蛋白磷酸酶 2A 调控亚基 B56ε 在泛癌症中的综合分析及其在肝细胞癌中的作用和机制

Hong-Mei Wu, Yuan-Yuan Huang, Yu-Qiu Xu, Wei-Lai Xiang, Chang Yang, Ru-Yuan Liu, Di Li, Xuerong Guo, Zheng-Bao Zhang, Chun-Hua Bei, Sheng-Kui Tan, Xiao-Nian Zhu
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At present, the application of B56ε in pan-cancer lacks a comprehensive analysis, and its role and mechanism in hepatocellular carcinoma (HCC) are still unclear.\n AIM\n To analyze B56ε in pan-cancer, and explore its role and mechanism in HCC.\n METHODS\n The Cancer Genome Atlas, Genotype-Tissue Expression, Gene Expression Profiling Interactive Analysis, and Tumor Immune Estimation Resource databases were used to analyze B56ε expression, prognostic mutations, somatic copy number alterations, and tumor immune characteristics in 33 tumors. The relationships between B56ε expression levels and drug sensitivity, immunotherapy, immune checkpoints, and human leukocyte antigen (HLA)-related genes were further analyzed. Gene Set Enrichment Analysis (GSEA) was performed to reveal the role of B56ε in HCC. The Cell Counting Kit-8, plate cloning, wound healing, and transwell assays were conducted to assess the effects of B56ε interference on the malignant behavior of HCC cells.\n RESULTS\n In most tumors, B56ε expression was upregulated, and high B56ε expression was a risk factor for adrenocortical cancer, HCC, pancreatic adenocarcinoma, and pheochromocytoma and paraganglioma (all P < 0.05). B56ε expression levels were correlated with a variety of immune cells, such as T helper 17 cells, B cells, and macrophages. There was a positive correlation between B56ε expression levels with immune checkpoint genes and HLA-related genes (all P < 0.05). The expression of B56ε was negatively correlated with the sensitivity of most chemotherapy drugs, but a small number showed a positive correlation (all P < 0.05). GSEA analysis showed that B56ε expression was related to the cancer pathway, p53 downstream pathway, and interleukin-mediated signaling in HCC. 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引用次数: 0

摘要

背景 B56ε是丝氨酸/苏氨酸蛋白磷酸酶2A的调节亚基,在肿瘤中异常表达,调控肿瘤细胞的各种功能。目前,B56ε在泛癌中的应用缺乏全面分析,其在肝细胞癌(HCC)中的作用和机制尚不清楚。目的 分析 B56ε 在泛癌症中的应用,探讨其在 HCC 中的作用和机制。方法 利用癌症基因组图谱、基因型-组织表达、基因表达谱交互分析和肿瘤免疫估算资源数据库分析 33 例肿瘤中 B56ε 的表达、预后突变、体细胞拷贝数改变和肿瘤免疫特征。进一步分析了B56ε表达水平与药物敏感性、免疫治疗、免疫检查点和人类白细胞抗原(HLA)相关基因之间的关系。基因组富集分析(Gene Set Enrichment Analysis,GSEA)揭示了 B56ε 在 HCC 中的作用。用细胞计数试剂盒-8、平板克隆、伤口愈合和透孔试验评估 B56ε 干扰对 HCC 细胞恶性行为的影响。结果 在大多数肿瘤中,B56ε表达上调,B56ε高表达是肾上腺皮质癌、HCC、胰腺腺癌、嗜铬细胞瘤和副神经节瘤的危险因素(均P<0.05)。B56ε 的表达水平与多种免疫细胞相关,如 T 辅助 17 细胞、B 细胞和巨噬细胞。B56ε 的表达水平与免疫检查点基因和 HLA 相关基因呈正相关(均 P < 0.05)。B56ε的表达与大多数化疗药物的敏感性呈负相关,但也有少数呈正相关(均P<0.05)。GSEA分析表明,B56ε的表达与HCC中的癌症通路、p53下游通路和白细胞介导的信号转导有关。抑制 B56ε 在 HCC 细胞中的表达可抑制肿瘤细胞的增殖、迁移和侵袭能力。结论 B56ε 与多种肿瘤的微环境、免疫逃避和免疫细胞浸润有关。B56ε 在 HCC 的进展过程中发挥着重要作用,支持其成为 HCC 的预后标志物和潜在治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comprehensive analysis of the protein phosphatase 2A regulatory subunit B56ε in pan-cancer and its role and mechanism in hepatocellular carcinoma
BACKGROUND B56ε is a regulatory subunit of the serine/threonine protein phosphatase 2A, which is abnormally expressed in tumors and regulates various tumor cell functions. At present, the application of B56ε in pan-cancer lacks a comprehensive analysis, and its role and mechanism in hepatocellular carcinoma (HCC) are still unclear. AIM To analyze B56ε in pan-cancer, and explore its role and mechanism in HCC. METHODS The Cancer Genome Atlas, Genotype-Tissue Expression, Gene Expression Profiling Interactive Analysis, and Tumor Immune Estimation Resource databases were used to analyze B56ε expression, prognostic mutations, somatic copy number alterations, and tumor immune characteristics in 33 tumors. The relationships between B56ε expression levels and drug sensitivity, immunotherapy, immune checkpoints, and human leukocyte antigen (HLA)-related genes were further analyzed. Gene Set Enrichment Analysis (GSEA) was performed to reveal the role of B56ε in HCC. The Cell Counting Kit-8, plate cloning, wound healing, and transwell assays were conducted to assess the effects of B56ε interference on the malignant behavior of HCC cells. RESULTS In most tumors, B56ε expression was upregulated, and high B56ε expression was a risk factor for adrenocortical cancer, HCC, pancreatic adenocarcinoma, and pheochromocytoma and paraganglioma (all P < 0.05). B56ε expression levels were correlated with a variety of immune cells, such as T helper 17 cells, B cells, and macrophages. There was a positive correlation between B56ε expression levels with immune checkpoint genes and HLA-related genes (all P < 0.05). The expression of B56ε was negatively correlated with the sensitivity of most chemotherapy drugs, but a small number showed a positive correlation (all P < 0.05). GSEA analysis showed that B56ε expression was related to the cancer pathway, p53 downstream pathway, and interleukin-mediated signaling in HCC. Knockdown of B56ε expression in HCC cells inhibited the proliferation, migration, and invasion capacity of tumor cells. CONCLUSION B56ε is associated with the microenvironment, immune evasion, and immune cell infiltration of multiple tumors. B56ε plays an important role in HCC progression, supporting it as a prognostic marker and potential therapeutic target for HCC.
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