非典型的 WNT5A-ROR 信号传导:古老发育途径的新视角

2区 生物学 Q1 Biochemistry, Genetics and Molecular Biology
Current Topics in Developmental Biology Pub Date : 2023-01-01 Epub Date: 2023-03-17 DOI:10.1016/bs.ctdb.2023.01.009
Sara E Konopelski Snavely, Srisathya Srinivasan, Courtney A Dreyer, Jia Tan, Kermit L Carraway, Hsin-Yi Henry Ho
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引用次数: 0

摘要

事实证明,解密非经典 WNT 信号转导既令人着迷,又充满挑战。非经典 WNT 配体在近 30 年前被发现,它独立于转录共激活因子 β-catenin 发出信号,在发育过程中调节一系列形态发生过程。然而,非经典 WNT 功能的分子和细胞机制仍然模糊不清。各种模型系统的最新研究结果共同定义了非经典 WNT 核心通路,该通路由原型非经典 WNT 配体 WNT5A、受体酪氨酸激酶 ROR、七跨膜受体 Frizzled 和细胞质支架蛋白 Dishevelled 组成。重要的是,这些信号传导元件的突变都会导致罗宾诺综合征(Robinow Syndrome),这是一种以严重组织形态发生异常为特征的先天性疾病。此外,该通路的失调还与癌症转移有关。随着有关 WNT5A-ROR 通路的新知识的不断增加,对这些突变进行建模可能会对该通路的生理调控和 WNT5A-ROR 驱动疾病的病因提供重要的启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non-canonical WNT5A-ROR signaling: New perspectives on an ancient developmental pathway.

Deciphering non-canonical WNT signaling has proven to be both fascinating and challenging. Discovered almost 30 years ago, non-canonical WNT ligands signal independently of the transcriptional co-activator β-catenin to regulate a wide range of morphogenetic processes during development. The molecular and cellular mechanisms that underlie non-canonical WNT function, however, remain nebulous. Recent results from various model systems have converged to define a core non-canonical WNT pathway consisting of the prototypic non-canonical WNT ligand, WNT5A, the receptor tyrosine kinase ROR, the seven transmembrane receptor Frizzled and the cytoplasmic scaffold protein Dishevelled. Importantly, mutations in each of these signaling components cause Robinow syndrome, a congenital disorder characterized by profound tissue morphogenetic abnormalities. Moreover, dysregulation of the pathway has also been linked to cancer metastasis. As new knowledge concerning the WNT5A-ROR pathway continues to grow, modeling these mutations will likely provide crucial insights into both the physiological regulation of the pathway and the etiology of WNT5A-ROR-driven diseases.

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CiteScore
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