Azpiazu Natalia, Morata Ginés
Centro de Biología Molecular (CSIC - UAM), Universidad Autónoma de Madrid, Madrid, Spain.
Mech Dev. 2002 Nov;119(1):55-67. doi: 10.1016/s0925-4773(02)00295-2.
The Drosophila leg is subdivided into two mutually antagonistic proximal and distal domains. The proximal domain is defined by the activity of the homeobox genes homothorax and extradenticle and the distal one by the Dpp/Wg targets Distal-less (Dll) and dachshund (dac). It is known that hth/exd function prevents the activity of Dpp and Wg response genes and that cells deficient for exd activity in the proximal domain differentiate pattern elements corresponding to more distal leg regions. We report new results on the role of hth/exd antagonising the Dpp pathway. In cells expressing hth in the distal leg, there is a debilitation of the Dpp pathway which is reflected in lower levels of Mad phosphorylation and in increased levels of the receptor thick veins. Ectopic hth expression in the distal leg results in JNK-mediated apoptosis, decreased growth and pattern abnormalities. It also causes a general proximalisation of the appendage, which can be explained by interference with the Dpp and Wg pathways. We also report that the repression by hth/exd of the Dpp and Wg target Distal-less is not achieved at the level of transcription but preventing the activation of Dll target genes. We propose that hth/exd function contributes to the normal identity of proximal cells both by limiting the influence of the Dpp and Wg pathways and by activating proximal genes like teashirt (tsh) and aristaless (al).
果蝇的腿部被细分为两个相互拮抗的近端和远端区域。近端区域由同源异型框基因同胸(homothorax)和额外齿(extradenticle)的活性定义,而远端区域由Dpp/Wg的靶基因无翅缺刻蛋白(Distal-less,Dll)和腊肠蛋白(dachshund,dac)定义。已知hth/exd的功能会阻止Dpp和Wg反应基因的活性,并且近端区域中exd活性缺失的细胞会分化出对应于腿部更远端区域的模式元件。我们报告了关于hth/exd拮抗Dpp信号通路作用的新结果。在腿部远端表达hth的细胞中,Dpp信号通路减弱,这表现为Mad磷酸化水平降低以及受体粗脉(thick veins)水平升高。在腿部远端异位表达hth会导致JNK介导的细胞凋亡、生长减缓以及模式异常。它还会导致附肢普遍向近端化,这可以通过对Dpp和Wg信号通路的干扰来解释。我们还报告称,hth/exd对Dpp和Wg靶基因无翅缺刻蛋白的抑制并非在转录水平实现,而是通过阻止Dll靶基因的激活来实现。我们提出,hth/exd的功能通过限制Dpp和Wg信号通路的影响以及激活诸如短袖蛋白(teashirt,tsh)和无触角蛋白(aristaless,al)等近端基因,有助于近端细胞的正常特性形成。