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首页> 外文期刊>BMC research notes >FOXP3 knockdown inhibits the proliferation and reduces NOTCH1 expression of T cell acute lymphoblastic leukemia cells
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FOXP3 knockdown inhibits the proliferation and reduces NOTCH1 expression of T cell acute lymphoblastic leukemia cells

机译:FOXP3敲低抑制增殖并降低T细胞急性淋巴细胞白血病细胞的NOTCH1表达

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Abstract ObjectiveForkhead box P3 (FOXP3) is a master transcriptional factor of regulatory T-cells (Tregs). Recent studies have shown that FOXP3 is associated with growth inhibition of cancer cells. However, the role of FOXP3 in acute T-lymphoblastic leukemia (T-ALL) cells is not known. It was also reported that NOTCH signaling promoted the expression of FOXP3 in Tregs. However, the effect of FOXP3 on NOTCH expression in T-ALL cells is little known. Therefore, we examined the effect of FOXP3 knockdown on the proliferation of T-ALL cells and NOTCH1 signaling.ResultsTwo T-ALL cell lines Jurkat and KOPT-K1, harboring activating NOTCH1 mutations, were transfected with small interfering RNA against FOXP3 . Cell growth was assessed with a colorimetric assay and morphology was observed under a microscope. FOXP3 knockdown significantly reduced cell growth and induced morphological changes suggesting apoptosis. Quantitative polymerase chain reaction revealed that FOXP3 knockdown caused the downregulation of mRNA expression of NOTCH1 and HES1 . These findings suggest that FOXP3 supports the growth of T-ALL cells although this can not be generalized because we examined only two cell lines. The observed growth suppression can be partly due to the downregulation of NOTCH1 signaling. FOXP3 may be a potential therapeutic target in T-ALL.
机译:摘要ObjectiveForkhead盒P3(FOXP3)是调节性T细胞(Tregs)的主要转录因子。最近的研究表明,FOXP3与癌细胞的生长抑制有关。但是,FOXP3在急性T淋巴细胞白血病(T-ALL)细胞中的作用尚不清楚。还据报道,NOTCH信号促进了Tregs中FOXP3的表达。但是,FOXP3对T-ALL细胞中NOTCH表达的影响鲜为人知。因此,我们研究了敲低FOXP3对T-ALL细胞增殖和NOTCH1信号转导的影响。结果用抗FOXP3的小干扰RNA转染了两个带有激活NOTCH1突变的T-ALL细胞株Jurkat和KOPT-K1。用比色测定法评估细胞生长,并在显微镜下观察形态。 FOXP3敲低显着降低细胞生长并诱导形态变化,提示细胞凋亡。定量聚合酶链反应显示,FOXP3的敲低引起NOTCH1和HES1 mRNA表达的下调。这些发现表明,FOXP3支持T-ALL细胞的生长,尽管由于我们只研究了两种细胞系而无法将其概括。观察到的生长抑制可能部分归因于NOTCH1信号的下调。 FOXP3可能是T-ALL中潜在的治疗靶标。

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