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HSF1 drives a transcriptional program distinct from heat shock to support highly malignant human cancers

机译:HSF1驱动不同于热休克的转录程序以支持高度恶性的人类癌症

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摘要

Heat-Shock Factor 1 (HSF1), master regulator of the heat-shock response, facilitates malignant transformation, cancer cell survival, and proliferation in model systems. The common assumption is that these effects are mediated through regulation of heat-shock protein (HSP) expression. However, the transcriptional network that HSF1 coordinates directly in malignancy and its relationship to the heat-shock response have never been defined. By comparing cells with high and low malignant potential alongside their nontransformed counterparts, we identify an HSF1-regulated transcriptional program specific to highly malignant cells and distinct from heat shock. Cancer-specific genes in this program support oncogenic processes: cell-cycle regulation, signaling, metabolism, adhesion and translation. HSP genes are integral to this program, however, many are uniquely regulated in malignancy. This HSF1 cancer program is active in breast, colon and lung tumors isolated directly from human patients and is strongly associated with metastasis and death. Thus, HSF1 rewires the transcriptome in tumorigenesis, with prognostic and therapeutic implications.
机译:热休克因子1(HSF1)是热休克反应的主要调节剂,可促进恶性转化,癌细胞存活以及模型系统中的增殖。通常的假设是这些作用是通过调节热激蛋白(HSP)的表达来介导的。然而,从未定义过HSF1直接在恶性肿瘤中协调的转录网络及其与热休克反应的关系。通过比较具有高恶性潜能和低恶性潜能的细胞以及未转化的对应物,我们确定了HSF1调控的转录程序,其特异于高度恶性的细胞并且不同于热激。该程序中特定于癌症的基因支持致癌过程:细胞周期调控,信号传导,代谢,粘附和翻译。 HSP基因是该程序必不可少的,但是,许多基因在恶性肿瘤中具有独特的调控作用。该HSF1癌症程序在直接从人类患者中分离出的乳腺,结肠和肺部肿瘤中活跃,并且与转移和死亡密切相关。因此,HSF1将转录组重新连接到肿瘤发生中,具有预后和治疗意义。

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