Empty spiracles homeobox 2 (EMX2) transcription factor functions as a tumor suppressor in renal cell carcinoma by targeting CADM1.

IF 4.1 2区 医学 Q2 CELL BIOLOGY
Zhibin Fu, Wenqi Chen, Di Gu, Juan Li, Kai Dong, Yuying Lan, Tao Liu, Bianhong Zhang, Lei Li, Ethan Lee, Chenghua Yang, Tao P Zhong, Linhui Wang
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Abstract

Renal cell carcinoma (RCC), a prevalent urinary system malignancy, often metastasizes at an early stage. Characterized by a complex pathogenesis and high mortality rate, RCC poses a significant clinical challenge. We evaluated the expression level of EMX2 in RCC patients and revealed a significant reduction of EMX2 expression, correlating with poor RCC patient prognosis. EMX2 functions as a tumor suppressor and inhibits RCC cell proliferation and migration, accompanied by programmed cell death. Implantation of EMX2-transduced RCC cells beneath the mouse kidney capsule or subcutaneous injection of transduced RCC cells results in a reduction in tumor growth and size. Through RNA-seq and chromatin immunoprecipitation sequencing analyses, we have identified Cell Adhesion Molecule 1 (CADM1) as a direct transcriptional target of EMX2's suppressive effects. CADM1 induction by EMX2 triggers PARP1-mediated parthanatos, a specific type of cell death due to mitochondrial oxidation reduction, in migrating RCC cells. Concurrently, EMX2-CADM1 upregulation instigates Caspase-3-dependent apoptosis in attached RCC cells. Furthermore, EMX2-CADM1 transcriptional axis also inhibits the PI3K-AKT pathway to impair RCC cell growth. Hence, the orchestrated effects mediated by EMX2-CADM1 axis promote RCC cell death and suppresse its growth and invasion, providing potential intervention strategies for combating RCC. Implications: The EMX2-CADM1 transcriptional axis offers a promising therapeutic target for inducing cell death and inhibiting growth and invasion in renal cell carcinoma, which could lead to more effective treatment strategies for this aggressive malignancy.

Empty spiracles homeobox 2 (EMX2) 转录因子通过靶向 CADM1 在肾细胞癌中发挥肿瘤抑制因子的功能。
肾细胞癌(RCC)是一种常见的泌尿系统恶性肿瘤,通常在早期转移。由于其复杂的发病机制和高死亡率,肾细胞癌给临床带来了重大挑战。我们评估了EMX2在RCC患者中的表达水平,发现EMX2表达显著降低,与RCC患者预后不良相关。EMX2作为肿瘤抑制因子,抑制RCC细胞的增殖和迁移,并伴有程序性细胞死亡。将emx2转导的RCC细胞植入小鼠肾包膜下或皮下注射转导的RCC细胞可减少肿瘤的生长和大小。通过RNA-seq和染色质免疫沉淀测序分析,我们发现细胞粘附分子1 (CADM1)是EMX2抑制作用的直接转录靶点。在迁移的RCC细胞中,EMX2诱导CADM1触发parp1介导的parthanatos,这是一种由于线粒体氧化还原而导致的特定类型的细胞死亡。同时,EMX2-CADM1上调会在附着的RCC细胞中引发caspase -3依赖性凋亡。此外,EMX2-CADM1转录轴也抑制PI3K-AKT通路,从而损害RCC细胞的生长。因此,EMX2-CADM1轴介导的协同效应促进RCC细胞死亡,抑制其生长和侵袭,为对抗RCC提供了潜在的干预策略。意义:EMX2-CADM1转录轴为肾细胞癌诱导细胞死亡、抑制生长和侵袭提供了一个有希望的治疗靶点,这可能为这种侵袭性恶性肿瘤提供更有效的治疗策略。
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来源期刊
Molecular Cancer Research
Molecular Cancer Research 医学-细胞生物学
CiteScore
9.90
自引率
0.00%
发文量
280
审稿时长
4-8 weeks
期刊介绍: Molecular Cancer Research publishes articles describing novel basic cancer research discoveries of broad interest to the field. Studies must be of demonstrated significance, and the journal prioritizes analyses performed at the molecular and cellular level that reveal novel mechanistic insight into pathways and processes linked to cancer risk, development, and/or progression. Areas of emphasis include all cancer-associated pathways (including cell-cycle regulation; cell death; chromatin regulation; DNA damage and repair; gene and RNA regulation; genomics; oncogenes and tumor suppressors; signal transduction; and tumor microenvironment), in addition to studies describing new molecular mechanisms and interactions that support cancer phenotypes. For full consideration, primary research submissions must provide significant novel insight into existing pathway functions or address new hypotheses associated with cancer-relevant biologic questions.
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