RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Selinexor Synergistically Promotes the Antileukemia Activity of Venetoclax in Acute Myeloid Leukemia by Inhibiting Glycolytic Function and Downregulating the Expression of DNA Replication Genes.
Selinexor Synergistically Promotes the Antileukemia Activity of Venetoclax in Acute Myeloid Leukemia by Inhibiting Glycolytic Function and Downregulating the Expression of DNA Replication Genes.
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本研究表明,塞利尼索可通过抑制糖酵解功能并下调 DNA 复制相关基因,在体外协同增强维奈克拉对急性髓系白血病细胞的抗白血病活性。
引言:BCL-2抑制剂维奈克拉已广泛用于治疗急性髓系白血病(AML),但患者治疗后会逐渐产生耐药。核输出蛋白1(XPO1)抑制剂Selinexor可协同增强维奈克拉的抗白血病活性,但其机制尚不清楚。方法与结果:采用Annexin V/7-AAD检测维奈克拉联合Selinexor(VEN+SEL)对AML细胞系及原代AML细胞的影响。通过RNA测序及Seahorse XF分析仪检测耗氧率(OCR)和胞外酸化率(ECAR),研究VEN+SEL对AML细胞的细胞毒性机制。还在体外用流式细胞术评估NK细胞与VEN+SEL联合时的细胞毒作用。VEN+SEL在体外增强了对AML细胞(KG-1A和THP-1)及原代AML样本的凋亡作用。ECAR和OCR结果表明,VEN+SEL联合显著抑制糖酵解功能。THP-1细胞RNA测序显示,接受VEN+SEL后,与DNA复制相关的基因表达下调。结论:本研究表明,Selinexor可通过抑制糖酵解功能并下调DNA复制相关基因,在体外协同增强维奈克拉对AML细胞的抗白血病活性。基于实验数据,Selinexor联合维奈克拉是AML患者合适的强化治疗选择。
INTRODUCTION: The BCL-2 inhibitor venetoclax has been widely used in the treatment of acute myeloid leukemia (AML); however, AML patients treated with venetoclax gradually develop resistance. The exportin-1 (XPO1) inhibitor selinexor can synergistically promote the antileukemia activity of venetoclax, but the mechanism remains unclear. METHODS AND RESULTS: Annexin V/7-aminoactinomycin D assays were used to examine the effects of a combination of venetoclax and selinexor (VEN+SEL) on AML cell lines and primary AML cells. RNA sequencing and oxygen consumption rate (OCR) and extracellular acidification rate (ECAR) determinations by a Seahorse XF analyzer were employed to investigate the molecular mechanism of the toxicity of the VEN+SEL combination to AML cells. The cytotoxicity of NK cell combined with VEN+SEL combination was assessed in vitro using flow cytometry. VEN+SEL enhanced the apoptosis of AML cells (KG-1A and THP-1) and primary AML samples in vitro. The ECAR and OCR results demonstrated that the VEN+SEL combination significantly inhibited glycolytic function. RNA sequencing of THP-1 cells demonstrated that DNA replication-related genes were downregulated after treatment with the VEN+SEL combination. CONCLUSION: This study indicated that selinexor can synergistically enhance the antileukemia activity of venetoclax in AML cells in vitro by inhibiting glycolytic function and downregulating DNA replication-related genes. Based on our experimental data, combining selinexor with venetoclax is an appropriate advanced treatment option for AML patients.
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