G2/M 细胞周期蛋白 B1(基因 CCNB1)的异常水平与多种癌症有关;然而,文献缺乏对癌症中细胞增殖的这一重要调节因子的调节的集中和全面的分析。通过这项工作,我们对 CCNB1 的水平进行了全癌分析,并剖析了调控的各个方面以及它与癌症预后的关系。我们根据从癌症基因组图谱 (TCGA) 获得的 RNA 测序数据,全面评估了 38 种癌症中 CCNB1 的表达和启动子甲基化。探讨CCNB1与预后和肿瘤微环境的相关性。利用肺腺癌数据,我们研究了参与 CCNB1 调节的潜在上游非编码 RNA,并验证了 CCNB1 对于该疾病部位的蛋白水平和预后价值。 CCNB1 在大多数癌症中高表达,启动子甲基化降低。 CCNB1的基因表达与肿瘤患者的不良预后呈正相关,这些结果在肺腺癌的蛋白质水平上得到了证实。 CCNB1 表达与 T 辅助细胞浸润相关,这进一步与某些癌症(包括肾透明细胞癌和肺腺癌)的不良预后相关。随后,我们通过相关性分析、表达分析和生存分析,鉴定了导致肺腺癌中 CCNB1 过表达的特定上游非编码 RNA。本研究对多种癌症中 CCNB1 的表达和甲基化状态进行了全面分析,并进一步深入了解肿瘤发生过程中调节 Cyclin B1 的机制途径。
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A pancancer analysis of the oncogenic role of cyclin B1 (CCNB1) in human tumors
Aberrant levels of the G2/M cyclin cyclin B1 (gene CCNB1) have been associated with multiple cancers; however, the literature lacks a focused and comprehensive analysis of the regulation of this important regulator of cell proliferation in cancer. Through this work, we performed a pancancer analysis of the levels of CCNB1 and dissected aspects of regulation and how this correlates with cancer prognosis. We comprehensively evaluated the expression and promoter methylation of CCNB1 across 38 cancers based on RNA sequencing data obtained from the Cancer Genome Atlas (TCGA). The correlation of CCNB1 with prognosis and the tumor microenvironment was explored. Using lung adenocarcinoma data, we studied the potential upstream noncoding RNAs involved in the regulation of CCNB1 and validated the protein levels and prognostic value of CCNB1 for this disease site. CCNB1 was highly expressed, and promoter methylation was reduced in most cancers. Gene expression of CCNB1 correlated positively with poor prognosis of tumor patients, and these results were confirmed at the protein level using lung adenocarcinoma. CCNB1 expression was associated with the infiltration of T helper cells, and this further correlated with poor prognosis for certain cancers, including renal clear cell carcinoma and lung adenocarcinoma. Subsequently, we identified a specific upstream noncoding RNA contributing to CCNB1 overexpression in lung adenocarcinoma through correlation analysis, expression analysis and survival analysis. This study provides a comprehensive analysis of the expression and methylation status of CCNB1 across several forms of cancer and provides further insight into the mechanistic pathways regulating Cyclin B1 in the tumorigenesis process.