Shiotsugu Jason, Katsuyama Yu, Arima Kayo, Baxter Allison, Koide Tetsuya, Song Jihwan, Chandraratna Roshantha A S, Blumberg Bruce
Department of Developmental and Cell Biology, University of California, Irvine, CA 92697-2300, USA.
Development. 2004 Jun;131(11):2653-67. doi: 10.1242/dev.01129. Epub 2004 May 5.
Anteroposterior (AP) patterning of the developing CNS is crucial for both regional specification and the timing of neurogenesis. Several important factors are involved in AP patterning, including members of the WNT and FGF growth factor families, retinoic acid receptors, and HOX genes. We have examined the interactions between FGF and retinoic signaling pathways. Blockade of FGF signaling downregulates the expression of members of the RAR signaling pathway, RARalpha, RALDH2 and CYP26. Overexpression of a constitutively active RARalpha2 rescues the effects of FGF blockade on the expression of XCAD3 and HOXB9. This suggests that RARalpha2 is required as a downstream target of FGF signaling for the posterior expression of XCAD3 and HOXB9. Surprisingly, we found that posterior expression of FGFR1 and FGFR4 was dependent on the expression of RARalpha2. Anterior expression was also altered with FGFR1 expression being lost, whereas FGFR4 expression was expanded beyond its normal expression domain. RARalpha2 is required for the expression of XCAD3 and HOXB9, and for the ability of XCAD3 to induce HOXB9 expression. We conclude that RARalpha2 is required at multiple points in the posteriorization pathway, suggesting that correct AP neural patterning depends on a series of mutually interactive feedback loops among FGFs, RARs and HOX genes.
发育中的中枢神经系统(CNS)的前后模式形成对于区域特化和神经发生的时间安排都至关重要。有几个重要因素参与了前后模式形成,包括WNT和FGF生长因子家族的成员、视黄酸受体以及HOX基因。我们研究了FGF和视黄酸信号通路之间的相互作用。阻断FGF信号会下调RAR信号通路成员RARα、RALDH2和CYP26的表达。组成型活性RARα2的过表达可挽救FGF阻断对XCAD3和HOXB9表达的影响。这表明RARα2作为FGF信号的下游靶点,对于XCAD3和HOXB9的后部表达是必需的。令人惊讶的是,我们发现FGFR1和FGFR4的后部表达依赖于RARα2的表达。前部表达也发生了改变,FGFR1的表达丧失,而FGFR4的表达扩展到其正常表达域之外。RARα2对于XCAD3和HOXB9的表达以及XCAD3诱导HOXB9表达的能力是必需的。我们得出结论,RARα2在后部化途径的多个点上是必需的,这表明正确的前后神经模式形成依赖于FGFs、RARs和HOX基因之间一系列相互作用的反馈环。