使用TCGA数据评估SMYD2蛋白参与人类癌症的计算方法。

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Journal, genetic engineering & biotechnology Pub Date : 2023-11-16 DOI:10.1186/s43141-023-00594-7
Arvind Kumar Yadav, Tiratha Raj Singh
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引用次数: 0

摘要

背景:SMYD2是包含SET和MYND结构域的SMYD家族的一种蛋白。它可以甲基化各种组蛋白和非组蛋白癌症相关蛋白的赖氨酸残基,在肿瘤发生中起关键作用。虽然新出现的证据支持SMYD2与癌症进展的关联,但其最终作用尚不清楚。因此,需要进一步研究该基因与癌症进展的关系。在目前的研究中,研究人员使用TCGA数据来确定SMYD2在11种癌症类型中的潜在致癌作用。利用不同的生物信息学工具和服务器对SMYD2的转录表达、存活率、突变、富集途径和基因本体进行了研究。此外,我们还研究了多种癌症类型中SMYD2基因表达与免疫细胞浸润的相关性。结果:发现SMYD2的高表达与癌症的发生有显著的相关性。在CESC和KIRC中,SMYD2 mRNA表达与总生存期(OS)显著相关。在BRCA、KIRC、COAD和HNSC中,SMYD2 mRNA表达与无病生存期(DFS)显著相关。我们检测到15个错义,4个截断,4个融合和1个剪接型突变。SMYD2的表达与肿瘤纯度和免疫细胞浸润有显著相关性。基因GNPAT与SMYD2高度相关。共表达基因的重要途径和基因本体(GO)术语与癌症形成相关的各种过程有关。结论:总的来说,我们的数据驱动的结果可能为理解SMYD2的致癌作用提供了相当全面的见解。这表明SMYD2可能作为鉴定各种人类肿瘤新生物标志物的重要靶点。
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Computational approach for assessing the involvement of SMYD2 protein in human cancers using TCGA data.

Background: SMYD2 is a protein of the SET and MYND domain-containing family SMYD. It can methylate the lysine residue of various histone and nonhistone cancer-related proteins and plays a critical role in tumorigenesis. Although emerging evidence supports the association of SMYD2 in the progression of cancers, but its definitive effect is not yet clear. Therefore, further study of the gene in relation with cancer progression needs to be conducted. In the current study, investigators used TCGA data to determine the potential carcinogenic effect of SMYD2 in 11 cancer types. The transcriptional expression, survival rate, mutations, enriched pathways, and Gene Ontology of the SMYD2 were explored using different bioinformatics tools and servers. In addition, we also examined the correlation between SMYD2 gene expression and immunocyte infiltration in multiple cancer types.

Results: Findings revealed that higher expression of SMYD2 was significantly correlated with cancer incidents. In CESC and KIRC, the mRNA expression of SMYD2 was significantly correlated with overall survival (OS). In BRCA, KIRC, COAD, and HNSC, the mRNA expression of SMYD2 was significantly correlated with disease-free survival (DFS). We detected 15 missense, 4 truncating, 4 fusions, and 1 splice type of mutation. The expression of SMYD2 was significantly correlated with tumor purity and immunocyte infiltration in six cancer types. The gene GNPAT was highly associated with SMYD2. Significant pathways and Gene Ontology (GO) terms for co-expressed genes were associated to various processes linked with cancer formation.

Conclusion: Collectively, our data-driven results may provide reasonably comprehensive insights for understanding the carcinogenic effect of SMYD2. It suggests that SMYD2 might be used as a significant target for identifying new biomarkers for various human tumors.

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