RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Multiomic Characterization Reveals a Distinct Molecular Landscape in Young-Onset Pancreatic Cancer.
Multiomic Characterization Reveals a Distinct Molecular Landscape in Young-Onset Pancreatic Cancer.
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在这项针对胰腺导管腺癌年龄分层分子差异的大规模真实世界多组学表征中,YOPC 与一种具有预后和治疗意义的独特分子景观相关。
利用一个具有匹配基因组-转录组分子数据的真实世界数据库,我们试图刻画年轻发病胰腺癌(YOPC;小于50岁)患者与平均发病胰腺癌(AOPC;70岁及以上)患者之间临床差异背后的不同分子相关性。
我们分析了来自Caris Life Sciences数据库(亚利桑那州凤凰城)的2,430例患者样本(YOPC,n = 292;AOPC,n = 2,138)的匹配全转录组和DNA测序数据。使用quanTIseq流程进行免疫解卷积。总生存期(OS)数据来自保险索赔(n = 4,928);针对年龄和分子定义的队列计算Kaplan-Meier估计值。显著性确定为FDR校正的P值(Q)< .05。
与AOPC患者相比,YOPC患者中错配修复缺陷/微卫星高度不稳定、BRCA2突变和PALB2突变肿瘤的比例更高,但SMAD4、RNF43、CDKN2A和SF3B1突变肿瘤较少。值得注意的是,与AOPC患者相比,YOPC患者的KRAS突变发生率显著更低(81.3% v 90.9%;Q = .004)。在KRAS野生型亚组(n = 227)中,YOPC肿瘤显示TP53突变较少,且更可能由NRG1和MET融合驱动,而BRAF融合仅在AOPC患者中观察到。免疫解卷积显示,相对于AOPC患者,YOPC患者中NK 细胞、CD8 + T细胞、单核细胞和M2巨噬细胞显著富集,这与HLA-DPA1纯合率较低相对应。与KRAS野生型肿瘤的AOPC患者相比,YOPC患者的OS改善存在关联(中位,16.2 [YOPC- KRAS WT ] v 10.6 [AOPC- KRAS WT ]个月;P = .008),但在KRAS突变肿瘤中无此关联(P = .084)。
Using a real-world database with matched genomic-transcriptomic molecular data, we sought to characterize the distinct molecular correlates underlying clinical differences between patients with young-onset pancreatic cancer (YOPC; younger than 50 years) and patients with average-onset pancreatic cancer (AOPC; 70 years and older).
We analyzed matched whole-transcriptome and DNA sequencing data from 2,430 patient samples (YOPC, n = 292; AOPC, n = 2,138) from the Caris Life Sciences database (Phoenix, AZ). Immune deconvolution was performed using the quanTIseq pipeline. Overall survival (OS) data were obtained from insurance claims (n = 4,928); Kaplan-Meier estimates were calculated for age- and molecularly defined cohorts. Significance was determined as FDR-corrected P values ( Q ) < .05.
Patients with YOPC had higher proportions of mismatch repair-deficient/microsatellite instability-high, BRCA2 -mutant, and PALB2 -mutant tumors compared with patients with AOPC, but fewer SMAD4- , RNF43- , CDKN2A- , and SF3B1- mutant tumors. Notably, patients with YOPC demonstrated significantly lower incidence of KRAS mutations compared with patients with AOPC (81.3% v 90.9%; Q = .004). In the KRAS wild-type subset (n = 227), YOPC tumors demonstrated fewer TP53 mutations and were more likely driven by NRG1 and MET fusions, whereas BRAF fusions were exclusively observed in patients with AOPC. Immune deconvolution revealed significant enrichment of natural killer cells, CD8 + T cells, monocytes, and M2 macrophages in patients with YOPC relative to patients with AOPC, which corresponded with lower rates of HLA-DPA1 homozygosity. There was an association with improved OS in patients with YOPC compared with patients with AOPC with KRAS wild-type tumors (median, 16.2 [YOPC- KRAS WT ] v 10.6 [AOPC- KRAS WT ] months; P = .008) but not KRAS -mutant tumors ( P = .084).
In this large, real-world multiomic characterization of age-stratified molecular differences in pancreatic ductal adenocarcinoma, YOPC is associated with a distinct molecular landscape that has prognostic and therapeutic implications.
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