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:YY2 Serves as a Novel Prognostic Biomarker Correlated with Immune Microenvironment and Glycolysis in Esophageal Carcinoma.
YY2 Serves as a Novel Prognostic Biomarker Correlated with Immune Microenvironment and Glycolysis in Esophageal Carcinoma.
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YY2 可能作为 ESCA 患者一个有前景的预后生物标志物和创新的治疗靶点,调控细胞增殖、迁移、免疫微环境和糖酵解。
Yin Yang 2 (YY2) 在多种肿瘤发生过程中发挥关键作用;然而,其在食管癌 (ESCA) 中的具体参与仍不明确。本研究旨在探讨 YY2 在 ESCA 中的表达及其潜在的功能意义。
采用TCGA、TIMER、TISIDB、QUANTISEQ、cBioPortal、DNMIVD、LinkedOmics、DAVID、GSEA、GEPIA2、LASSO、miRWalk、miRDB和TargetScan等多种生物信息学数据库和工具分析YY2在ESCA中的表达和功能。此外,采用RT-qPCR、免疫组化染色、western blot、CCK8实验和伤口愈合实验验证YY2参与ESCA发病机制。
生物信息学分析显示,YY2基因在ESCA组织中表达上调,其高表达与不良预后以及M2巨噬细胞、NK细胞、Tregs、CTLA4、TIGIT和Siglec-15水平升高显著相关。对ESCA样本的验证表明,敲低YY2可有效抑制ESCA细胞的增殖和迁移。YY2及其共表达基因的生物学功能主要与转录调控、DNA甲基化、糖代谢和泛素化相关。此外,发现YY2在糖酵解通路中的调控网络涉及多个基因和miRNAs。最后,基于YY2及其相关糖酵解基因构建的预后模型显示,在食管腺癌(EAC)中,较高的风险评分与较低的生存率之间存在强烈的负相关。
Yin Yang 2 (YY2) plays a pivotal role in various tumorigenic processes; however, its specific involvement in esophageal carcinoma (ESCA) remains elusive. This study aims to investigate the expression and potential functional significance of YY2 in ESCA.
The expression and functions of YY2 in ESCA were analyzed using a broad range of bioinformatics databases and tools, including TCGA, TIMER, TISIDB, QUANTISEQ, cBioPortal, DNMIVD, LinkedOmics, DAVID, GSEA, GEPIA2, LASSO, miRWalk, miRDB, and TargetScan. Furthermore, RT-qPCR, immunohistochemical staining, western blot, CCK8 assay, and wound healing assay were employed to validate the involvement of YY2 in ESCA pathogenesis.
Bioinformatics analyses revealed that the YY2 gene is upregulated in ESCA tissues, with its high expression significantly associated with poor prognosis and elevated levels of M2 macrophages, NK cells, Tregs, CTLA4, TIGIT, and Siglec-15. Validating the ESCA samples demonstrated that knockdown of YY2 effectively inhibited cell proliferation and migration in ESCA cells. The biological functions of YY2 and its co-expressed genes were primarily associated with transcriptional regulation, DNA methylation, glycometabolism, and ubiquitination. Moreover, the regulatory network of YY2 in the glycolysis pathway was found to involve multiple genes and miRNAs. Finally, a prognostic model based on YY2 and its associated glycolysis genes revealed a strong inverse correlation between higher risk scores and lower survival rates in esophageal adenocarcinoma (EAC).
YY2 may serve as a promising prognostic biomarker and an innovative therapeutic target for patients with ESCA, regulating cell proliferation, migration, immune microenvironment, and glycolysis.
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