Xu Xiaonan, Chadourne Manon, Soto-Vargas Zulaida, Jarajapu Vinesh, Yao Jiqiang, Yu Xiaoqing, Karreth Florian A
Department of Molecular Oncology, H. Lee Moffitt Cancer Center and Research Institute, Tampa, Florida 33612, USA.
Department of Biostatistics and Bioinformatics, H. Lee Moffitt Cancer Center and Research Institute, Tampa, Florida 33612, USA.
bioRxiv. 2025 Jun 10:2025.06.07.658418. doi: 10.1101/2025.06.07.658418.
Transcriptional dysregulation has emerged as a critical driver of melanoma progression, yet the molecular mechanisms governing this process and their potential as therapeutic targets remain inadequately characterized. Here, we identify FRA1 as a potent and actionable driver of melanoma metastasis. FRA1 enhanced both the initial seeding and subsequent outgrowth of metastatic lesions. Comprehensive multi-omics integration revealed transcriptional target genes of FRA1, with AXL, CDK6, and FSCN1 exhibiting increased expression in melanoma metastasis and a significant correlation with poor patient outcomes. Silencing AXL, CDK6, or FSCN1 abrogated FRA1-mediated invasion in vitro and reduced metastatic colonization. Furthermore, pharmacological inhibition of CDK6 and FSCN1, and to a lesser extent AXL, suppressed melanoma metastasis and prolonged overall survival. The expression of FRA1 and its target genes correlates with shortened survival across multiple cancer types, highlighting the broader clinical relevance of this pathway. This study unveils an actionable FRA1-mediated transcriptional network that drives cancer progression and metastasis, offering potential avenues for therapeutic interventions.
转录失调已成为黑色素瘤进展的关键驱动因素,然而,调控这一过程的分子机制及其作为治疗靶点的潜力仍未得到充分表征。在此,我们确定FRA1是黑色素瘤转移的一个强大且可作用的驱动因素。FRA1增强了转移灶的初始播种和随后的生长。全面的多组学整合揭示了FRA1的转录靶基因,AXL、CDK6和FSCN1在黑色素瘤转移中表达增加,且与患者不良预后显著相关。沉默AXL、CDK6或FSCN1可消除FRA1介导的体外侵袭,并减少转移定植。此外,对CDK6和FSCN1的药理抑制,以及对AXL的较小程度抑制,可抑制黑色素瘤转移并延长总生存期。FRA1及其靶基因的表达与多种癌症类型的生存期缩短相关,突出了该通路更广泛的临床相关性。本研究揭示了一个可作用的FRA1介导的转录网络,该网络驱动癌症进展和转移,为治疗干预提供了潜在途径。