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Combination Methionine-methylation-axis Blockade: A Novel Approach to Target the Methionine Addiction of Cancer

机译:组合甲硫氨酸 - 甲基化轴封闭:一种靶向癌症蛋氨酸成瘾的新方法

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摘要

Background/Aim: Cancers are selectively sensitive to methionine (MET) restriction (MR) due to their addiction to MET which is overused for elevated methylation reactions. MET addiction of cancer was discovered by us 45 years ago. MR of cancer results in depletion of S-adenosylmethionine (SAM) for transmethylation reactions, resulting in selective cancer-growth arrest in the late S/G2-phase of the cell cycle. The aim of the present study was to determine if blockade of the MET-methylation axis is a highly-effective strategy for cancer chemotherapy. Materials and Methods: In the present study, we demonstrated the efficacy of MET-methylation-axis blockade using MR by oral-recombinant methioninase (o-rMETase) combined with decitabine (DAC), an inhibitor of DNA methylation, and an inhibitor of SAM synthesis, cycloleucine (CL). We determined a proof-of-concept of the efficacy of the MET-methylation-axis blockade on a recalcitrant undifferentiated/unclassified soft-tissue sarcoma (USTS) patient-derived orthotopic xenograft (PDOX) mouse model. Results: The o-rMETase-CL-DAC combination regressed the USTS PDOX with extensive cancer necrosis. Conclusion: The new concept of combination MET-methylation-axis blockade is effective and can now be tested on many types of recalcitrant cancer.
机译:背景/目的:由于它们的成瘾而对甲硫氨酸(MET)限制(MR)选择性地敏感,因此对升高的甲基化反应过度使用,癌症是对蛋氨酸(MET)限制(MR)。 45年前,美国发现了癌症成瘾。癌症先生导致S-腺苷甲硫氨酸(SAM)耗尽用于酰甲基化反应,导致细胞周期的后S / G2相中的选择性癌症生长停滞。本研究的目的是确定甲基化轴的阻断是否是癌症化疗的高度有效策略。材料和方法:在本研究中,我们证明了使用口服 - 重组甲硫氨酸酶(O-RMETase)与Defitabine(DAC),DNA甲基化抑制剂和SAM的抑制剂合并使用MR的甲基化 - 轴阻断的疗效。合成,环淋氨酸(CL)。我们确定了甲基化 - 轴阻断在顽固的未分化/未分类的软组织Sarcoma(USTS)患者衍生的原位异种移植物(PDOX)小鼠模型上的概念概念。结果:O-RMETase-CL-DAC组合将USTS PDOX与广泛的癌症坏死一起回归。结论:结合甲基化轴封闭件的新概念是有效的,现在可以在许多类型的顽皮癌上进行测试。

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