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:Locus-specific HERV expression identifies an aggressive, NK-depleted, checkpoint-refractory acral melanoma phenotype.
Locus-specific HERV expression identifies an aggressive, NK-depleted, checkpoint-refractory acral melanoma phenotype.
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我们的发现重新将 AM 界定为一种可在转录组层面进行分层的疾病,定义了侵袭性、检查点难治性 AM 的位点特异性 HERV 特征,并提名了一个结构完整、可经 pan-HLA 呈递的 HERV-K 抗原候选物以供进一步评估。
肢端黑色素瘤(AM)是一种非紫外线(non-UV)来源的皮肤黑色素瘤亚型,与紫外线驱动的黑色素瘤相比,其生存结局更差。AM肿瘤表现出独特的分子特征,且对免疫检查点阻断反应不佳。迄今为止,转座元件(TEs),特别是人内源性逆转录病毒(HERVs),在AM进展中的作用仍未完全阐明。
我们从33例患者的36份AM样本的RNA测序(RNA-seq)中量化了位点特异性TE表达,并将结果与临床结局、经病理学家审查的纯度协变量以及免疫细胞解卷积进行整合。
一个由ERV316A3_6p25.1d、HERVH_6q21a和ERVLE_9q21.32c组成的三位点HERV特征,通过总生存期对AM肿瘤进行分层,其留一患者法C-index为0.778(bootstrap 95%置信区间[CI]:0.614-0.914,置换p = 0.015),跨风险三分位的Kaplan-Meier log-rank p = 0.003。在针对原发部位、肿瘤细胞含量病理、性别、溃疡和Breslow深度调整的多变量Cox模型中,采用患者聚类稳健标准误,该特征仍具有强烈预后意义(HR:风险评分每增加1个标准差[s.d.]为2.19,95% CI:1.38-3.47,p = 0.001)。高风险肿瘤呈自然杀伤(NK)细胞耗竭(Spearman = -0.58,错误发现率[FDR] p = 0.004),并显示LIN28A和HMGA2协同升高(= +0.55和+0.45),这与LIN28A/let-7/HMGA2癌胚轴重新激活一致,而非完整的多能性程序。高风险肿瘤还与免疫检查点抑制剂(ICI)治疗应答几率降低相关(OR:每增加1个s.d.为0.20,p = 0.075),而所报告的突变负荷则不然(OR:1.02,p = 0.80),这与该队列中先前报道的无法解释的低TMB检查点应答者一致。单个位点HML6_20p11.21保留了完整的9.14 kb前病毒结构和333-aa开放阅读框(ORF),其整合酶、蛋白酶和gag基序完整。肽-人类白细胞抗原(HLA)结合预测鉴定出针对该分型队列中每个HLA I类等位基因的强HML6来源结合肽,并且在所有25例分型患者中至少有一个强结合肽。
Acral melanoma (AM) is a non-ultraviolet (non-UV)-derived subtype of cutaneous melanoma that is associated with worse survival outcomes compared to UV-driven melanomas. AM tumors exhibit distinct molecular characteristics and poor responses to immune checkpoint blockade. Hitherto, the role of transposable elements (TEs), particularly human endogenous retroviruses (HERVs), in AM progression remains incompletely characterized.
We quantified locus-specific TE expression from RNA sequencing (RNA-seq) of 36 AM samples from 33 patients and integrated the results with clinical outcomes, a pathologist-reviewed purity covariate, and immune cell deconvolution.
A three-locus HERV signature, composed of ERV316A3_6p25.1d, HERVH_6q21a , and ERVLE_9q21.32c , stratified AM tumors by overall survival with a leave-one-patient-out C-index of 0.778 (bootstrap 95% confidence interval [CI]: 0.614-0.914, permutation p = 0.015) and a Kaplan-Meier log-rank of p = 0.003 across risk tertiles. In a multivariable Cox model adjusted for primary site, tumor cellularity pathology, sex, ulceration, and Breslow depth, with patient-clustered robust standard errors, the signature remained strongly prognostic (HR: 2.19 per 1-standard deviation [s.d.] increase in risk score, 95% CI: 1.38-3.47, p = 0.001). High-risk tumors were natural killer (NK)-cell-depleted (Spearman = -0.58, false discovery rate [FDR] p = 0.004) and showed coordinated elevation of LIN28A and HMGA2 ( = +0.55 and +0.45), consistent with reactivation of the LIN28A/let-7/HMGA2 oncofetal axis rather than a full pluripotency program. High-risk tumors were also associated with reduced odds ratio of response to immune checkpoint inhibitor (ICI) therapy (OR: 0.20 per 1-s.d. increase, p = 0.075), whereas reported mutation burden was not (OR: 1.02, p = 0.80), consistent with the unexplained low-TMB checkpoint responders previously reported in this cohort. A single locus, HML6_20p11.21 , retained a full 9.14 kb proviral structure and a 333-aa open reading frame (ORF) with intact integrase, protease, and gag motifs. Peptide-human leukocyte antigen (HLA) binding predictions identified strong HML6-derived binders for every HLA class I allele in the typed cohort, and at least one strong binder in all 25 typed patients.
Our findings reframe AM as a transcriptomically stratifiable disease, define a locus-specific HERV signature of aggressive, checkpoint-refractory AM, and nominate a structurally intact, pan-HLA-presentable HERV-K antigen candidate for further evaluation.
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