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Paclitaxel induces apoptosis through the TAK1–JNK activation pathway

机译:紫杉醇通过Tak1-JNK激活途径诱导细胞凋亡

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摘要

Paclitaxel (PTX) has previously been used to treat tumours of various tissue origins, such as lung, breast, ovarian, prostate cancers and leukemia. PTX‐induced apoptosis is associated with p38 mitogen‐activated protein kinase (p38 MAPK), extracellular signal‐regulated kinase (ERK), nuclear factor‐kappa B (NF‐κB) and c‐Jun N‐terminal kinase or stress‐activated protein kinase (JNK/ SAPK) pathways. Transforming growth factor‐beta‐activated kinase 1 (TAK1) and TAK1‐binding protein 1 (TAB1) play an important role in cell apoptosis through the p38, ERK, NF‐κB and JNK signal transduction pathways. To investigate the role of TAK1 in PTX‐induced cell apoptosis, we treated HEK293 and 8305C cells with 0–20 µm PTX for 6, 12 or 24 h. To investigate whether TAK1 can cooperate with PTX for cancer treatment, we transfected cells with TAK1, TAB1 or control plasmid and treated them with PTX (3–10 µm) for 9–24 h. Apoptosis rates were analysed by flow cytometry (Annexin V/PI). Endogenous TAK1 and TAB1, caspase‐7 cleavage, poly ADP‐ribose polymerase (PARP) cleavage, Bcl‐xL level, phospho‐p44/42, phospho‐JNK and phospho‐p38 were detected by western blot. We show that in HEK293 and 8305C cells, PTX enhanced the endogenous TAK1/TAB1 level and induced cell apoptosis in a dose‐ and time‐dependent manner. Upon TAK1 overexpression in HEK293 cells treated with PTX, apoptosis rate, JNK phosphorylation and PARP cleavage increased contrary to heat‐shocked or untreated cells. CRISPR editing of the tak1 gene upon PTX treatment resulted in lower phospho‐JNK and PARP cleavage levels than in cells transfected with the control or the TAK1‐ or TAB1 + TAK1‐containing plasmids. TAK1‐K63A could not induce JNK phosphorylation or PARP cleavage. We conclude that PTX induces HEK293 and 8305C cell apoptosis through the TAK1–JNK activation pathway, potentially highlighting TAK1’s role in chemosensitivity.
机译:Paclitaxel(PTX)以前已被用于治疗各种组织起源的肿瘤,如肺,乳腺癌,卵巢,前列腺癌和白血病。 PTX诱导的细胞凋亡与P38丝裂原激活的蛋白激酶(P38 MAPK),细胞外信号调节激酶(ERK),核因子-Kappa(NF-κB)和C-JUN N-末端激酶或胁迫活化蛋白有关激酶(JNK / SAPK)路径。转化生长因子 - β激活激酶1(TAK1)和TAK1结合蛋白1(TAB1)通过P38,ERK,NF-κB和JNK信号转导途径在细胞凋亡中起重要作用。为了探讨Tak1在PTX诱导的细胞凋亡中的作用,我们处理了HEK293和8305C细胞,0-20μmPTX6,12或24小时。为了探讨TAK1是否可以与PTX合作进行癌症治疗,我们用TAK1,TAB1或对照质粒转染细胞,并用PTX(3-10μm)处理9-24小时。通过流式细胞术分析细胞凋亡率(膜蛋白v / pi)。内源性TAK1和蛋白质1,Caspase-7切割,聚ADP-核糖聚合酶(PARP)切割,BCL-XL水平,磷酸-JNK和磷酸P38被蛋白质印迹检测到。我们表明,在HEK293和8305C细胞中,PTX以剂量和时间依赖的方式增强了内源性TAK1 / TAB1水平并诱导细胞凋亡。在用PTX处理的​​HEK293细胞中的TAK1过度表达时,凋亡率,JNK磷酸化和PARP裂解与热震动或未治疗的细胞相反。在PTX处理时CRISPR编辑TAK1基因导致磷酸-JNK和PARP切割水平低于用对照或塔TAK1或含塔TAK1含有质粒转染的细胞中。 TAK1-K63A不能诱导JNK磷酸化或PARP切割。我们得出结论,PTX通过Tak1-JNK激活途径诱导HEK293和8305C细胞凋亡,可能突出Tak1在化学敏感度中的作用。

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