首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >Inhibitor of Differentiation-1 Sustains Mutant KRAS-Driven Progression, Maintenance, and Metastasis of Lung Adenocarcinoma via Regulation of a FOSL1 Network
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Inhibitor of Differentiation-1 Sustains Mutant KRAS-Driven Progression, Maintenance, and Metastasis of Lung Adenocarcinoma via Regulation of a FOSL1 Network

机译:通过调节FOSL1网络,分化-1的抑制剂-1维持突变KRAS驱动的进展,维持和转移肺腺癌的进展,维持和转移

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摘要

Because of the refractory nature of mutant KRAS lung adenocarcinoma (LUAD) to current therapies, identification of new molecular targets is essential. Genes with a prognostic role in mutant KRAS LUAD have proven to be potential molecular targets for therapeutic development. Here we determine the clinical, functional, and mechanistic role of inhibitor of differentiation-1 (Id1) in mutant KRAS LUAD. Analysis of LUAD cohorts from TCGA and SPORE showed that high expression of Id1 was a marker of poor survival in patients harboring mutant, but not wild-type KRAS. Abrogation of Id1 induced G(2)-M arrest and apoptosis in mutant KRAS LUAD cells. In vivo, loss of Id1 strongly impaired tumor growth and maintenance as well as liver metastasis, resulting in improved survival. Mechanistically, Id1 was regulated by the KRAS oncogene through JNK, and loss of Id1 resulted in down-regulation of elements of the mitotic machinery via inhibition of the transcription factor FOSL1 and of several kinases within the KRAS signaling network. Our study provides clinical, functional, and mechanistic evidence underscoring Id1 as a critical gene in mutant KRAS LUAD and warrants further studies of Id1 as a therapeutic target in patients with LUAD.
机译:由于突变克拉斯肺腺癌(Luad)对当前疗法的耐火性,鉴定新的分子靶标是必不可少的。具有预后作用的基因在突变体KRAS Luad中已被证明是治疗发育的潜在分子靶标。在这里,我们确定突变体Kras Luad中分化-1(ID1)抑制剂的临床,功能和机械作用。来自TCGA和孢子的管道群体的分析表明,ID1的高表达是患者患者患者存活率不佳的标志物,但不是野生型KRA。突变蛋白酶Kras Luad细胞中ID1诱导的G(2)-M诱导和细胞凋亡。体内,ID1的损失强烈受损,肿瘤生长和维护以及肝转移,导致生存率提高。机械地,ID1通过JNK通过JNK调节,并且ID1的损失通过抑制转录因子FOSL1和KRA信号网络内的几种激酶而导致丝分裂机械的元素下调。我们的研究提供了临床,功能和机械证据强调ID1作为突变克拉拉拉德的关键基因,并认证ID1作为管道患者治疗靶标的ID1。

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