FGFR1 融合是横纹肌肉瘤的新型分子驱动因素

IF 3.1 2区 医学 Q2 GENETICS & HEREDITY Genes, Chromosomes & Cancer Pub Date : 2024-04-12 DOI:10.1002/gcc.23232
Henry de Traux De Wardin, Joanna Cyrta, Josephine K. Dermawan, Delphine Guillemot, Daniel Orbach, Isabelle Aerts, Gaelle Pierron, Cristina R. Antonescu
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引用次数: 0

摘要

RNA 测序技术在临床实践中的广泛应用使得新型融合基因的发现成为可能,这有助于完善横纹肌肉瘤(RMS)的分子分类。横纹肌肉瘤中的大多数融合基因会导致转录因子异常,如肺泡横纹肌肉瘤(ARMS)中的 PAX3/7::FOXO1,以及婴儿纺锤形细胞横纹肌肉瘤中涉及 VGLL2 或 NCOA2 的融合基因。然而,在 RMS 中,驱动致癌激酶激活的复发性融合尚未见报道。一个未分类的RMS病例(特征与ARMS和硬化性RMS重叠)伴有新型FGFR1::ANK1融合,触发了我们的研究,我们查阅了我们的分子档案,寻找携带FGFR1相关融合的病例。另外一例FGFR1::TACC1融合病例是在一种类似胚胎性RMS(ERMS)的无细胞增生肿瘤中发现的,但在种系检测中没有发现TP53或DICER1的致病变异。两例病例均为男性,年龄分别为 7 岁和 24 岁,均发生在骨盆。第 2 例病例还存在其他变异,包括体细胞 TP53 和 TET2 突变。通过 RNA 测序,还发现另外两例 RMS 病例(一例未分类,一例 ERMS)存在 FGFR1 过表达,但没有 FGFR1 融合。这两个病例和FGFR1::TACC1阳性病例通过RNAseq与ERMS组聚集在一起。这是首次报道RMS携带复发性FGFR1融合。然而,FGFR1融合是否定义了一种新的RMS亚型,或者这种改变是否会零星地驱动已知RMS亚型(如ERMS)的发病机制,目前仍不清楚。为了更好地进行亚分类,还需要更多整合了基因组学和表观遗传学数据集的大型系列研究,因为由此导致的致癌激酶激活凸显了靶向治疗的潜力。
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FGFR1 fusions as a novel molecular driver in rhabdomyosarcoma

The wide application of RNA sequencing in clinical practice has allowed the discovery of novel fusion genes, which have contributed to a refined molecular classification of rhabdomyosarcoma (RMS). Most fusions in RMS result in aberrant transcription factors, such as PAX3/7::FOXO1 in alveolar RMS (ARMS) and fusions involving VGLL2 or NCOA2 in infantile spindle cell RMS. However, recurrent fusions driving oncogenic kinase activation have not been reported in RMS. Triggered by an index case of an unclassified RMS (overlapping features between ARMS and sclerosing RMS) with a novel FGFR1::ANK1 fusion, we reviewed our molecular files for cases harboring FGFR1-related fusions. One additional case with an FGFR1::TACC1 fusion was identified in a tumor resembling embryonal RMS (ERMS) with anaplasia, but with no pathogenic variants in TP53 or DICER1 on germline testing. Both cases occurred in males, aged 7 and 24, and in the pelvis. The 2nd case also harbored additional alterations, including somatic TP53 and TET2 mutations. Two additional RMS cases (one unclassified, one ERMS) with FGFR1 overexpression but lacking FGFR1 fusions were identified by RNA sequencing. These two cases and the FGFR1::TACC1-positive case clustered together with the ERMS group by RNAseq. This is the first report of RMS harboring recurrent FGFR1 fusions. However, it remains unclear if FGFR1 fusions define a novel subset of RMS or alternatively, whether this alteration can sporadically drive the pathogenesis of known RMS subtypes, such as ERMS. Additional larger series with integrated genomic and epigenetic datasets are needed for better subclassification, as the resulting oncogenic kinase activation underscores the potential for targeted therapy.

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来源期刊
Genes, Chromosomes & Cancer
Genes, Chromosomes & Cancer 医学-遗传学
CiteScore
7.00
自引率
8.10%
发文量
94
审稿时长
4-8 weeks
期刊介绍: Genes, Chromosomes & Cancer will offer rapid publication of original full-length research articles, perspectives, reviews and letters to the editors on genetic analysis as related to the study of neoplasia. The main scope of the journal is to communicate new insights into the etiology and/or pathogenesis of neoplasia, as well as molecular and cellular findings of relevance for the management of cancer patients. While preference will be given to research utilizing analytical and functional approaches, descriptive studies and case reports will also be welcomed when they offer insights regarding basic biological mechanisms or the clinical management of neoplastic disorders.
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