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It takes two to tango a dance between the cells of origin and cancer stem cells in the Drosophila larval brain

机译:探戈需要两个时间果蝇幼虫大脑中的起源细胞和癌症干细胞之间起舞

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摘要

During malignant transformation the cells of origin give rise to cancer stem cells which possess the capacity to undergo limitless rounds of self-renewing division, regenerating themselves while producing more tumor cells. Within normal tissues, a limitless self-renewal capacity is unique to the stem cells, which divide asymmetrically to produce more restricted progenitors. Accumulating evidence suggests that misregulation of the self-renewal machinery in stem cell progeny can lead to tumorigenesis, but how it influences the properties of the resulting tumors remains unclear. Studies of the type II neural stem cell (neuroblast) lineages in the Drosophila larval brain have identified a regulatory cascade that promotes commitment to a progenitor cell identity by restricting their response to the self-renewal machinery. Brain tumor (Brat) and Numb initiate this cascade by asymmetrically extinguishing the activity of the self-renewal factors. Subsequently, Earmuff (Erm) and the SWI/SNF complex stably restrict the competence of the progenitor cell to respond to reactivation of self-renewal mechanisms. Together, this cascade programs the progenitor cell to undergo limited rounds of division, generating exclusive differentiated progeny. Here we review how defects in this cascade lead to tumor initiation and how inhibiting the self-renewal mechanisms may be an effective strategy to block CSC expansion.
机译:在恶性转化过程中,起源细胞产生了癌症干细胞,该干细胞具有进行无限次自我更新分裂的能力,可以自我再生,同时产生更多的肿瘤细胞。在正常组织内,无限制的自我更新能力是干细胞所特有的,干细胞不对称分裂产生更多受限制的祖细胞。越来越多的证据表明,干细胞后代中自我更新机制的失调会导致肿瘤发生,但是尚不清楚它如何影响所产生肿瘤的性质。对果蝇幼虫大脑中的II型神经干细胞(成神经细胞)谱系的研究已经确定了调节级联反应,该反应级联通过限制其对自我更新机制的反应来促进对祖细胞身份的承诺。脑瘤(Brat)和Numb通过不对称地消除自我更新因子的活性来启动这种级联反应。随后,耳罩(Erm)和SWI / SNF复合物稳定地限制了祖细胞对自我更新机制的激活作出反应的能力。这些级联一起使祖细胞编程进行有限的轮回分裂,从而产生专有的分化后代。在这里,我们回顾了这种级联中的缺陷如何导致肿瘤的开始以及如何抑制自我更新机制可能是阻止CSC扩展的有效策略。

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  • 页码 63–69
  • 总页数 16
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  • 入库时间 2022-08-21 11:19:25

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