Naylor Richard W, Jones Elizabeth A
Department of Biological Sciences, Warwick University, Coventry CV4 7AL, UK.
Development. 2009 Nov;136(21):3585-95. doi: 10.1242/dev.042606. Epub 2009 Sep 30.
Previous studies have highlighted a role for the Notch signalling pathway during pronephrogenesis in the amphibian Xenopus laevis, and in nephron development in the mammalian metanephros, yet a mechanism for this function remains elusive. Here, we further the understanding of how Notch signalling patterns the early X. laevis pronephros anlagen, a function that might be conserved in mammalian nephron segmentation. Our results indicate that early phase pronephric Notch signalling patterns the medio-lateral axis of the dorso-anterior pronephros anlagen, permitting the glomus and tubules to develop in isolation. We show that this novel function acts through the Notch effector gene hrt1 by upregulating expression of wnt4. Wnt-4 then patterns the proximal pronephric anlagen to establish the specific compartments that span the medio-lateral axis. We also identified pronephric expression of lunatic fringe and radical fringe that is temporally and spatially appropriate for a role in regulating Notch signalling in the dorso-anterior region of the pronephros anlagen. On the basis of these results, along with data from previous publications, we propose a mechanism by which the Notch signalling pathway regulates a Wnt-4 function that patterns the proximal pronephric anlagen.
先前的研究已强调Notch信号通路在两栖动物非洲爪蟾原肾发生过程中以及在哺乳动物后肾肾单位发育过程中的作用,但其发挥这一功能的机制仍不清楚。在此,我们进一步了解了Notch信号如何调控早期非洲爪蟾原肾原基的模式形成,这一功能可能在哺乳动物肾单位分段过程中保守存在。我们的结果表明,早期原肾Notch信号调控背侧前部原肾原基的中-侧轴模式形成,使肾小球和肾小管能够独立发育。我们发现,这一新功能通过上调wnt4的表达,经由Notch效应基因hrt1发挥作用。然后,Wnt-4调控近端原肾原基的模式形成,以建立跨越中-侧轴的特定区室。我们还确定了lunatic fringe和radical fringe在原肾原基中的表达,其时间和空间模式适合于在原肾原基背侧前部区域调节Notch信号。基于这些结果以及先前发表的数据,我们提出了一种机制,即Notch信号通路调控Wnt-4的功能,从而决定近端原肾原基的模式。