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骨未分化多形性肉瘤的基因组和转录组特征。

Genomic and transcriptomic characterisation of undifferentiated pleomorphic sarcoma of bone.

机构信息

Institute of Cancer and Genomic Sciences, College of Medical and Dental Sciences, University of Birmingham, Birmingham, UK.

Laboratory of Biotechnological Applications, IRCCS Istituto Ortopedico Galeazzi, Milan, Italy.

出版信息

J Pathol. 2019 Feb;247(2):166-176. doi: 10.1002/path.5176. Epub 2018 Dec 27.

Abstract

Undifferentiated pleomorphic sarcoma of bone (UPSb) is a rare primary bone sarcoma that lacks a specific line of differentiation. There is very little information about the genetic alterations leading to tumourigenesis or malignant transformation. Distinguishing between UPSb and other malignant bone sarcomas, including dedifferentiated chondrosarcoma and osteosarcoma, can be challenging due to overlapping features. To explore the genomic and transcriptomic landscape of UPSb tumours, whole-exome sequencing (WES) and RNA sequencing (RNA-Seq) were performed on UPSb tumours. All tumours lacked hotspot mutations in IDH1/2 132 or 172 codons, thereby excluding the diagnosis of dedifferentiated chondrosarcoma. Recurrent somatic mutations in TP53 were identified in four of 14 samples (29%). Moreover, recurrent mutations in histone chromatin remodelling genes, including H3F3A, ATRX and DOT1L, were identified in five of 14 samples (36%), highlighting the potential role of deregulated chromatin remodelling pathways in UPSb tumourigenesis. The majority of recurrent mutations in chromatin remodelling genes identified here are reported in COSMIC, including the H3F3A G34 and K36 hotspot residues. Copy number alteration analysis identified gains and losses in genes that have been previously altered in UPSb or UPS of soft tissue. Eight somatic gene fusions were identified by RNA-Seq, two of which, CLTC-VMP1 and FARP1-STK24, were reported previously in multiple cancers. Five gene fusions were genomically characterised. Hierarchical clustering analysis, using RNA-Seq data, distinctly clustered UPSb tumours from osteosarcoma and other sarcomas, thus molecularly distinguishing UPSb from other sarcomas. RNA-Seq expression profiling analysis and quantitative reverse transcription-polymerase chain reaction showed an elevated expression in FGF23, which can be a potential molecular biomarker for UPSb. To our knowledge, this study represents the first comprehensive WES and RNA-Seq analysis of UPSb tumours revealing novel protein-coding recurrent gene mutations, gene fusions and identifying a potential UPSb molecular biomarker, thereby broadening the understanding of the pathogenic mechanisms and highlighting the possibility of developing novel targeted therapeutics. Copyright © 2018 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.

摘要

骨未分化多形性肉瘤(UPSb)是一种罕见的原发性骨肉瘤,缺乏特定的分化谱系。关于导致肿瘤发生或恶性转化的遗传改变的信息很少。由于具有重叠特征,因此区分 UPSb 和其他恶性骨肉瘤,包括去分化软骨肉瘤和骨肉瘤,具有一定挑战性。为了探索 UPSb 肿瘤的基因组和转录组景观,对 UPSb 肿瘤进行了全外显子组测序(WES)和 RNA 测序(RNA-Seq)。所有肿瘤均缺乏 IDH1/2 132 或 172 密码子的热点突变,从而排除了去分化软骨肉瘤的诊断。在 14 个样本中的 4 个(29%)中鉴定出 TP53 的反复性体细胞突变。此外,在 14 个样本中的 5 个(36%)中鉴定出组蛋白染色质重塑基因的反复突变,包括 H3F3A、ATR 和 DOT1L,这突出了失调的染色质重塑途径在 UPSb 肿瘤发生中的潜在作用。此处鉴定的染色质重塑基因中的大多数反复突变在 COSMIC 中均有报道,包括 H3F3A G34 和 K36 热点残基。拷贝数改变分析鉴定出在 UPSb 或软组织 UPS 中先前改变的基因的增益和缺失。通过 RNA-Seq 鉴定了 8 个体细胞基因融合,其中 2 个,CLTC-VMP1 和 FARP1-STK24,在多种癌症中均有报道。对 5 个基因融合进行了基因组特征分析。使用 RNA-Seq 数据进行的层次聚类分析将 UPSb 肿瘤与骨肉瘤和其他肉瘤明显聚类,从而在分子水平上将 UPSb 与其他肉瘤区分开来。RNA-Seq 表达谱分析和定量逆转录聚合酶链反应显示 FGF23 的表达升高,FGF23 可能是 UPSb 的潜在分子生物标志物。据我们所知,本研究代表了 UPSb 肿瘤的首次全面 WES 和 RNA-Seq 分析,揭示了新的蛋白质编码反复基因突变、基因融合,并确定了潜在的 UPSb 分子生物标志物,从而扩大了对发病机制的理解,并突出了开发新型靶向治疗的可能性。版权所有©2018 英国和爱尔兰病理学学会。由 John Wiley & Sons,Ltd. 出版

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