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RSK1和RSK2丝氨酸/苏氨酸激酶在癌症中调控不同的转录程序。

RSK1 and RSK2 serine/threonine kinases regulate different transcription programs in cancer.

作者信息

Yang Won Seok, Caliva Maisel J, Khadka Vedbar S, Tiirikainen Maarit, Matter Michelle L, Deng Youping, Ramos Joe W

机构信息

Cancer Biology Program, University of Hawaii Cancer Center, University of Hawaii at Mānoa, Honolulu, HI, United States.

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

出版信息

Front Cell Dev Biol. 2023 Jan 4;10:1015665. doi: 10.3389/fcell.2022.1015665. eCollection 2022.

Abstract

The 90 kDa ribosomal S6 kinases (RSKs) are serine threonine kinases comprising four isoforms. The isoforms can have overlapping functions in regulation of migration, invasion, proliferation, survival, and transcription in various cancer types. However, isoform specific differences in RSK1 versus RSK2 functions in gene regulation are not yet defined. Here, we delineate ribosomal S6 kinases isoform-specific transcriptional gene regulation by comparing transcription programs in RSK1 and RSK2 knockout cells using microarray analysis. Microarray analysis revealed significantly different mRNA expression patterns between RSK1 knockout and RSK2 knockout cell lines. Importantly some of these functions have not been previously recognized. Our analysis revealed RSK1 has specific roles in cell adhesion, cell cycle regulation and DNA replication and repair pathways, while RSK2 has specific roles in the immune response and interferon signaling pathways. We further validated that the identified gene sets significantly correlated with mRNA datasets from cancer patients. We examined the functional significance of the identified transcriptional programs using cell assays. In alignment with the microarray analysis, we found that RSK1 modulates the mRNA and protein expression of Fibronectin1, affecting cell adhesion and CDK2, affecting S-phase arrest in the cell cycle, and impairing DNA replication and repair. Under similar conditions, RSK2 showed increased ISG15 transcriptional expression, affecting the immune response pathway and cytokine expression. Collectively, our findings revealed the occurrence of RSK1 and RSK2 specific transcriptional regulation, defining separate functions of these closely related isoforms.

摘要

90 kDa核糖体S6激酶(RSKs)是丝氨酸苏氨酸激酶,由四种亚型组成。这些亚型在多种癌症类型的迁移、侵袭、增殖、存活和转录调节中可能具有重叠功能。然而,RSK1与RSK2在基因调节功能上的亚型特异性差异尚未明确。在此,我们通过使用微阵列分析比较RSK1和RSK2基因敲除细胞中的转录程序,来描绘核糖体S6激酶亚型特异性转录基因调节。微阵列分析揭示了RSK1基因敲除和RSK2基因敲除细胞系之间显著不同的mRNA表达模式。重要的是,其中一些功能以前未被认识到。我们的分析表明,RSK1在细胞黏附、细胞周期调节以及DNA复制和修复途径中具有特定作用,而RSK2在免疫反应和干扰素信号通路中具有特定作用。我们进一步验证了所鉴定的基因集与癌症患者的mRNA数据集显著相关。我们使用细胞试验检查了所鉴定转录程序的功能意义。与微阵列分析一致,我们发现RSK1调节纤连蛋白1的mRNA和蛋白质表达,影响细胞黏附;调节细胞周期蛋白依赖性激酶2(CDK2),影响细胞周期的S期停滞,并损害DNA复制和修复。在类似条件下,RSK2显示干扰素刺激基因15(ISG15)转录表达增加,影响免疫反应途径和细胞因子表达。总的来说,我们的研究结果揭示了RSK1和RSK2特异性转录调节的存在,明确了这些密切相关亚型的不同功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/877f/9845784/79394befd829/fcell-10-1015665-g001.jpg

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