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首页> 外文期刊>The Journal of biological chemistry >Selective Ablation of Tumor Suppressors in Parafollicular C Cells Elicits Medullary Thyroid Carcinoma
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Selective Ablation of Tumor Suppressors in Parafollicular C Cells Elicits Medullary Thyroid Carcinoma

机译:滤泡旁小细胞中肿瘤抑制子的选择性切除引发髓样甲状腺癌

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Among the four different types of thyroid cancer, treatment of medullary thyroid carcinoma poses a major challenge because of its propensity of early metastasis. To further investigate the molecular mechanisms of medullary thyroid carcinoma and discover candidates for targeted therapies, we developed a new mouse model of medullary thyroid carcinoma based on our CGRPCreER mouse line. This system enables gene manipulation in parafollicular C cells in the thyroid, the purported cells of origin of medullary thyroid carcinoma. Selective inactivation of tumor suppressors, such as p53, Rb, and Pten, in mature parafollicular C cells via an inducible Cre recombinase from CGRPCreER led to development of murine medullary thyroid carcinoma. Loss of Pten accelerated p53/Rb-induced medullary thyroid carcinoma, indicating interactions between pathways controlled by tumor suppressors. Moreover, labeling differentiated parafollicular C cells by CGRPCreER allows us to follow their fate during malignant transformation to medullary thyroid tumor. Our findings support a model in which mutational events in differentiated parafollicular C cells result in medullary thyroid carcinoma. Through expression analysis including RNA-Seq, we uncovered major signaling pathways and networks that are perturbed following the removal of tumor suppressors. Taken together, these studies not only increase our molecular understanding of medullary thyroid carcinoma but also offer new candidates for designing targeted therapies or other treatment modalities.
机译:在四种不同类型的甲状腺癌中,由于甲状腺髓样癌的早期转移倾向,其治疗面临着重大挑战。为了进一步研究甲状腺髓样癌的分子机制并发现靶向治疗的候选药物,我们基于CGRPCreER小鼠系开发了一种新型甲状腺髓样癌小鼠模型。该系统能够在甲状腺髓样癌的起源细胞即甲状腺的滤泡旁C细胞中进行基因操作。通过来自CGRPCreER的可诱导Cre重组酶在成熟的滤泡旁C细胞中选择性抑制肿瘤抑制物(如p53,Rb和Pten)导致小鼠甲状腺髓样癌的发展。 Pten的丢失加速了p53 / Rb诱导的甲状腺髓样癌,表明肿瘤抑制因子控制的通路之间存在相互作用。此外,通过CGRPCreER标记分化的滤泡旁C细胞使我们能够在恶性转化为甲状腺髓样肿瘤的过程中追踪其命运。我们的发现支持一种模型,其中分化的滤泡旁C细胞中的突变事件导致甲状腺髓样癌。通过包括RNA-Seq在内的表达分析,我们发现了去除肿瘤抑制因子后受到干扰的主要信号传导途径和网络。综上,这些研究不仅增加了我们对甲状腺髓样癌的分子理解,而且为设计靶向疗法或其他治疗方式提供了新的候选者。

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