前列腺癌
单核苷酸多态性
生物
基因座(遗传学)
SNP公司
等位基因
基因型
蛋白质组学
前列腺
全基因组关联研究
生物标志物
遗传学
生物信息学
计算生物学
基因组学
转录组
疾病
遗传关联
孟德尔随机化
功能基因组学
癌症
生物标志物发现
肿瘤科
前列腺特异性抗原
等位基因频率
基因
医学
转录因子
表达数量性状基因座
作者
Dandan Dong,Zi-Sheng WANG,Mengqi Liu,Qin Zhang,Wenjie Xu,Wei Yu,Jing Zhu,Xiayun Yang,Qixiang Zhang,Yao Zhu,Liang Wang,Peng Zhang,Gong‐Hong Wei
标识
DOI:10.1038/s41467-025-64005-w
摘要
Genome wide association studies (GWASs) have identified numerous risk loci associated with prostate cancer, yet unraveling their functional significance remains elusive. Leveraging our high-throughput SNPs-seq method, we pinpointed rs4519489 within the multi-ancestry GWAS-discovered 2p25 locus as a potential functional SNP due to its significant allelic differences in protein binding. Here, we conduct a comprehensive analysis of rs4519489 and its associated gene, NOL10, employing diverse cohort data and experimental models. Clinical findings reveal a synergistic effect between rs4519489 genotype and NOL10 expression on prostate cancer prognosis and severity. Through unbiased proteomics screening, we reveal that the risk allele A of rs4519489 exhibits enhanced binding to USF1, an oncogenic transcription factor (TF) implicated in prostate cancer progression and prognosis, resulting in elevated NOL10 expression. Furthermore, we elucidate that NOL10 regulates cell cycle pathways, fostering prostate cancer progression. The concurrent expression of NOL10 and USF1 correlates with aggressive prostate cancer characteristics and poorer prognosis. Collectively, our study offers a robust strategy for functional SNP screening and TF identification through high-throughput SNPs-seq and unbiased proteomics, highlighting the rs4519489-USF1-NOL10 regulatory axis as a promising biomarker or therapeutic target for clinical diagnosis and treatment of prostate cancer.
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