首页> 外文期刊>Molecular cancer therapeutics >Caspase-, cathepsin-, and PERK-dependent regulation of MDA-7/IL-24-induced cell killing in primary human glioma cells.
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Caspase-, cathepsin-, and PERK-dependent regulation of MDA-7/IL-24-induced cell killing in primary human glioma cells.

机译:半胱天冬酶,组织蛋白酶和PERK依赖的MDA-7 / IL-24诱导的人类胶质瘤细胞杀伤细胞的调控。

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Melanoma differentiation-associated gene-7/interleukin-24 (mda-7/IL-24) is a novel cytokine displaying selective apoptosis-inducing activity in transformed cells without harming normal cells. The present studies focused on defining the mechanism(s) by which a GST-MDA-7 fusion protein inhibits cell survival of primary human glioma cells in vitro. GST-MDA-7 killed glioma cells with diverse genetic characteristics that correlated with inactivation of ERK1/2 and activation of JNK1-3. Activation of JNK1-3 was dependent on protein kinase R-like endoplasmic reticulum kinase (PERK), and GST-MDA-7 lethality was suppressed in PERK-/- cells. JNK1-3 signaling activated BAX, whereas inhibition of JNK1-3, deletion of BAX, or expression of dominant-negative caspase-9 suppressed lethality. GST-MDA-7 also promoted a PERK-, JNK-, and cathepsin B-dependent cleavage of BID; loss of BID function promoted survival. GST-MDA-7 suppressed BAD and BIM phosphorylation and heat shock protein 70 (HSP70) expression. GST-MDA-7 caused PERK-dependent vacuolization of LC3-expressing endosomes whose formation was suppressed by incubation with 3-methyladenine, expression of HSP70 or BiP/GRP78, or knockdown of ATG5 or Beclin-1 expression but not by inhibition of the JNK1-3 pathway. Knockdown of ATG5 or Beclin-1 expression or overexpression of HSP70 reduced GST-MDA-7 lethality. Our data show that GST-MDA-7 induces an endoplasmic reticulum stress response that is causal in the activation of multiple proapoptotic pathways, which converge on the mitochondrion and highlight the complexity of signaling pathways altered by mda-7/IL-24 in glioma cells that ultimately culminate in decreased tumor cell survival.
机译:黑色素瘤分化相关基因7 /白介素24(mda-7 / IL-24)是一种新型细胞因子,在转化细胞中显示出选择性的凋亡诱导活性,而不会损害正常细胞。目前的研究集中在确定GST-MDA-7融合蛋白在体外抑制原代人神经胶质瘤细胞存活的机制。 GST-MDA-7杀死具有多种遗传特征的神经胶质瘤细胞,这些遗传特征与ERK1 / 2失活和JNK1-3活化相关。 JNK1-3的激活取决于蛋白激酶R样内质网激酶(PERK),并且在PERK-/-细胞中抑制了GST-MDA-7的致死性。 JNK1-3信号激活了BAX,而JNK1-3的抑制,BAX的缺失或显性负半胱天冬酶9的表达抑制了杀伤力。 GST-MDA-7还促进了PERK,JNK和组织蛋白酶B依赖的BID裂解。 BID功能丧失促进生存。 GST-MDA-7抑制BAD和BIM磷酸化和热休克蛋白70(HSP70)的表达。 GST-MDA-7引起表达LC3的内体的PERK依赖性空泡化,其形成可通过与3-甲基腺嘌呤温育,HSP70或BiP / GRP78的表达或ATG5或Beclin-1表达的敲低来抑制,但不能通过抑制JNK1来抑制-3通路。击倒ATG5或Beclin-1表达或HSP70的过表达降低了GST-MDA-7的致死率。我们的数据表明,GST-MDA-7诱导了内质网应激反应,这是多种促凋亡途径活化的原因,这些途径在线粒体上会聚并突出了神经胶质瘤细胞中由mda-7 / IL-24改变的信号传导途径的复杂性最终导致肿瘤细胞存活率下降。

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