BCL6和Notch通路:三阴性乳腺癌中一个新的可药物生物靶点的信号传导轴

IF 4.8 2区 医学 Q1 Medicine Cellular Oncology Pub Date : 2022-04-01 Epub Date: 2022-03-31 DOI:10.1007/s13402-022-00663-y
Francesca De Santis, Sandra L Romero-Cordoba, Lorenzo Castagnoli, Tatiana Volpari, Simona Faraci, Giovanni Fucà, Elda Tagliabue, Filippo De Braud, Serenella M Pupa, Massimo Di Nicola
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引用次数: 0

摘要

背景:转录抑制因子b细胞淋巴瘤6 (BCL6)在几种肿瘤中失调,但其在三阴性乳腺癌(TNBC)中的作用尚不清楚,TNBC是一种高度侵袭性的亚型,缺乏有效的治疗。肿瘤内肿瘤干细胞(CSCs)的存在是肿瘤复发的主要原因。Notch信号通路在调节CSC自我更新和促进乳腺癌(BC)的发展和对抗癌治疗的耐药性中起着至关重要的作用。在这里,我们研究了BCL6在tnbc的CSC室中的信号级联,以及主要通过Notch信号传导控制其活性的机制。方法:通过Xena和cbioportal浏览器获取癌症基因组图谱和METABRIC的基因表达、体细胞拷贝数改变和临床数据。来自TNBC数据集的公共转录组图谱从基因表达Omnibus中检索。通过瞬时siRNA转染、稳定沉默或药物抑制敲除BCL6后,计算乳腺球形成效率。通过免疫荧光和qRT-PCR分析评估BCL6抑制对假定的TNBC干细胞样细胞的影响。染色质免疫沉淀实验验证了位于Numb基因第一个内含子中的BCL6应答元件,并确定了BCL6抑制后参与的共抑制因子回路。免疫沉淀法研究了BCL6在TNBC中控制CSC活性的一种新的相互作用。结果:对基准公共数据集的计算机分析显示,BCL6在癌症干细胞相关通路中显著富集,特别是TNBC中的Notch信号通路。体外稳定抑制BCL6显著降低肿瘤细胞生长,因此,我们发现BCL6沉默细胞的乳腺球形成效率因Notch信号的药理抑制而显著受损。BCL6在TNBC乳腺球中的表达水平明显高于其粘附物,BCL6功能的丧失显著降低了乳腺球的形成,优先靶向cd44阳性与aldh阳性的干细胞样细胞。BCL6与染色质重塑因子EZH2之间的功能相互作用通过抑制Numb转录触发BCL6/Notch干性信号轴。结论:我们的研究结果可能有助于前瞻性设计联合治疗策略,选择性地靶向新的tnbc相关生物标志物,其活性与癌症干细胞(如BCL6)和发育保守信号通路(如Notch)的调节有关,以实现持久的肿瘤控制并改善患者预后。
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BCL6 and the Notch pathway: a signaling axis leading to a novel druggable biotarget in triple negative breast cancer.

Background: The transcriptional repressor B-cell lymphoma 6 (BCL6) is dysregulated in several neoplasms, but its role in triple negative breast cancer (TNBC), a highly aggressive subtype which lacks effective treatment, is unclear. The presence of intratumoral cancer stem cells (CSCs) is a main cause of tumor relapse. The Notch signaling pathway is crucial for regulating CSC self-renewal and promoting breast cancer (BC) development and resistance to anticancer therapies. Here, we investigated signaling cascades of BCL6 in the CSC compartment of TNBCs, and the mechanisms that govern its activity, mainly through Notch signaling.

Methods: Gene expression, somatic copy number alterations and clinical data from the Cancer Genome Atlas and METABRIC were accessed through the Xena and cbioportal browsers. Public transcriptome profiles from TNBC datasets were retrieved from the Gene Expression Omnibus. Mammosphere formation efficiency was calculated after BCL6 knockdown via transient siRNA transfection, stable silencing or pharmacological inhibition. The effects exhibited via BCL6 inhibition in putative TNBC stem-like cells were evaluated by immunofluorescence and qRT-PCR analyses. Chromatin immunoprecipitation experiments were performed to validate a putative BCL6 responsive element located in the first intron of the Numb gene and to define the circuit of corepressors engaged by BCL6 following its inhibition. Immunoprecipitation assays were carried out to investigate a novel interaction at the basis of BCL6 control of CSC activity in TNBC.

Results: In silico analyses of benchmarked public datasets revealed a significant enrichment of BCL6 in cancer stemness related pathways, particularly of Notch signaling in TNBC. In vitro stable inhibition of BCL6 significantly reduced tumor cell growth and, accordingly, we found that the mammosphere formation efficiency of BCL6 silenced cells was significantly impaired by pharmacological inhibition of Notch signaling. BCL6 was found to be expressed at significantly higher levels in TNBC mammospheres than in their adherent counterparts, and loss of BCL6 function significantly decreased mammosphere formation with preferential targeting of CD44-positive versus ALDH-positive stem-like cells. Functional interplay between BCL6 and the chromatin remodeling factor EZH2 triggered the BCL6/Notch stemness signaling axis via inhibition of Numb transcription.

Conclusions: Our results may be instrumental for the prospective design of combination treatment strategies that selectively target novel TNBC-associated biomarker(s) whose activity is implicated in the regulation of cancer stemness (such as BCL6) and molecules in developmentally conserved signaling pathways (such as Notch) to achieve long-lasting tumor control and improve patient outcomes.

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来源期刊
Cellular Oncology
Cellular Oncology Biochemistry, Genetics and Molecular Biology-Cancer Research
CiteScore
10.40
自引率
1.50%
发文量
0
审稿时长
16 weeks
期刊介绍: The Official Journal of the International Society for Cellular Oncology Focuses on translational research Addresses the conversion of cell biology to clinical applications Cellular Oncology publishes scientific contributions from various biomedical and clinical disciplines involved in basic and translational cancer research on the cell and tissue level, technical and bioinformatics developments in this area, and clinical applications. This includes a variety of fields like genome technology, micro-arrays and other high-throughput techniques, genomic instability, SNP, DNA methylation, signaling pathways, DNA organization, (sub)microscopic imaging, proteomics, bioinformatics, functional effects of genomics, drug design and development, molecular diagnostics and targeted cancer therapies, genotype-phenotype interactions. A major goal is to translate the latest developments in these fields from the research laboratory into routine patient management. To this end Cellular Oncology forms a platform of scientific information exchange between molecular biologists and geneticists, technical developers, pathologists, (medical) oncologists and other clinicians involved in the management of cancer patients. In vitro studies are preferentially supported by validations in tumor tissue with clinicopathological associations.
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