Abteilung Molekulare Entwicklungsbiologie, Max-Planck-Institut für biophysikalische Chemie, Am Fassberg 11, 37077 Göttingen, Germany.
Proc Natl Acad Sci U S A. 2009 Dec 22;106(51):21695-700. doi: 10.1073/pnas.0910225106. Epub 2009 Dec 3.
Bicoid (Bcd) is the anterior determinant in Drosophila. Accordingly, loss of Bcd causes loss of head and thorax and their replacement with posterior structures. bcd mRNA is maternally deposited at the anterior pole and Bcd forms an anterior-to-posterior (AP) concentration gradient. The expression of a series of zygotic head genes is thought to be differentially regulated by distinct threshold concentrations of the Bcd gradient. Thereby Bcd functions as a morphogen, instructing fields of cells to take on specific fates. Here, we show that spatial limits of anterior genes are also set in the absence of a Bcd gradient and depend on factors of the maternal terminal system. The receptor tyrosine kinase Torso (Tor), a key component of this system, is active in the pole regions of the embryo. Its activity downregulates the maternally deposited repressor Capicua (Cic), leaving high Cic activity in the central regions and decreasingly lower Cic activities toward the poles. We show that the positions of posterior boundaries of Bcd target genes are dependent not only on Bcd, but also on Tor-mediated Cic activity. The results indicate that Cic can mediate repression through distinct binding sites within a Bcd responsive enhancer and that gene activation by Bcd is antagonized by Cic. The activating and repressive effects of Bcd and Cic, respectively, are integrated by the Bcd target gene enhancer. We conclude that the spatial domains of head gene expression are determined by Bcd in concert with Tor-dependent repressors.
Bicoid (Bcd) 是果蝇中的前决定因素。因此,Bcd 的缺失会导致头部和胸部的缺失,并被后部结构取代。bcd mRNA 在前极被母体沉积,Bcd 形成前到后的 (AP) 浓度梯度。一系列合子头部基因的表达被认为是通过 Bcd 梯度的不同阈值浓度来差异调节的。因此,Bcd 作为一种形态发生素,指导细胞区域采取特定的命运。在这里,我们表明,即使在没有 Bcd 梯度的情况下,前基因的空间限制也被设置,并且依赖于母体末端系统的因素。受体酪氨酸激酶 Torso (Tor) 是该系统的关键组成部分,在胚胎的极区活跃。它的活性下调母体沉积的抑制因子 Capicua (Cic),使中央区域的 Cic 活性高,向极区的 Cic 活性逐渐降低。我们表明,Bcd 靶基因后边界的位置不仅取决于 Bcd,还取决于 Tor 介导的 Cic 活性。结果表明,Cic 可以通过 Bcd 反应增强子内的不同结合位点介导抑制,并且 Bcd 通过 Cic 拮抗基因激活。Bcd 和 Cic 的激活和抑制作用分别被 Bcd 靶基因增强子整合。我们得出结论,头部基因表达的空间域是由 Bcd 与 Tor 依赖性抑制剂共同决定的。