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基因表达谱分析揭示了 CIGB-300 调节的 AML 细胞系转录组的时间动态。

Gene expression profiling unveils the temporal dynamics of CIGB-300-regulated transcriptome in AML cell lines.

机构信息

Pharmacogenomic Group, Department of System Biology, Biomedical Research Division, Center for Genetic Engineering & Biotechnology (CIGB), 10600, Havana, Cuba.

Molecular Oncology Group, Department of Pharmaceuticals, Biomedical Research Division, CIGB, 10600, Havana, Cuba.

出版信息

BMC Genomics. 2023 Jul 4;24(1):373. doi: 10.1186/s12864-023-09472-5.

Abstract

BACKGROUND

Protein kinase CK2 activity is implicated in the pathogenesis of various hematological malignancies like Acute Myeloid Leukemia (AML) that remains challenging concerning treatment. This kinase has emerged as an attractive molecular target in therapeutic. Antitumoral peptide CIGB-300 blocks CK2 phospho-acceptor sites on their substrates but it also binds to CK2α catalytic subunit. Previous proteomic and phosphoproteomic experiments showed molecular and cellular processes with relevance for the peptide action in diverse AML backgrounds but earlier transcriptional level events might also support the CIGB-300 anti-leukemic effect. Here we used a Clariom S HT assay for gene expression profiling to study the molecular events supporting the anti-leukemic effect of CIGB-300 peptide on HL-60 and OCI-AML3 cell lines.

RESULTS

We found 183 and 802 genes appeared significantly modulated in HL-60 cells at 30 min and 3 h of incubation with CIGB-300 for p < 0.01 and FC >  = │1.5│, respectively; while 221 and 332 genes appeared modulated in OCI-AML3 cells. Importantly, functional enrichment analysis evidenced that genes and transcription factors related to apoptosis, cell cycle, leukocyte differentiation, signaling by cytokines/interleukins, and NF-kB, TNF signaling pathways were significantly represented in AML cells transcriptomic profiles. The influence of CIGB-300 on these biological processes and pathways is dependent on the cellular background, in the first place, and treatment duration. Of note, the impact of the peptide on NF-kB signaling was corroborated by the quantification of selected NF-kB target genes, as well as the measurement of p50 binding activity and soluble TNF-α induction. Quantification of CSF1/M-CSF and CDKN1A/P21 by qPCR supports peptide effects on differentiation and cell cycle.

CONCLUSIONS

We explored for the first time the temporal dynamics of the gene expression profile regulated by CIGB-300 which, along with the antiproliferative mechanism, can stimulate immune responses by increasing immunomodulatory cytokines. We provided fresh molecular clues concerning the antiproliferative effect of CIGB-300 in two relevant AML backgrounds.

摘要

背景

蛋白激酶 CK2 的活性与各种血液恶性肿瘤(如急性髓细胞性白血病 [AML])的发病机制有关,这些肿瘤在治疗方面仍然具有挑战性。这种激酶已成为治疗中的一个有吸引力的分子靶标。抗肿瘤肽 CIGB-300 可阻断 CK2 磷酸受体位点及其底物,但也可与 CK2α 催化亚基结合。先前的蛋白质组学和磷酸蛋白质组学实验表明,分子和细胞过程与肽在不同 AML 背景下的作用有关,但早期转录水平事件也可能支持 CIGB-300 的抗白血病作用。在这里,我们使用 Clariom S HT 检测用于基因表达谱分析,以研究支持 CIGB-300 肽对 HL-60 和 OCI-AML3 细胞系的抗白血病作用的分子事件。

结果

我们发现,在与 CIGB-300 孵育 30 分钟和 3 小时后,HL-60 细胞中分别有 183 个和 802 个基因的表达显著下调(p < 0.01,FC > = │1.5│);而在 OCI-AML3 细胞中则有 221 个和 332 个基因的表达下调。重要的是,功能富集分析表明,与凋亡、细胞周期、白细胞分化、细胞因子/白细胞介素信号转导以及 NF-kB、TNF 信号通路相关的基因和转录因子在 AML 细胞转录组谱中得到了很好的体现。CIGB-300 对这些生物过程和途径的影响首先取决于细胞背景和治疗持续时间。值得注意的是,肽对 NF-kB 信号的影响得到了所选 NF-kB 靶基因的定量分析以及 p50 结合活性和可溶性 TNF-α诱导的证实。CSF1/M-CSF 和 CDKN1A/P21 的 qPCR 定量支持了肽对分化和细胞周期的作用。

结论

我们首次探讨了 CIGB-300 调节的基因表达谱的时间动态,该动态除了有抗增殖作用外,还能通过增加免疫调节细胞因子来刺激免疫反应。我们为 CIGB-300 在两种相关 AML 背景下的抗增殖作用提供了新的分子线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6132/10318747/9f8875661ee9/12864_2023_9472_Fig1_HTML.jpg

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