Organogenesis and Neurogenesis Group, Center for Developmental Biology, RIKEN, Kobe, Japan.
Development. 2010 Oct;137(19):3293-302. doi: 10.1242/dev.051136.
During early embryogenesis, the neural plate is specified along the anterior-posterior (AP) axis by the action of graded patterning signals. In particular, the attenuation of canonical Wnt signals plays a central role in the determination of the anterior brain region. Here, we show that the extracellular matrix (ECM) protein Del1, expressed in the anterior neural plate, is essential for forebrain development in the Xenopus embryo. Overexpression of Del1 expands the forebrain domain and promotes the formation of head structures, such as the eye, in a Chordin-induced secondary axis. Conversely, the inhibition of Del1 function by a morpholino oligonucleotide (MO) represses forebrain development. Del1 also augments the expression of forebrain markers in neuralized animal cap cells, whereas Del1-MO suppresses them. We previously reported that Del1 interferes with BMP signaling in the dorsal-ventral patterning of the gastrula marginal zone. By contrast, we demonstrate here that Del1 function in AP neural patterning is mediated mainly by the inhibition of canonical Wnt signaling. Wnt-induced posteriorization of the neural plate is counteracted by Del1, and the Del1-MO phenotype (posteriorization) is reversed by Dkk1. Topflash reporter assays show that Del1 suppresses luciferase activities induced by Wnt1 and beta-catenin. This inhibitory effect of Del1 on canonical Wnt signaling, but not on BMP signaling, requires the Ror2 pathway, which is implicated in non-canonical Wnt signaling. These findings indicate that the ECM protein Del1 promotes forebrain development by creating a local environment that attenuates the cellular response to posteriorizing Wnt signals via a unique pathway.
在胚胎早期发生过程中,神经板沿着前后(AP)轴由分级模式信号的作用来指定。特别是,经典 Wnt 信号的衰减在确定前脑区域方面起着核心作用。在这里,我们表明,在神经板前部表达的细胞外基质(ECM)蛋白 Del1 对于 Xenopus 胚胎的前脑发育是必不可少的。Del1 的过表达会扩大前脑区域,并在 Chordin 诱导的次生轴中促进头结构的形成,例如眼睛。相反,通过 morpholino 寡核苷酸(MO)抑制 Del1 功能会抑制前脑发育。Del1 还会增强神经化动物帽细胞中前脑标记物的表达,而 Del1-MO 则抑制它们。我们之前报道 Del1 会干扰原肠胚边缘区背腹模式形成中的 BMP 信号。相比之下,我们在这里证明 Del1 在 AP 神经模式形成中的功能主要是通过抑制经典 Wnt 信号来介导的。Del1 拮抗 Wnt 诱导的神经板后化,并且 Del1-MO 表型(后化)可以通过 Dkk1 逆转。Topflash 报告基因检测表明 Del1 抑制 Wnt1 和β-连环蛋白诱导的荧光素酶活性。Del1 对经典 Wnt 信号的这种抑制作用,而不是对 BMP 信号的抑制作用,需要 Ror2 途径,该途径涉及非经典 Wnt 信号。这些发现表明,ECM 蛋白 Del1 通过创建局部环境来促进前脑发育,该环境通过独特的途径减弱了细胞对后化 Wnt 信号的反应。