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首页> 外文期刊>Stem Cells >Cool-1-mediated inhibition of c-Cbl modulates multiple critical properties of glioblastomas, including the ability to generate tumors in vivo
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Cool-1-mediated inhibition of c-Cbl modulates multiple critical properties of glioblastomas, including the ability to generate tumors in vivo

机译:Cool-1介导的c-Cbl抑制作用可调节胶质母细胞瘤的多个关键特性,包括体内产生肿瘤的能力

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We discovered that glioblastoma (GBM) cells use Cool-1/β-pix to inhibit normal activation of the c-Cbl ubiquitin ligase via the redox/Fyn/c-Cbl pathway and that c-Cbl inhibition is critical for GBM cell function. Restoring normal c-Cbl activity by Cool-1 knockdown in vitro reduced GBM cell division, almost eliminated generation of adhesion-independent spheroids, reduced the representation of cells expressing antigens thought to identify tumor initiating cells (TICs), reduced levels of several proteins of critical importance in TIC function (such as Notch-1 and Sox2), and increased sensitivity to BCNU (carmustine) and temozolomide (TMZ). In vivo, Cool-1 knockdown greatly suppressed the ability of GBM cells to generate tumors, an outcome that was c-Cbl dependent. In contrast, Cool-1 knockdown did not reduce division or increase BCNU or TMZ sensitivity in primary glial progenitor cells and Cool-1/c-Cbl complexes were not found in normal brain tissue. Our studies provide the first evidence that Cool-1 may be critical in the biology of human tumors, that suppression of c-Cbl by Cool-1 may be critical for generation of at least a subset of GBMs and offer a novel target that appears to be selectively necessary for TIC function and modulates chemoresistance in GBM cells. Targeting such proteins that inhibit c-Cbl offers potentially attractive opportunities for therapeutic development.
机译:我们发现胶质母细胞瘤(GBM)细胞使用Cool-1 /β-pix通过氧化还原/ Fyn / c-Cbl途径抑制c-Cbl泛素连接酶的正常激活,而c-Cbl抑制对于GBM细胞功能至关重要。通过体外Cool-1敲低恢复正常的c-Cbl活性,减少了GBM细胞分裂,几乎消除了黏附非依赖性球体的产生,减少了表达抗原的细胞的表达,这种抗原被认为可以识别肿瘤起始细胞(TICs),降低了几种蛋白质的水平在TIC功能(例如Notch-1和Sox2)中起着至关重要的作用,并提高了对BCNU(卡莫司汀)和替莫唑胺(TMZ)的敏感性。在体内,Cool-1敲低极大地抑制了GBM细胞产生肿瘤的能力,这一结果是c-Cbl依赖性的。相比之下,Cool-1敲低并没有减少或增加初级神经胶质祖细胞中的BCNU或TMZ敏感性,并且在正常脑组织中未发现Cool-1 / c-Cbl复合物。我们的研究提供了第一个证据,即Cool-1在人类肿瘤生物学中可能至关重要,Cool-1对c-Cbl的抑制可能对至少一部分GBM的产生至关重要,并且提供了一种新的靶标,可以证明TIC功能选择性地调节GBM细胞中的化学抗性。靶向抑制c-Cbl的蛋白质可为治疗发展提供潜在的有吸引力的机会。

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