Rodriguez Josana, Esteve Pilar, Weinl Christine, Ruiz José María, Fermin Yasmín, Trousse Françoise, Dwivedy Asha, Holt Christine, Bovolenta Paola
Departamento de Neurobiología del Desarrollo, Instituto Cajal, CSIC, Dr. Arce 37, Madrid 28002, Spain.
Nat Neurosci. 2005 Oct;8(10):1301-9. doi: 10.1038/nn1547. Epub 2005 Sep 18.
Axon growth is governed by the ability of growth cones to interpret attractive and repulsive guidance cues. Recent studies have shown that secreted signaling molecules known as morphogens can also act as axon guidance cues. Of the large family of Wnt signaling components, only Wnt4 and Wnt5 seem to participate directly in axon guidance. Here we show that secreted Frizzled-related protein 1 (SFRP1), a proposed Wnt signaling inhibitor, can directly modify and reorient the growth of chick and Xenopus laevis retinal ganglion cell axons. This activity does not require Wnt inhibition and is modulated by extracellular matrix molecules. Intracellularly, SFRP1 function requires G(alpha) protein activation, protein synthesis and degradation, and it is modulated by cyclic nucleotide levels. Because SFRP1 interacts with Frizzled-2 (Fz2) and interference with Fz2 expression abolishes growth cone responses to SFRP1, we propose a previously unknown function for this molecule: the ability to guide growth cone movement via the Fz2 receptor.
轴突生长受生长锥解读吸引和排斥性导向线索能力的调控。最近的研究表明,一类被称为形态发生素的分泌型信号分子也可充当轴突导向线索。在庞大的Wnt信号成分家族中,似乎只有Wnt4和Wnt5直接参与轴突导向。在此我们表明,分泌型卷曲相关蛋白1(SFRP1),一种推测的Wnt信号抑制剂,可直接改变鸡和非洲爪蟾视网膜神经节细胞轴突的生长方向。该活性并不需要抑制Wnt,且受细胞外基质分子调节。在细胞内,SFRP1的功能需要Gα蛋白激活、蛋白质合成和降解,并且受环核苷酸水平调节。由于SFRP1与卷曲蛋白-2(Fz2)相互作用,且干扰Fz2表达会消除生长锥对SFRP1的反应,我们提出该分子具有一种此前未知的功能:通过Fz2受体引导生长锥运动的能力。