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首页> 外文期刊>Brain pathology >STAT3 Serine 727 Phosphorylation: A Relevant Target to Radiosensitize Human Glioblastoma
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STAT3 Serine 727 Phosphorylation: A Relevant Target to Radiosensitize Human Glioblastoma

机译:STAT3丝氨酸727磷酸化:放射敏感性人类胶质母细胞瘤的相关目标。

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Radiotherapy is an essential component of glioma standard treatment. Glioblastomas (GBM), however, display an important radioresistance leading to tumor recurrence. To improve patient prognosis, there is a need to radiosensitize GBM cells and to circumvent the mechanisms of resistance caused by interactions between tumor cells and their microenvironment. STAT3 has been identified as a therapeutic target in glioma because of its involvement in mechanisms sustaining tumor escape to both standard treatment and immune control. Here, we studied the role of STAT3 activation on tyrosine 705 (Y705) and serine 727 (S727) in glioma radioresistance. This study explored STAT3 phosphorylation on Y705 (pSTAT3-Y705) and S727 (pSTAT3-S727) in glioma cell lines and in clinical samples. Radiosensitizing effect of STAT3 activation down-modulation by Go6976 was explored. In a panel of 15 human glioma cell lines, we found that the level of pSTAT3-S727 was correlated to intrinsic radioresistance. Moreover, treating GBM cells with Go6976 resulted in a highly significant radiosensitization associated to a concomitant pSTAT3-S727 down-modulation only in GBM cell lines that exhibited no or weak pSTAT3-Y705. We report the constitutive activation of STAT3-S727 in all GBM clinical samples. Targeting pSTAT3-S727 mainly in pSTAT3-Y705-negative GBM could be a relevant approach to improve radiation therapy.
机译:放射疗法是神经胶质瘤标准治疗的重要组成部分。但是,胶质母细胞瘤(GBM)显示出重要的放射线抗性,导致肿瘤复发。为了改善患者的预后,需要对GBM细胞进行放射增敏,并规避由肿瘤细胞与其微环境之间的相互作用引起的耐药机制。 STAT3已被确定为神经胶质瘤的治疗靶标,因为它参与维持肿瘤逃逸至标准治疗和免疫控制的机制。在这里,我们研究了STAT3激活对神经胶质瘤放射抵抗中的酪氨酸705(Y705)和丝氨酸727(S727)的作用。这项研究探讨了胶质瘤细胞系和临床样品中Y705(pSTAT3-Y705)和S727(pSTAT3-S727)上的STAT3磷酸化。探索了Go6976对STAT3激活下调的放射增敏作用。在一组15个人类神经胶质瘤细胞系中,我们发现pSTAT3-S727的水平与内在抗辐射性相关。而且,仅在不表现出pSTAT3-Y705或弱pSTAT3-Y705的GBM细胞系中,用Go6976处理GBM细胞导致与伴随的pSTAT3-S727下调相关的高度显着的放射敏化。我们报告了在所有GBM临床样品中STAT3-S727的组成型激活。主要针对pSTAT3-Y705阴性GBM中的pSTAT3-S727,可能是改善放射治疗的一种相关方法。

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