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Biallelic Dicer1 Loss Mediated by aP2-Cre Drives Angiosarcoma

机译:AP2-CRE驱动器介导的双层DICER1损失ANCIOSARCOMA

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摘要

Angiosarcoma is an aggressive vascular sarcoma with an extremely poor prognosis. Because of the relative rarity of this disease, its molecular drivers and optimal treatment strategies are obscure. DICER1 is an RNase III endoribonuclease central to miRNA biogenesis, and germline DICER1 mutations result in a cancer predisposition syndrome, associated with an increased risk of many tumor types. Here, we show that biallelic Dicer1 deletion with aP2-Cre drives aggressive and metastatic angiosarcoma independent of other genetically engineered oncogenes or tumor suppressor loss. Angiosarcomas in aP2-Cre; Dicer1(Flox/)-mice histologically and genetically resemble human angiosarcoma. miR-23 target genes, including the oncogenes Ccnd1 as well as Adam19, Plau, and Wsb1 that promote invasiveness and metastasis, were enriched in mouse and human angiosarcoma. These studies illustrate that Dicer1 can function as a traditional loss-of-function tumor suppressor gene, and they provide a fully penetrant animal model for the study of angiosarcoma development and metastasis. (C) 2017 AACR.
机译:Agiosarcoma是一种侵略性的血管肉瘤,预后极差。由于这种疾病的相对罕见,其分子驱动因素和最佳治疗策略是模糊的。 Dicer1是MiRNA生物发生的RNase III内核核酸酶,而种系DICER1突变导致癌症预感综合征,与许多肿瘤类型的风险增加有关。在这里,我们表明,与AP2-CRE驱动侵袭性和转移性癌症缺失的双胞胎DICER1缺失独立于其他转基因癌素或肿瘤抑制损失。 AP2-CRE中的Agiosarcomas; Dicer1(Flox /) - 小鼠组织学和基因上类似人的昂贵arcoma。 miR-23靶基因,包括癌症ccnd1以及促进侵袭性和转移的Adam19,ulau和wsb1,富集在小鼠和人类的angiosarcoma中。这些研究表明,DICER1可以用作传统的功能性肿瘤抑制基因,并且它们为学习的动物模型提供了一种用于血管癌发育和转移的研究。 (c)2017年AACR。

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