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靶向癌症代谢通过损害应激反应来打破放射抗性。

Targeting Cancer Metabolism Breaks Radioresistance by Impairing the Stress Response.

作者信息

Schwab Melissa, Thunborg Katharina, Azimzadeh Omid, von Toerne Christine, Werner Caroline, Shevtsov Maxim, Di Genio Tommaso, Zdralevic Masa, Pouyssegur Jacques, Renner Kathrin, Kreutz Marina, Multhoff Gabriele

机构信息

Radiation Immuno-Oncology Group, Center for Translational Cancer Research (TranslaTUM), School of Medicine, Klinikum rechts der Isar, Technical University of Munich (TUM), 81675 Munich, Germany.

German Research Center for Environmental Health, Institute of Radiation Biology, Helmholtz Zentrum München, 85764 Neuherberg, Germany.

出版信息

Cancers (Basel). 2021 Jul 27;13(15):3762. doi: 10.3390/cancers13153762.

Abstract

The heightened energetic demand increases lactate dehydrogenase (LDH) activity, the corresponding oncometabolite lactate, expression of heat shock proteins (HSPs) and thereby promotes therapy resistance in many malignant tumor cell types. Therefore, we assessed the coregulation of LDH and the heat shock response with respect to radiation resistance in different tumor cells (B16F10 murine melanoma and LS174T human colorectal adenocarcinoma). The inhibition of LDH activity by oxamate or GNE-140, glucose deprivation and double knockout (LDH) in B16F10 and LS174T cells significantly diminish tumor growth; ROS production and the cytosolic expression of different HSPs, including Hsp90, Hsp70 and Hsp27 concomitant with a reduction of heat shock factor 1 (HSF1)/pHSF1. An altered lipid metabolism mediated by a double knockout results in a decreased presence of the Hsp70-anchoring glycosphingolipid Gb3 on the cell surface of tumor cells, which, in turn, reduces the membrane Hsp70 density and increases the extracellular Hsp70 levels. Vice versa, elevated extracellular lactate/pyruvate concentrations increase the membrane Hsp70 expression in wildtype tumor cells. Functionally, an inhibition of LDH causes a generalized reduction of cytosolic and membrane-bound HSPs in tumor cells and significantly increases the radiosensitivity, which is associated with a G2/M arrest. We demonstrate that targeting of the lactate/pyruvate metabolism breaks the radioresistance by impairing the stress response.

摘要

能量需求的增加会提高乳酸脱氢酶(LDH)的活性、相应的肿瘤代谢物乳酸水平以及热休克蛋白(HSPs)的表达,从而在许多恶性肿瘤细胞类型中促进治疗抗性。因此,我们评估了LDH与热休克反应在不同肿瘤细胞(B16F10小鼠黑色素瘤和LS174T人结肠直肠腺癌)辐射抗性方面的共同调节作用。用草氨酸盐或GNE - 140抑制LDH活性、葡萄糖剥夺以及在B16F10和LS174T细胞中进行双敲除(LDH),可显著抑制肿瘤生长;减少活性氧(ROS)生成以及包括Hsp90、Hsp70和Hsp27在内的不同HSPs的胞质表达,同时降低热休克因子1(HSF1)/磷酸化热休克因子1(pHSF1)。双敲除介导的脂质代谢改变导致肿瘤细胞表面Hsp70锚定糖鞘脂Gb3的含量减少,进而降低膜Hsp70密度并增加细胞外Hsp70水平。反之,细胞外乳酸/丙酮酸浓度升高会增加野生型肿瘤细胞膜Hsp70的表达。在功能上,抑制LDH会导致肿瘤细胞中胞质和膜结合的HSPs普遍减少,并显著增加放射敏感性,这与G2/M期阻滞有关。我们证明,靶向乳酸/丙酮酸代谢通过损害应激反应来打破放射抗性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d552/8345170/a962288df3bc/cancers-13-03762-g001.jpg

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