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AUTONOMOUS AND NONAUTONOMOUS REGULATION OF WNT-MEDIATED NEURONAL POLARITY BY THE C. ELEGANS ROR KINASE CAM-1

机译:C. ELRANS ROR KINASE CAM-1对WNT介导的神经元极性的自主和非自主调节

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摘要

Wnts are a conserved family of secreted glycoproteins that regulate various developmental processes in metazoans. Three of the five C. elegans Wnts, CWN-1, CWN-2 and EGL-20, and the sole Wnt receptor of the Ror kinase family, CAM-1, are known to regulate the anterior polarization of the mechanosensory neuron ALM. Here we show that CAM-1 and the Frizzled receptor MOM-5 act in parallel pathways to control ALM polarity. We also show that CAM-1 has two functions in this process: an autonomous signaling function that promotes anterior polarization and a nonautonomous Wnt-antagonistic function that inhibits anterior polarization. These antagonistic activities can account for the weak ALM phenotypes displayed by cam-1 mutants. Our observations suggest that CAM-1 could function as a Wnt receptor in many developmental processes, but the analysis of cam-1 mutants may fail to reveal CAM-1’s role as a receptor in these processes because of its Wnt-antagonistic activity. In this model, loss of CAM-1 results in increased levels of Wnts that act through other Wnt receptors, masking CAM-1’s autonomous role as a Wnt receptor.
机译:Wnts是分泌的糖蛋白的保守家族,可调节后生动物的各种发育过程。已知五个秀丽隐杆线虫Wnt中的三个,CWN-1,CWN-2和EGL-20,以及Ror激酶家族的唯一Wnt受体,CAM-1,可调节机械感觉神经元ALM的前极化。在这里,我们显示CAM-1和卷曲的受体MOM-5在平行路径中起作用以控制ALM极性。我们还表明,CAM-1在此过程中具有两个功能:促进前极化的自主信号传导功能和抑制前极化的非自主Wnt拮抗功能。这些拮抗活性可以解释由cam-1突变体表现出的弱ALM表型。我们的观察结果表明,CAM-1可能在许多发育过程中充当Wnt受体,但是对cam-1突变体的分析可能由于其Wnt拮抗活性而无法揭示CAM-1在这些过程中作为受体的作用。在此模型中,CAM-1的缺失会导致通过其他Wnt受体起作用的Wnts水平升高,从而掩盖了CAM-1作为Wnt受体的自主作用。

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