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hiPS 细胞衍生神经嵴细胞中 MYCN 扩增与 TP53 突变骨肉瘤模型的建立

英文原题:Development of an osteosarcoma model with MYCN amplification and TP53 mutation in hiPS cell-derived neural crest cells.

查看英文原题

Development of an osteosarcoma model with MYCN amplification and TP53 mutation in hiPS cell-derived neural crest cells.

PubMed 2023/02/03(内容时间) Cancer Sci Q2 · IF 4.9(JCR 2025)

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中文摘要

间充质干细胞或成骨细胞来源的骨肉瘤是最常见的恶性骨肿瘤。其高度转移的恶性表型通常与不良预后相关,并与TP53及细胞周期相关通路的调控有关。MYC调控细胞周期调节基因的转录,被用作骨肉瘤的代表性预后标志物。MYC癌蛋白家族的另一个成员MYCN在一部分骨肉瘤中高表达,但其在骨肉瘤中的作用尚未完全阐明。

在此,我们尝试利用hiPSC来源的神经嵴细胞(间充质干细胞的前体),在杂合TP53热点突变(c.733G>A; p.G245S)背景下过表达MYCN,建立体外肿瘤发生模型。通过软琼脂集落形成法分离出表达MYCN的TP53突变转化克隆,并将其皮下注射到免疫缺陷小鼠的肾上腺周围脂肪组织中,导致软骨母细胞型骨肉瘤的发生。MYCN抑制降低了MYCN诱导的骨肉瘤细胞的增殖,提示MYCN可作为一部分骨肉瘤治疗的潜在靶点。

此外,对MYCN诱导克隆的基因表达综合分析和外显子组测序显示了骨肉瘤特异性分子特征,如TGF-信号通路的激活和GLI1的DNA拷贝数扩增。该表达MYCN的软骨母细胞型骨肉瘤模型由hiPSC来源的神经嵴细胞建立,为利用hiPSC来源的祖细胞通过基因修饰和体外转化开发新肿瘤模型提供了有用的工具。

展开英文摘要原文

Mesenchymal stem cell- or osteoblast-derived osteosarcoma is the most common malignant bone tumor. Its highly metastatic malignant phenotypes, which are often associated with a poor prognosis, have been correlated with the modulation of TP53- and cell-cycle-related pathways.

MYC, which regulates the transcription of cell-cycle modulating genes, is used as a representative prognostic marker for osteosarcoma. Another member of the MYC oncoprotein family, MYCN, is highly expressed in a subset of osteosarcoma, however its roles in osteosarcoma have not been fully elucidated.

Here, we attempted to create an in vitro tumorigenesis model using hiPSC-derived neural crest cells, which are precursors of mesenchymal stem cells, by overexpressing MYCN on a heterozygous TP53 hotspot mutation (c. 733G>A; p. G245S) background.

MYCN-expressing TP53 mutated transformed clones were isolated by soft agar colony formation, and administered subcutaneously into the periadrenal adipose tissue of immunodeficient mice, resulting in the development of chondroblastic osteosarcoma. MYCN suppression decreased the proliferation of MYCN-induced osteosarcoma cells, suggesting MYCN as a potential target for a subset of osteosarcoma treatment.

Further, comprehensive analysis of gene expression and exome sequencing of MYCN-induced clones indicated osteosarcoma-specific molecular features, such as the activation of TGF- signaling and DNA copy number amplification of GLI1. The model of MYCN-expressing chondroblastic osteosarcoma was developed from hiPSC-derived neural crest cells, providing a useful tool for the development of new tumor models using hiPSC-derived progenitor cells with gene modifications and in vitro transformation.

论文信息

作者
Mukae K、Takenobu H、Endo Y、Haruta M、Shi T、Satoh S、Ohira M、Funato M
单位
Research Institute for Clinical Oncology, Saitama Cancer Center, Saitama, Japan.Japan
期刊
Cancer science2023 May
原文标识
PubMed 36661413 · DOI 10.1111/cas.15730