甲状腺间变性癌
癌症研究
端粒酶
端粒酶逆转录酶
生物
甲状腺癌
下调和上调
PI3K/AKT/mTOR通路
甲状腺乳突癌
肿瘤微环境
赫拉
癌症
甲状腺
信号转导
细胞生物学
基因
内分泌学
遗传学
克拉斯
结直肠癌
肿瘤细胞
作者
Iñigo Landa,Caitlin E.M. Thornton,Bin Xu,Jacob Haase,Gnana P. Krishnamoorthy,Jingzhu Hao,Jeffrey A. Knauf,Zachary T. Herbert,Paula Martínez,Marı́a A. Blasco,Ronald Ghossein,James A. Fagin
标识
DOI:10.1158/1541-7786.mcr-23-0144
摘要
Abstract Mutations in the promoter of the telomerase reverse transcriptase (TERT) gene are the paradigm of a cross-cancer alteration in a noncoding region. TERT promoter mutations (TPM) are biomarkers of poor prognosis in cancer, including thyroid tumors. TPMs enhance TERT transcription, which is otherwise silenced in adult tissues, thus reactivating a bona fide oncoprotein. To study TERT deregulation and its downstream consequences, we generated a Tert mutant promoter mouse model via CRISPR/Cas9 engineering of the murine equivalent locus (Tert−123C>T) and crossed it with thyroid-specific BrafV600E-mutant mice. We also employed an alternative model of Tert overexpression (K5-Tert). Whereas all BrafV600E animals developed well-differentiated papillary thyroid tumors, 29% and 36% of BrafV600E+Tert−123C>T and BrafV600E+K5-Tert mice progressed to poorly differentiated cancers at week 20, respectively. Tert-upregulated tumors showed increased mitosis and necrosis in areas of solid growth, and older animals displayed anaplastic-like features, that is, spindle cells and macrophage infiltration. Murine TPM increased Tert transcription in vitro and in vivo, but temporal and intratumoral heterogeneity was observed. RNA-sequencing of thyroid tumor cells showed that processes other than the canonical Tert-mediated telomere maintenance role operate in these specimens. Pathway analysis showed that MAPK and PI3K/AKT signaling, as well as processes not previously associated with this tumor etiology, involving cytokine, and chemokine signaling, were overactivated. These models constitute useful preclinical tools to understand the cell-autonomous and microenvironment-related consequences of Tert-mediated progression in advanced thyroid cancers and other aggressive tumors carrying TPMs. Implications: Telomerase-driven cancer progression activates pathways that can be dissected and perhaps therapeutically exploited.
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