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首页> 外文期刊>Journal of Neuroscience Research >Maternal embryonic leucine zipper kinase is a key regulator of the proliferation of malignant brain tumors, including brain tumor stem cells.
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Maternal embryonic leucine zipper kinase is a key regulator of the proliferation of malignant brain tumors, including brain tumor stem cells.

机译:母体胚胎亮氨酸拉链激酶是恶性脑肿瘤(包括脑肿瘤干细胞)增殖的关键调节剂。

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Emerging evidence suggests that neural stem cells and brain tumors regulate their proliferation via similar pathways. In a previous study, we demonstrated that maternal embryonic leucine zipper kinase (Melk) is highly expressed in murine neural stem cells and regulates their proliferation. Here we describe how MELK expression is correlated with pathologic grade of brain tumors, and its expression levels are significantly correlated with shorter survival, particularly in younger glioblastoma patients. In normal human astrocytes, MELK is only faintly expressed, and MELK knockdown does not significantly influence their growth, whereas Ras and Akt overexpressing astrocytes have up-regulated MELK expression, and the effect of MELK knockdown is more prominent in these transformed astrocytes. In primary cultures from human glioblastoma and medulloblastoma, MELK knockdown by siRNA results in inhibition of the proliferation and survival of these tumors. Furthermore, we show that MELK siRNA dramatically inhibitsproliferation and, to some extent, survival of stem cells isolated from glioblastoma in vitro. These results demonstrate a critical role for MELK in the proliferation of brain tumors, including their stem cells, and suggest that MELK may be a compelling molecular target for treatment of high-grade brain tumors.
机译:新兴证据表明,神经干细胞和脑肿瘤通过相似的途径调节其增殖。在先前的研究中,我们证明了母体胚胎亮氨酸拉链激酶(Melk)在鼠神经干细胞中高度表达并调节其增殖。在这里,我们描述MELK表达如何与脑肿瘤的病理分级相关,并且其表达水平与较短的生存时间显着相关,尤其是在年轻的胶质母细胞瘤患者中。在正常的人类星形胶质细胞中,MELK仅微弱表达,并且MELK敲低并不显着影响其生长,而过表达Ras和Akt的星形胶质细胞上调了MELK表达,并且在这些转化的星形胶质细胞中MELK敲低的作用更为突出。在来自人胶质母细胞瘤和髓母细胞瘤的原代培养物中,通过siRNA抑制MELK可以抑制这些肿瘤的增殖和存活。此外,我们表明MELK siRNA显着抑制体外从胶质母细胞瘤分离的干细胞的增殖,并在一定程度上抑制其存活。这些结果证明了MELK在脑肿瘤(包括干细胞)增殖中的关键作用,并表明MELK可能是治疗高级脑肿瘤的引人注目的分子靶标。

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