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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >YAP1 is amplified and up-regulated in hedgehog-associated medulloblastomas and mediates Sonic hedgehog-driven neural precursor proliferation
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YAP1 is amplified and up-regulated in hedgehog-associated medulloblastomas and mediates Sonic hedgehog-driven neural precursor proliferation

机译:YAP1在刺猬相关的髓母细胞瘤中被扩增和上调,并介导音速刺猬驱动的神经前体增殖

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摘要

Medulloblastoma is the most common solid malignancy of childhood, with treatment side effects reducing survivors' quality of life and lethality being associated with tumor recurrence. Activation of the Sonic hedgehog (Shh) signaling pathway is implicated in human medulloblastomas. Cerebellar granule neuron precursors (CGNPs) depend on signaling by the morphogen Shh for expansion during development, and have been suggested as a cell of origin for certain medulloblastomas. Mechanisms contributing to Shh pathway-mediated proliferation and transformation remain poorly understood. We investigated interactions between Shh signaling and the recently described tumor-suppressive Hippo pathway in the developing brain and medulloblastomas. We report up-regulation of the oncogenic transcriptional coactivator yes-associated protein 1 (YAP1), which is negatively regulated by the Hippo pathway, in human medulloblastomas with aberrant Shh signaling. Consistent with conserved mechanisms between brain tumorigenesis and development, Shh induces YAP1 expression in CGNPs. Shh also promotes YAP1 nuclear localization in CGNPs, and YAP1 can drive CGNP proliferation. Furthermore, YAP1 is found in cells of the perivascular niche, where proposed tumor-repopulating cells reside. Post-irradiation, YAP1 was found in newly growing tumor cells. These findings implicate YAP1 as a new Shh effector that may be targeted by medulloblastoma therapies aimed at eliminating medulloblastoma recurrence.
机译:髓母细胞瘤是儿童期最常见的实体恶性肿瘤,其治疗副作用降低了幸存者的生活质量,致死率与肿瘤复发有关。声波刺猬(Shh)信号传导途径的激活与人类髓母细胞瘤有关。小脑颗粒神经元前体(CGNP)依赖于吗啡肽Shh的信号在发育过程中扩展,并已被建议作为某些髓母细胞瘤的起源细胞。尚不清楚促成Shh途径介导的增殖和转化的机制。我们调查了Shh信号和最近描述的发展中的大脑和髓母细胞瘤中抑制肿瘤的河马途径之间的相互作用。我们报道了在人类髓母细胞瘤中,Shh信号异常,致癌转录共激活因子是相关蛋白1(YAP1)的上调受到河马通路的负调控。与脑肿瘤发生和发展之间的保守机制一致,Shh诱导CGNPs中的YAP1表达。 Shh还促进CGNP中的YAP1核定位,而YAP1可以驱动CGNP增殖。此外,YAP1被发现在拟建的肿瘤繁殖细胞所在的血管周围环境中。辐照后,在新生长的肿瘤细胞中发现了YAP1。这些发现暗示YAP1是一种新的Shh效应子,可被旨在消除髓母细胞瘤复发的髓母细胞瘤疗法靶向。

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