PO.CL12.03 · 临床研究
迈向对BRCA2相关前列腺癌风险多基因修饰因子的功能表征
Toward a functional characterization of polygenic modifiers of BRCA2 associated prostate cancer risk
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
引言:BRCA2致病变异的男性携带者患前列腺癌(PC)的风险升高,且疾病频率观察到广泛差异——147-SNP前列腺癌多基因风险评分(PRS)处于最高与最低第5百分位的男性分别为88%与34%(PMID: 34320204)。这些PRS位点中大多数的因果变异和基因仍未被表征,限制了我们对推定的BRCA2风险修饰因子背后的分子介质和生物学机制的理解。
方法:我们采用已发表的信息学流程,使用功能潜力评分(FPS)对PC风险位点的候选功能变异进行优先排序,FPS由染色质可及性、组蛋白标记和转录因子(TF)结合的疾病相关注释汇编而成。我们鉴定出74个具有高评分先导SNP或强相关变异(r2>0.80)的位点,通常映射到预测的增强子区域,并选择若干此类位点进行实验探究:10q25、11q13、12q14、19p13。将跨越优先SNP的基因组片段以正向和反向取向克隆到驱动Nanoluc荧光素酶(pNL3.1)的最小启动子上游,并进行荧光素酶报告基因试验,以评估在正常前列腺(RWPE-1)和PC细胞系(LnCAP、VCAP和22PC)中的等位基因特异性增强子活性。CRISPR基因组编辑研究正在进行中,以评估增强子和风险等位基因对区域基因表达谱的影响。
结果:所测试的四个候选增强子片段中有三个在至少两种细胞系中表现出增强子活性——10q25/SNP5、11q13/SNP10、19p13/SNP17。其中,10q25处的增强子表现出等位基因特异性活性,在正常和癌细胞系中,等位基因C相比T观察到最高约两倍的更强信号。初步研究还提示11q13(SNP10 G>T)和19p13(SNP17 G>A)处增强子的等位基因特异性。在10q25处,鉴定出的功能变异映射到TCF7L2的第三个内含子,TCF7L2是Wnt信号通路中的关键基因,位于一个被前列腺中若干关键TF(包括雄激素受体和FOXA1)结合的区域。正在使用我们从携带BRCA2突变男性的前列腺活检建立的人类类器官培养物,在有和无基因毒性应激的情况下对已验证的靶基因进行功能研究。
结论:我们的发现支持FPS信息学框架在对遗传性癌症易感位点的可能功能性/因果性变异进行优先排序方面的实用性,并为使用生理模型系统进行下游功能试验以研究BRCA2相关前列腺癌风险遗传修饰因子的因果机制奠定了基础。(由乳腺癌研究基金会、CureBRCA、MSK Niehaus中心和Sabin基金会资助)
查看英文原文 English abstract
Introduction: Male carriers of BRCA2 pathogenic variants are at elevated risk of prostate cancer (PC), with wide variation in disease frequency observed (88% vs. 34%) for men in the top versus bottom 5th percentile of a 147-SNP prostate cancer polygenic risk score (PRS) (PMID: 34320204). Causal variants and genes at most of these PRS loci remain uncharacterized, limiting our understanding of the molecular mediators and biological mechanisms underlying putative modifiers of BRCA2 risk.
Methods: We adopted our published informatics pipeline to prioritize candidate functional variants at PC risk loci using Functional Potential Scores (FPS), assembled from disease-relevant annotations of chromatin accessibility, histone marks, and transcriptional factor (TF) binding. We identified 74 loci with a high-scoring lead SNP or strongly correlated variant ( r2 >0.80), typically mapping to a predicted enhancer region, and selected several such loci for experimental interrogation: 10q25, 11q13, 12q14, 19p13. Genomic fragments spanning prioritized SNPs were cloned in forward and reverse orientations upstream of a minimal promoter driving Nanoluc luciferase (pNL3.1), and luciferase reporter assays were conducted to evaluate allele-specific enhancer activity in normal prostate (RWPE-1) and PC cell lines (LnCAP, VCAP and 22PC). CRISPR genome editing studies are underway to assess the impact of enhancers and risk alleles on regional gene expression profiles.
Results: Three of the four candidate enhancer fragments tested exhibited enhancer activity in at least two cell lines -- 10q25/SNP5, 11q13/SNP10, 19p13/SNP17. Among these, the enhancer at 10q25 exhibited allele-specific activity, with up to ~two-fold stronger signal observed for allele C versus T in both normal and cancer cell lines. Initial studies also suggested allelic specificity for enhancers at 11q13 (SNP10 G>T) and 19p13 (SNP17 G>A). At 10q25, the functional variant identified maps to the third intron of TCF7L2 , a critical gene in the Wnt signaling pathway, in a region bound by several key TFs in prostate including androgen receptor and FOXA1. Functional studies of validated target genes are being conducted with and without genotoxic stressors using human organoid cultures we have established from prostate biopsies of men with BRCA2 mutations.
Conclusions: Our findings support the utility of the FPS informatics framework for prioritizing likely functional/causal variants at inherited cancer susceptibility loci and provide a foundation for downstream functional assays using physiologic model systems to investigate causal mechanisms of genetic modifiers of BRCA2 -associated prostate cancer risk. (Supported by the Breast Cancer Research Foundation, CureBRCA, the MSK Niehaus Center and the Sabin Foundation)
利益披露 Disclosure
K. Offit, None..
S. Bhattacharyya, None..
M. Buas, None..
B. Carver, None..
J. Fainberg, None..
Y. Kemel, None..
C. Fanjoy, None..
V. Joseph, None..
K. Graz, None..
X. Zhang, None..
S. P. Verma, None..
N. Mao, None..
K. Pappas, None..
M. Waghmare, None.