PO.MCB07.02 · 分子与细胞生物学
鉴定KDR为NSCLC中ETS变体转录因子4下游的新型效应分子
Identification of KDR as a novel effector downstream of ETS variant transcription factor 4 in NSCLC
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
ETS家族由一类转录因子组成,其特征是具有高度保守的DNA结合结构域,可识别中心的GGA(A/T)基序。其中,ETV4作为PEA3亚家族的主要成员,在包括非小细胞肺癌(NSCLC)和肝细胞癌(HCC)在内的多种恶性肿瘤中,主要通过其MAPK依赖性转录活性,与晚期疾病分期和不良预后密切相关。尽管具有重要的临床病理意义,ETV4所调控的下游效应分子和基因组尺度的调控回路仍未被完全阐明。在此,我们旨在界定ETV4驱动的转录格局。我们鉴定出KDR/VEGFR2为ETV4直接促进的靶点,ETV4过表达显著提高KDR的转录本和蛋白水平。通过染色质免疫沉淀和互补的结合实验,我们证明了ETV4在KDR启动子上的物理占位。尽管KDR/VEGFR2经典上被认为是一种放大血管生成信号的内皮受体,越来越多的证据表明,癌细胞内在的KDR通过VEGF/VEGFR2旁分泌和自分泌回路支持血管生成拟态和侵袭性结构重塑。药物学抑制ETV4显著减弱KDR表达,并损害上皮-间质转化、迁移和侵袭,这些表型在对ETV4或KDR进行基因沉默时得到重现。总之,这些发现界定了一条此前未被认识的转录轴,其中ETV4直接激活KDR/VEGFR2以增强恶性行为,将ETV4-KDR通路定位为跨ETV4高表达肿瘤的可靶向治疗弱点。
查看英文原文 English abstract
The ETS family comprises transcription factors characterized by a highly conserved DNA-binding domain that recognizes a central GGA(A/T) motif. Among these, ETV4, the predominant member of the PEA3 subfamily, has been strongly associated with advanced disease stage and poor prognosis in multiple malignancies, including non-small cell lung cancer (NSCLC) and hepatocellular carcinoma (HCC), largely through its MAPK-dependent transcriptional activity. Despite its clinicopathologic significance, the downstream effectors and genome-scale regulatory circuitry governed by ETV4 remain incompletely defined. Here, we aimed to define the ETV4-driven transcriptional landscape. We identified KDR/VEGFR2 as a direct ETV4-promoted target, with ETV4 overexpression markedly elevating KDR transcripts and protein levels. Through chromatin immunoprecipitation and complementary binding assays, we demonstrated physical occupancy of ETV4 at the KDR promoter. Although KDR/VEGFR2 is classically characterized as an endothelial receptor that amplifies angiogenic signaling, accumulating evidence indicates that cancer cell-intrinsic KDR supports vasculogenic mimicry and aggressive structural remodeling through VEGF/VEGFR2 paracrine and autocrine circuits. Pharmacologic suppression of ETV4 significantly attenuated KDR expression and impaired epithelial-mesenchymal transition, migration, and invasion, phenotypes that were recapitulated by genetic silencing of either ETV4 or KDR. Collectively, these findings define a previously unrecognized transcriptional axis in which ETV4 directly activates KDR/VEGFR2 to potentiate malignant behavior, positioning the ETV4-KDR pathway as a targetable therapeutic vulnerability across ETV4-high tumors.
利益披露 Disclosure
S. Yu, None..
J. Kang, None..
J. Kim, None.