Department of Neurobiology, Harvard Medical School, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 2012 Mar 13;109(11):4044-51. doi: 10.1073/pnas.1200421109. Epub 2012 Feb 17.
Wnts make up a large family of extracellular signaling molecules that play crucial roles in development and disease. A subset of noncanonical Wnts signal independently of the transcription factor β-catenin by a mechanism that regulates key morphogenetic movements during embryogenesis. The best characterized noncanonical Wnt, Wnt5a, has been suggested to signal via a variety of different receptors, including the Ror family of receptor tyrosine kinases, the Ryk receptor tyrosine kinase, and the Frizzled seven-transmembrane receptors. Whether one or several of these receptors mediates the effects of Wnt5a in vivo is not known. Through loss-of-function experiments in mice, we provide conclusive evidence that Ror receptors mediate Wnt5a-dependent processes in vivo and identify Dishevelled phosphorylation as a physiological target of Wnt5a-Ror signaling. The absence of Ror signaling leads to defects that mirror phenotypes observed in Wnt5a null mutant mice, including decreased branching of sympathetic neuron axons and major defects in aspects of embryonic development that are dependent upon morphogenetic movements, such as severe truncation of the caudal axis, the limbs, and facial structures. These findings suggest that Wnt5a-Ror-Dishevelled signaling constitutes a core noncanonical Wnt pathway that is conserved through evolution and is crucial during embryonic development.
Wnts 构成了一个庞大的细胞外信号分子家族,在发育和疾病中发挥着关键作用。非经典 Wnts 的一个亚类通过一种调节胚胎发生过程中关键形态发生运动的机制,独立于转录因子β-catenin 信号传导。最具特征性的非经典 Wnt,Wnt5a,据推测通过多种不同的受体进行信号传导,包括受体酪氨酸激酶 Ror 家族、Ryk 受体酪氨酸激酶和七跨膜受体 Frizzled。这些受体中的一个或几个是否介导 Wnt5a 在体内的作用尚不清楚。通过在小鼠中进行功能丧失实验,我们提供了确凿的证据表明 Ror 受体在体内介导 Wnt5a 依赖性过程,并确定 Dishevelled 磷酸化是 Wnt5a-Ror 信号的生理靶标。Ror 信号的缺失导致与 Wnt5a 缺失突变体小鼠观察到的表型相似的缺陷,包括交感神经元轴突分支减少以及依赖形态发生运动的胚胎发育方面的主要缺陷,例如尾轴、肢体和面部结构的严重截断。这些发现表明,Wnt5a-Ror-Dishevelled 信号传导构成了一个核心的非经典 Wnt 途径,该途径在进化过程中是保守的,并且在胚胎发育过程中至关重要。