RAS isoform specific activities are disrupted by disease associated mutations during cell differentiation

IF 4.5 3区 生物学 Q2 CELL BIOLOGY
Rohan Chippalkatti , Bianca Parisi , Farah Kouzi, Christina Laurini, Nesrine Ben Fredj, Daniel Kwaku Abankwa
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引用次数: 0

Abstract

The RAS-MAPK-pathway is aberrantly regulated in cancer and developmental diseases called RASopathies. While typically the impact of Ras on the proliferation of various cancer cell lines is assessed, it is poorly established how Ras affects cellular differentiation. Here we implement the C2C12 myoblast cell line to systematically study the effect of Ras mutants and Ras-pathway drugs on differentiation. We first provide evidence that a minor pool of Pax7+ progenitors replenishes a major pool of transit amplifying cells that are ready to differentiate. Our data indicate that Ras isoforms have distinct roles in the differentiating culture, where K-Ras depletion increases and H-Ras depletion decreases terminal differentiation. This assay could therefore provide significant new insights into Ras biology and Ras-driven diseases. In line with this, we found that all oncogenic Ras mutants block terminal differentiation of transit amplifying cells. By contrast, RASopathy associated K-Ras variants were less able to block differentiation. Profiling of eight targeted Ras-pathway drugs on seven oncogenic Ras mutants revealed their allele-specific activities and distinct abilities to restore normal differentiation as compared to triggering cell death. In particular, the MEK-inhibitor trametinib could broadly restore differentiation, while the mTOR-inhibitor rapamycin broadly suppressed differentiation. We expect that this quantitative assessment of the impact of Ras-pathway mutants and drugs on cellular differentiation has great potential to complement cancer cell proliferation data.

在细胞分化过程中,与疾病相关的突变会破坏 RAS 同工酶的特异性活动
在癌症和被称为 RAS 病的发育疾病中,RAS-MAPK 通路受到异常调控。虽然人们通常会评估 Ras 对各种癌细胞系增殖的影响,但对 Ras 如何影响细胞分化却知之甚少。在这里,我们利用 C2C12 成肌细胞系来系统研究 Ras 突变体和 Ras 通路药物对分化的影响。我们首先提供的证据表明,Pax7+祖细胞的小池补充了准备分化的转运扩增细胞的大池。我们的数据表明,Ras 同工酶在分化培养过程中具有不同的作用,其中 K-Ras 缺失会增加终端分化,而 H-Ras 缺失会减少终端分化。因此,这种检测方法能为 Ras 生物学和 Ras 驱动的疾病提供重要的新见解。与此相一致,我们发现所有致癌的 Ras 突变体都会阻碍转运扩增细胞的终末分化。相比之下,与RAS病相关的K-Ras变体阻断分化的能力较弱。对七种致癌Ras突变体的八种Ras通路靶向药物进行的分析表明,这些药物具有等位基因特异性活性,与引发细胞死亡相比,它们在恢复正常分化方面具有不同的能力。其中,MEK抑制剂曲美替尼可广泛恢复分化,而mTOR抑制剂雷帕霉素则可广泛抑制分化。我们预计,这种定量评估Ras通路突变体和药物对细胞分化影响的方法极有可能补充癌细胞增殖数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
European journal of cell biology
European journal of cell biology 生物-细胞生物学
CiteScore
7.30
自引率
1.50%
发文量
80
审稿时长
38 days
期刊介绍: The European Journal of Cell Biology, a journal of experimental cell investigation, publishes reviews, original articles and short communications on the structure, function and macromolecular organization of cells and cell components. Contributions focusing on cellular dynamics, motility and differentiation, particularly if related to cellular biochemistry, molecular biology, immunology, neurobiology, and developmental biology are encouraged. Manuscripts describing significant technical advances are also welcome. In addition, papers dealing with biomedical issues of general interest to cell biologists will be published. Contributions addressing cell biological problems in prokaryotes and plants are also welcome.
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