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将含溴结构域蛋白9作为新型治疗靶点的泛癌分析揭示了其在人类肿瘤中的诊断、预后潜力及生物学机制。

Pan-cancer analyses of bromodomain containing 9 as a novel therapeutic target reveals its diagnostic, prognostic potential and biological mechanism in human tumours.

作者信息

Chen Yu, Gao Zitong, Mohd-Ibrahim Isam, Yang Hua, Wu Lang, Fu Yuanyuan, Deng Youping

机构信息

Department of Quantitative Health Sciences, John A. Burns School of Medicine, University of Hawaii at Manoa, Honolulu, Hawaii, USA.

Department of Molecular Biosciences and Bioengineering, College of Tropical Agriculture and Human Resources, Agricultural Sciences, University of Hawaii at Manoa, Honolulu, Hawaii, USA.

出版信息

Clin Transl Med. 2024 Feb;14(2):e1543. doi: 10.1002/ctm2.1543.

Abstract

BACKGROUND

Mutations in one or more genes responsible for encoding subunits within the SWItch/Sucrose Non-Fermentable (SWI/SNF) chromatin-remodelling complexes are found in approximately 25% of cancer patients. Bromodomain containing 9 (BRD9) is a more recently identified protein coding gene, which can encode SWI/SNF chromatin-remodelling complexes subunits. Although initial evaluations of the potential of BRD9-based targeted therapy have been explored in the clinical application of a small number of cancer types, more detailed study of the diagnostic and prognostic potential, as well as the detailed biological mechanism of BRD9 remains unreported.

METHODS

We used various bioinformatics tools to generate a comprehensive, pan-cancer analyses of BRD9 expression in multiple disease types described in The Cancer Genome Atlas (TCGA). Experimental validation was conducted in tissue microarrays and cell lines derived from lung and colon cancers.

RESULTS

Our study revealed that BRD9 exhibited elevated expression in a wide range of tumours. Analysis of survival data and DNA methylation for BRD9 indicated distinct conclusions for multiple tumours. mRNA splicing and molecular binding were involved in the functional mechanism of BRD9. BRD9 may affect cancer progression through different phosphorylation sites or N -methyladenosine site modifications. BRD9 could potentially serve as a novel biomarker for diagnosing different cancer types, especially could accurately forecast the prognosis of melanoma patients receiving anti-programmed cell death 1 immunotherapy. BRD9 has the potential to serve as a therapeutic target, when pairing with etoposide in patients with melanoma. The BRD9/SMARCD1 axis exhibited promising discriminative performance in forecasting the prognosis of patients afflicted with liver hepatocellular carcinoma (LIHC) and mesothelioma. Additionally, this axis appears to potentially influence the immune response in LIHC by regulating the programmed death-ligand 1 immune checkpoint. For experimental validation, high expression levels of BRD9 were observed in tumour tissue samples from both lung and colon cancer patients. Knocking down BRD9 led to the inhibition of lung and colon cancer development, likely via the Wnt/β-catenin signalling pathway.

CONCLUSIONS

These pan-cancer study revealed the diagnostic and prognostic potential, along with the biological mechanism of BRD9 as a novel therapeutic target in human tumours.

摘要

背景

在约25%的癌症患者中发现了一个或多个负责编码SWItch/蔗糖非发酵(SWI/SNF)染色质重塑复合物亚基的基因突变。含溴结构域9(BRD9)是一个较新发现的蛋白质编码基因,可编码SWI/SNF染色质重塑复合物亚基。尽管已在少数癌症类型的临床应用中对基于BRD9的靶向治疗潜力进行了初步评估,但关于BRD9的诊断和预后潜力以及详细生物学机制的更深入研究仍未见报道。

方法

我们使用各种生物信息学工具,对癌症基因组图谱(TCGA)中描述的多种疾病类型的BRD9表达进行了全面的泛癌分析。在组织微阵列以及源自肺癌和结肠癌的细胞系中进行了实验验证。

结果

我们的研究表明,BRD9在多种肿瘤中表达升高。对BRD9的生存数据和DNA甲基化分析得出了多种肿瘤的不同结论。mRNA剪接和分子结合参与了BRD9的功能机制。BRD9可能通过不同的磷酸化位点或N -甲基腺苷位点修饰影响癌症进展。BRD9有可能作为诊断不同癌症类型的新型生物标志物,尤其能够准确预测接受抗程序性细胞死亡1免疫治疗的黑色素瘤患者的预后。在黑色素瘤患者中,BRD9与依托泊苷联合使用时有可能作为治疗靶点。BRD9/SMARCD1轴在预测肝细胞肝癌(LIHC)和间皮瘤患者的预后方面表现出良好的判别性能。此外,该轴似乎可能通过调节程序性死亡配体1免疫检查点来影响LIHC中的免疫反应。为进行实验验证,在肺癌和结肠癌患者的肿瘤组织样本中均观察到BRD9的高表达水平。敲低BRD9导致肺癌和结肠癌的发展受到抑制,可能是通过Wnt/β-连环蛋白信号通路。

结论

这些泛癌研究揭示了BRD9作为人类肿瘤新型治疗靶点的诊断和预后潜力以及生物学机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/816d/10835192/69cb561c9c18/CTM2-14-e1543-g011.jpg

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