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首页> 外文期刊>Cell death & disease. >Latexin sensitizes leukemogenic cells to gamma-irradiation-induced cell-cycle arrest and cell death through Rps3 pathway
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Latexin sensitizes leukemogenic cells to gamma-irradiation-induced cell-cycle arrest and cell death through Rps3 pathway

机译:Latexin通过Rps3途径使白血病细胞对伽马辐射诱导的细胞周期停滞和细胞死亡敏感

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摘要

Leukemia is a leading cause of cancer death. Recently, the latexin (Lxn) gene was identified as a potential tumor suppressor in several types of solid tumors and lymphoma, and Lxn expression was found to be absent or downregulated in leukemic cells. Whether Lxn functions as a tumor suppressor in leukemia and what molecular and cellular mechanisms are involved are unknown. In this study, the myeloid leukemogenic FDC-P1 cell line was used as a model system and Lxn was ectopically expressed in these cells. Using the protein pull-down assay and mass spectrometry, ribosomal protein subunit 3 (Rps3) was identified as a novel Lxn binding protein. Ectopic expression of Lxn inhibited FDC-P1 growth in vitro . More surprisingly, Lxn enhanced gamma irradiation-induced DNA damages and induced cell-cycle arrest and massive necrosis, leading to depletion of FDC-P1 cells. Mechanistically, Lxn inhibited the nuclear translocation of Rps3 upon radiation, resulting in abnormal mitotic spindle formation and chromosome instability. Rps3 knockdown increased the radiation sensitivity of FDC-P1, confirming that the mechanism of action of Lxn is mediated by Rps3 pathway. Moreover, Lxn enhanced the cytotoxicity of chemotherapeutic agent, VP-16, on FDC-P1 cells. Our study suggests that Lxn itself not only suppresses leukemic cell growth but also potentiates the cytotoxic effect of radio- and chemotherapy on cancer cells. Lxn could be a novel molecular target that improves the efficacy of anti-cancer therapy.
机译:白血病是癌症死亡的主要原因。最近,在几种类型的实体瘤和淋巴瘤中,latexin(Lxn)基因被鉴定为潜在的抑癌基因,并且白血病细胞中Lxn的表达不存在或被下调。 Lxn是否在白血病中起抑癌作用以及涉及的分子和细胞机制尚不清楚。在这项研究中,使用髓样白血病生成的FDC-P1细胞系作为模型系统,Lxn在这些细胞中异位表达。使用蛋白质下拉测定法和质谱法,核糖体蛋白亚基3(Rps3)被鉴定为新型Lxn结合蛋白。 Lxn的异位表达抑制FDC-P1的体外生长。更令人惊讶的是,Lxn增强了伽马射线辐照引起的DNA损伤,并诱导了细胞周期停滞和大量坏死,导致FDC-P1细胞耗竭。从机理上讲,Lxn抑制了Rps3在辐射后的核易位,导致异常的有丝分裂纺锤体形成和染色体不稳定。 Rps3敲低增加了FDC-P1的辐射敏感性,证实Lxn的作用机理是由Rps3途径介导的。此外,Lxn增强了化学治疗剂VP-16对FDC-P1细胞的细胞毒性。我们的研究表明,Lxn本身不仅抑制白血病细胞的生长,而且还增强了放疗和化疗对癌细胞的细胞毒性作用。 Lxn可能是提高抗癌治疗功效的新型分子靶标。

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