立队列的7,019例乳腺肿瘤进行了极端基因表达的全面分析。XEGs出人意料地常见,约四分之三的肿瘤携带至少一个XEG。XEGs的频率因分子亚型而有显著差异,更具侵袭性的亚型每例肿瘤所含XEGs数量显著高于侵袭性较低的亚型。这些差异在特定分子亚型内与患者生存相关。XEGs在中心法则的多个层面被观察到。RNA XEGs在配对的质谱和反相蛋白阵列数据中于蛋白水平得到反映,且约半数XEGs与潜在的体细胞突变、拷贝数改变或异常的启动子DNA甲基化相关。在患者肿瘤中鉴定出的XEGs在癌症细胞系中也得到重现,从而支持功能性研究。使用CRISPR或RNA干扰对XEG相关基因进行遗传扰动,以及药理学抑制,可选择性地降低携带相应XEG的细胞系中癌细胞的适应度,但在不携带者中则否。总之,这些结果表明极端基因表达在乳腺癌中很常见,可赋予肿瘤细胞选择性优势,并可能代表一类此前未被充分认识的可靶向脆弱性。
查看英文原文 English abstract
Cancer evolves under diverse selective pressures and is characterized by widespread dysregulation of gene expression. Transcriptomic studies have traditionally relied on differential expression analyses between predefined patient groups to identify genes associated with specific clinical or molecular phenotypes. However, cancers also exhibit rare, extreme gene expression states (XEGs) that appear as outliers relative to a population of cells or individuals. Using a novel outlier detection algorithm, OutSeekR, we performed a comprehensive analysis of extreme gene expression across 7,019 breast tumours from multiple independent cohorts. XEGs were unexpectedly common, with approximately three quarters of tumours harbouring at least one XEG. The frequency of XEGs varied substantially by molecular subtype, with more aggressive subtypes exhibiting significantly higher numbers of XEGs per tumour compared to less aggressive subtypes. These differences were associated with patient survival within specific molecular subtypes. XEGs were observed across multiple layers of the central dogma. RNA XEGs were reflected at the protein level in matched mass spectrometry and reverse phase protein array data, and approximately half of XEGs were associated with underlying somatic mutations, copy number alterations, or aberrant promoter DNA methylation. XEGs identified in patient tumours were also recapitulated in cancer cell lines, enabling functional interrogation. Genetic perturbation of XEG-associated genes using CRISPR or RNA interference, as well as pharmacologic inhibition, selectively reduced cancer cell fitness in cell lines harbouring the corresponding XEG, but not in those without. Together, these results demonstrate that extreme gene expression is common in breast cancer, can confer a selective advantage to tumour cells, and may represent a previously underappreciated class of targetable vulnerabilities.
利益披露 Disclosure
J. Han, None.. Y. Patel, None.. P. Boutros, None.. J. Arbet, None.. J. Sahrmann, John M. , None.. J. Livingstone, None.. N. Wiltsie, None.. S. Eng, None.. Z. Qiu, None.. J. Evans, None.. A. Jogia-Sattar, None.

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