MAP3Ks表达的减少增加了高温引起的细胞死亡。

IF 3
Atsushi Enomoto, Takemichi Fukasawa, Hiroshi Terunuma, Keiichi Nakagawa, Ayumi Yoshizaki, Shinichi Sato, Kiyoshi Miyagawa
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引用次数: 5

摘要

目的:热疗是一种很有前途的抗癌治疗方式。然而,肿瘤细胞热敏性的分子机制在很大程度上是未知的。本研究的目的是阐明热触发的生化变化如何刺激抗肿瘤活性。方法和材料:采用western blotting和RT-PCR方法检测热疗前后HeLa细胞中MAPK各成员的表达水平。细胞内Ca2+浓度[Ca2+]i通过数字成像使用catm - 2am监测。体外裂解实验用于确定钙依赖性蛋白酶calpain是否能裂解MAPK成分。在没有或存在靶向MAPK成员的sirna的情况下评估细胞增殖和克隆原性。结果:热疗降低了MAP3K、TAK1、RAF1和MEKK2的水平,但对下游MAP2K和MAPK成员没有影响。高温诱导的TAK1和MEKK2降解被蛋白酶体抑制剂MG132或钙蛋白酶抑制剂ALLN所恢复;然而,RAF1不受抑制剂的影响。热诱导的RAF1下调。热疗增加[Ca2+]i和calpain i的表达。钙离子载体A23187降低TAK1和MEKK2水平。体外裂解实验表明TAK1和MEKK2是calpain I的底物。敲低TAK1、RAF1和MEKK2可抑制细胞增殖和克隆原性。结论:高温降低了MAP3K, TAK1, RAF1和MEKK2的水平,但没有减少MAP3K- map2k - mapk级联中的下游成分,通过calpain依赖的降解途径或转录调节。TAK1、RAF1和/或MEKK2在细胞增殖和克隆原性中起着至关重要的作用,是热疗的潜在分子靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Decrease in MAP3Ks expression enhances the cell death caused by hyperthermia.

Purpose: Hyperthermia is a promising anticancer treatment modality. However, the molecular mechanism underlying the thermal sensitivity of tumor cells is largely unknown. The aim of this study was to clarify how biochemical changes triggered by heat stimulate antitumor activity.

Methods and materials: The expression levels of various MAPK members in HeLa cells with or without hyperthermia were evaluated by western blotting and RT-PCR. The intracellular Ca2+ concentration [Ca2+]i was monitored by digital imaging using CaTM-2 AM. An in vitro cleavage assay was used to determine whether calcium-dependent protease calpain cleaves MAPK components. Cell proliferation and clonogenicity were assessed in the absence or presence of siRNAs targeting MAPK members.

Results: Hyperthermia decreased the levels of MAP3K TAK1, RAF1 and MEKK2 but not of the downstream MAP2K and MAPK members. The hyperthermia-induced degradation of TAK1 and MEKK2 was rescued by either the proteasome inhibitor MG132 or the calpain inhibitor ALLN; however, RAF1 was not affected by the inhibitors. Heat induced down regulation of RAF1. Hyperthermia increased [Ca2+]i and calpain I expression. The calcium ionophore A23187 decreased TAK1 and MEKK2 levels. An in vitro cleavage assay demonstrated that TAK1 and MEKK2 are calpain I substrates. Knockdown of TAK1, RAF1 and MEKK2 suppressed cell proliferation and clonogenicity.

Conclusions: Hyperthermia decreased the levels of MAP3K TAK1, RAF1 and MEKK2, without reduction of the downstream components in the MAP3K-MAP2K-MAPK cascade, by a calpain-dependent degradation pathway or transcriptional regulation. TAK1, RAF1 and/or MEKK2 play crucial roles in cell proliferation and clonogenicity and are potential molecular targets for hyperthermia.

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