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.
肿瘤细胞治疗研究
英文原题:Integrated pan-cancer multi-omics profiling and experimental validation identify LSM12 as a prognostic biomarker and candidate therapeutic target in human cancers.
Integrated pan-cancer multi-omics profiling and experimental validation identify LSM12 as a prognostic biomarker and candidate therapeutic target in human cancers.
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这些产生假设的发现将 LSM12 定位为泛癌精准肿瘤学中的候选预后生物标志物和潜在治疗靶点,值得进一步的实验和临床验证。
尽管多组学数据集大幅扩展,RNA代谢调控因子在各类肿瘤中仍未被充分表征。LSM12作为参与RNA加工的Like-Sm(LSM)蛋白家族成员,尚未在泛癌背景下得到系统评估。因此,本研究旨在通过整合多组学框架,探讨LSM12在多种癌症类型中的致癌和免疫调节作用。
我们利用公开可用的多组学平台,包括TIMER2、GEPIA2、TISIDB、cBioPortal和CPTAC(通过UALCAN访问),进行了整合性泛癌分析,以评估LSM12的表达模式、基因组改变、表观遗传调控和临床相关性。使用经肿瘤纯度调整的偏Spearman相关性评估免疫浸润。进行了基于结构的虚拟筛选和密度泛函理论(DFT)计算,以评估LSM12的可成药性。使用siRNA介导的敲低在HepG2和TE-8癌细胞系中进行了体外功能验证。
LSM12在多种恶性肿瘤中mRNA和蛋白水平均显著上调,并与晚期肿瘤分期和分级呈正相关。其表达升高与启动子低甲基化和拷贝数扩增相关,并在单变量分析中预测不良的总生存期(OS)和无病生存期(DFS)。免疫浸润分析表明,LSM12表达升高对应免疫抑制性肿瘤免疫微环境(TIME),其特征为髓源性抑制细胞(MDSC)特征富集和自然杀伤(NK)细胞浸润减少。体外siRNA介导的LSM12沉默抑制了癌细胞的增殖、迁移、集落形成和细胞周期进展。基于结构的虚拟筛选结合DFT鉴定出一种异吲哚啉酮衍生物(Compound 1)作为潜在的LSM12结合物,具有良好的计算机模拟类药物特性。
RNA metabolism regulators remain insufficiently characterized across tumor types, despite the substantial expansion of multi-omics datasets. LSM12, a member of the Like-Sm (LSM) protein family involved in RNA processing, has not been systematically evaluated in a pan-cancer context. Accordingly, this study aimed to investigate the oncogenic and immunomodulatory roles of LSM12 across multiple cancer types through an integrated multi-omics framework.
We conducted an integrative pan-cancer analysis using publicly available multi-omics platforms, including TIMER2, GEPIA2, TISIDB, cBioPortal, and CPTAC (accessed via UALCAN), to assess LSM12 expression patterns, genomic alterations, epigenetic regulation, and clinical relevance. Immune infiltration was evaluated using partial Spearman correlation adjusted for tumor purity. Structure-based virtual screening and Density Functional Theory (DFT) calculations were performed to assess the druggability of LSM12. In vitro functional validation was conducted in HepG2 and TE-8 cancer cell lines using siRNA-mediated knockdown.
LSM12 was significantly upregulated in multiple malignancies at both mRNA and protein levels and was positively correlated with advanced tumor stage and grade. Increased expression was associated with promoter hypomethylation and copy-number amplification, and was predictive of unfavorable overall survival (OS) and disease-free survival (DFS) in univariate analyses. Immune infiltration analyses indicated that elevated LSM12 expression corresponded to an immunosuppressive tumor immune microenvironment (TIME), characterized by enrichment of myeloid-derived suppressor cell (MDSC) signatures and diminished natural killer (NK) cell infiltration. In vitro siRNA-mediated LSM12 silencing suppressed proliferation, migration, colony formation, and cell-cycle progression in cancer cells. Structure-based virtual screening coupled with DFT identified an isoindolinone derivative (Compound 1) as a potential LSM12 binder with favorable in silico drug-like properties.
These hypothesis-generating findings position LSM12 as a candidate prognostic biomarker and potential therapeutic target in pan-cancer precision oncology, warranting further experimental and clinical validation.
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