Glavic Alvaro, Maris Honoré Stella, Gloria Feijóo Carmen, Bastidas Francisco, Allende Miguel L, Mayor Roberto
Millennium Nucleus in Developmental Biology, Laboratory of Developmental Biology, Facultad de Ciencias, Universidad de Chile, Santiago.
Dev Biol. 2004 Aug 1;272(1):89-103. doi: 10.1016/j.ydbio.2004.04.020.
Different types of placodes originate at the anterior border of the neural plate but it is still an unresolved question whether individual placodes arise as distinct ectodermal specializations in situ or whether all or a subset of the placodes originate from a common preplacodal field. We have analyzed the expression and function of the homeoprotein Iro1 in Xenopus and zebrafish embryos, and we have compared its expression with several preplacodal and placodal markers. Our results indicate that the iro1 genes are expressed in the preplacodal region, being one of the earliest markers for this area. We show that an interaction between the neural plate and the epidermis is able to induce the expression of several preplacodal markers, including Xiro1, by a similar mechanism to that previously shown for neural crest induction. In addition, we analyzed the role of BMP in the specification of the preplacodal field by studying the expression of the preplacodal markers Six1, Xiro1, and several specific placodal markers. We experimentally modified the level of BMP activity by three different methods. First, we implanted beads soaked with noggin in early neurula stage Xenopus embryos; second, we injected the mRNA that encodes a dominant negative of the BMP receptor into Xenopus and zebrafish embryos; and third, we grafted cells expressing chordin into zebrafish embryos. The results obtained using all three methods show that a reduction in the level of BMP activity leads to an expansion of the preplacodal and placodal region similar to what has been described for neural crest regions. By using conditional constructs of Xiro1, we performed gain and loss of function experiments. We show that Xiro1 play an important role in the specification of both the preplacodal field as well as individual placodes. We have also used inducible dominant negative and activator constructs of Notch signaling components to analyze the role of these factors on placodal development. Our results indicate that the a precise level of BMP activity is required to induce the neural plate border, including placodes and neural crest cells, that in this border the iro1 gene is activated, and that this activation is required for the specification of the placodes.
不同类型的基板起源于神经板的前缘,但个体基板是作为原位独特的外胚层特化产生,还是所有或一部分基板起源于一个共同的前基板区域,这仍然是一个未解决的问题。我们分析了爪蟾和斑马鱼胚胎中同源异型蛋白Iro1的表达和功能,并将其表达与几种前基板和基板标记物进行了比较。我们的结果表明,iro1基因在前基板区域表达,是该区域最早的标记物之一。我们发现神经板和表皮之间的相互作用能够通过与先前显示的神经嵴诱导类似的机制诱导包括Xiro1在内的几种前基板标记物的表达。此外,我们通过研究前基板标记物Six1、Xiro1和几种特定基板标记物的表达,分析了BMP在前基板区域特化中的作用。我们通过三种不同的方法实验性地改变了BMP活性水平。第一,我们在早期神经胚阶段的爪蟾胚胎中植入浸泡有头蛋白的珠子;第二,我们将编码BMP受体显性负性蛋白的mRNA注射到爪蟾和斑马鱼胚胎中;第三,我们将表达脊索蛋白的细胞移植到斑马鱼胚胎中。使用这三种方法获得的结果表明,BMP活性水平的降低导致前基板和基板区域的扩展,类似于对神经嵴区域所描述情况。通过使用Xiro1的条件构建体,我们进行了功能获得和功能丧失实验。我们表明Xiro1在前基板区域以及个体基板的特化中起重要作用。我们还使用了Notch信号成分的可诱导显性负性和激活构建体来分析这些因子在基板发育中的作用。我们的结果表明,需要精确水平的BMP活性来诱导神经板边界,包括基板和神经嵴细胞,在这个边界中iro1基因被激活,并且这种激活是基板特化所必需的。