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首页> 外文期刊>BMC Medical Genomics >CDK1 and CCNB1 as potential diagnostic markers of rhabdomyosarcoma: validation following bioinformatics analysis
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CDK1 and CCNB1 as potential diagnostic markers of rhabdomyosarcoma: validation following bioinformatics analysis

机译:CDK1和CCNB1作为横纹肌肉瘤的潜在诊断标记:生物信息学分析后验证

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Rhabdomyosarcoma (RMS), a common soft-tissue malignancy in pediatrics, presents high invasiveness and mortality. However, besides known changes in the PAX3/7-FOXO1 fusion gene in alveolar RMS, the molecular mechanisms of the disease remain incompletely understood. The purpose of the study is to recognize potential biomarkers related with RMS and analyse their molecular mechanism, diagnosis and prognostic significance. The Gene Expression Omnibus was used to search the RMS and normal striated muscle data sets. Differentially expressed genes (DEGs) were filtered using R software. The DAVID has become accustomed to performing functional annotations and pathway analysis on DEGs. The protein interaction was constructed and further processed by the STRING tool and Cytoscape software. Kaplan–Meier was used to estimate the effect of hub genes on the ending of sarcoma sufferers, and the expression of these genes in RMS was proved by real-time polymerase chain reaction (RT-PCR). Finally, the expression of CDK1 and CCNB1 in RMS was validated by immunohistochemistry (IHC). A total of 1932 DEGs were obtained, amongst which 1505 were up-regulated and 427were down-regulated. Up-regulated genes were largely enriched in the cell cycle, ECM-receptor interaction, PI3K/Akt and p53 pathways, whilst down-regulated genes were primarily enriched in the muscle contraction process. CDK1, CCNB1, CDC20, CCNB2, AURKB, MAD2L1, HIST2H2BE, CENPE, KIF2C and PCNA were identified as hub genes by Cytoscape analyses. Survival analysis showed that, except for HIST2H2BE, the other hub genes were highly expressed and related to poor prognosis in sarcoma. RT-PCR validation showed that CDK1, CCNB1, CDC20, CENPE and HIST2H2BE were significantly differential expression in RMS compared to the normal control. IHC revealed that the expression of CDK1 (28/32, 87.5%) and CCNB1 (26/32, 81.25%) were notably higher in RMS than normal controls (1/9, 11.1%; 0/9, 0%). Moreover, the CCNB1 was associated with the age and location of the patient’s onset. These results show that these hub genes, especially CDK1 and CCNB1, may be potential diagnostic biomarkers for RMS and provide a new perspective for the pathogenesis of RMS.
机译:横纹肌肉瘤(RMS),儿科常见的软组织恶性肿瘤,具有高侵袭性和死亡率。然而,除了在肺泡率下的PAX3 / 7-FOXO1融合基因的已知变化,该疾病的分子机制仍然不完全理解。该研究的目的是识别与RMS相关的潜在生物标志物,并分析它们的分子机制,诊断和预后意义。基因表达综合征用于搜索RMS和正常条纹的肌肉数据集。使用R软件过滤差异表达基因(DEGS)。 David已习惯于对DEG进行功能的注释和途径分析。通过串工具和Cytoscape软件构建并进一步处理蛋白质相互作用。 Kaplan-Meier用于估计轮毂基因对肉瘤患者结束的影响,并通过实时聚合酶链反应(RT-PCR)证明了这些基因的表达。最后,通过免疫组织化学(IHC)验证了RMS中CDK1和CCNB1的表达。获得总共1932次,其中1505年上调,427were下调。在细胞周期,ECM-受体相互作用,PI3K / AKT和P53途径中,上调基因在很大程度上富含富集,而下调基因主要富集肌肉收缩过程。 CDK1,CCNB1,CDC20,CCNB2,AurkB,MAD2L1,HIST2H2BE,CENPE,KIF 2C和PCNA被Cytoscape分析鉴定为轮毂基因。存活分析表明,除了HIST2H2BE之外,其他中心基因高度表达并与肉瘤预后不良相关。 RT-PCR验证显示CDK1,CCNB1,CDC20,CENPE和HIST2H2BE与正常对照相比,RMS中的显着差异表达。 IHC显示CDK1(28/32,87.5%)和CCNB1(26/32,81.25%)的表达在RMS中比正常对照(1/9,11.1%; 0/9,0%)的均值高。此外,CCNB1与患者发作的年龄和位置有关。这些结果表明,这些轮毂基因,尤其是CDK1和CCNB1,可能是用于RMS的潜在诊断生物标志物,并为RMS发病机制提供了一种新的视角。

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