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活性受体酪氨酸激酶,但不是 Brachyury,足以在斑马鱼中引发脊索瘤。

Active receptor tyrosine kinases, but not Brachyury, are sufficient to trigger chordoma in zebrafish.

机构信息

Institute of Molecular Life Sciences, University of Zürich, 8057 Zürich, Switzerland.

Institute of Neuropathology, University Hospital Zürich, 8091 Zürich, Switzerland.

出版信息

Dis Model Mech. 2019 Jul 16;12(7):dmm039545. doi: 10.1242/dmm.039545.

Abstract

The aberrant activation of developmental processes triggers diverse cancer types. Chordoma is a rare, aggressive tumor arising from transformed notochord remnants. Several potentially oncogenic factors have been found to be deregulated in chordoma, yet causation remains uncertain. In particular, sustained expression of - encoding the notochord regulator protein brachyury - is hypothesized as a key driver of chordoma, yet experimental evidence is absent. Here, we employ a zebrafish chordoma model to identify the notochord-transforming potential of implicated genes We find that Brachyury, including a form with augmented transcriptional activity, is insufficient to initiate notochord hyperplasia. In contrast, the chordoma-implicated receptor tyrosine kinases (RTKs) EGFR and Kdr/VEGFR2 are sufficient to transform notochord cells. Aberrant activation of RTK/Ras signaling attenuates processes required for notochord differentiation, including the unfolded protein response and endoplasmic reticulum stress pathways. Our results provide the first evidence against a tumor-initiating potential of Brachyury in the notochord, and imply activated RTK signaling as a possible initiating event in chordoma. Furthermore, our work points at modulating endoplasmic reticulum and protein stress pathways as possible therapeutic avenues against chordoma.

摘要

发育过程的异常激活引发了多种癌症类型。脊索瘤是一种罕见的、侵袭性的肿瘤,来源于转化的脊索残余物。已经发现几种潜在的致癌因子在脊索瘤中失调,但因果关系仍不确定。特别是,编码脊索调节蛋白 brachyury 的 - 的持续表达被假设为脊索瘤的关键驱动因素,但缺乏实验证据。在这里,我们利用斑马鱼脊索瘤模型来鉴定涉及的基因的脊索转化潜力。我们发现,Brachyury,包括转录活性增强的形式,不足以引发脊索过度增生。相比之下,涉及的受体酪氨酸激酶(RTKs)EGFR 和 Kdr/VEGFR2 足以转化脊索细胞。RTK/Ras 信号的异常激活削弱了脊索分化所必需的过程,包括未折叠蛋白反应和内质网应激途径。我们的结果首次提供了 Brachyury 在脊索中没有肿瘤起始潜力的证据,并暗示激活的 RTK 信号可能是脊索瘤的一个起始事件。此外,我们的工作指出调节内质网和蛋白质应激途径可能是对抗脊索瘤的一种可能的治疗途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0baf/6679381/a598177c00ff/dmm-12-039545-g1.jpg

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