Castelli-Gair J, Akam M
Wellcome/CRC Institute, Cambridge, UK.
Development. 1995 Sep;121(9):2973-82. doi: 10.1242/dev.121.9.2973.
In Drosophila, the Hox gene Ultrabithorax (Ubx) specifies the development of two different metameres--parasegment 5, which is entirely thoracic, and parasegment 6, which includes most of the first abdominal segment. Here we investigate how a single Hox gene can specify two such different morphologies. We show that, in the early embryo, cells respond similarly to UBX protein in both parasegments. The differences between parasegments 5 and 6 can be explained by the different spatial and temporal pattern of UBX protein expression in these two metameres. We find no evidence for multiple threshold responses to different levels of UBX protein. We examine in particular the role of Ubx in limb development. We show that UBX protein will repress limb primordia before 7 hours, when Ubx is expressed in the abdomen, but not later, when UBX is first expressed in the T3 limb primordium. The regulation of one downstream target of UBX, the Distalless gene, provides a model for this transition at the molecular level.
在果蝇中,同源异型基因超双胸(Ubx)决定了两个不同体节的发育——完全属于胸部的副节5,以及包括第一腹节大部分的副节6。在此,我们研究单个同源异型基因如何决定两种如此不同的形态。我们发现,在早期胚胎中,两个副节中的细胞对UBX蛋白的反应相似。副节5和6之间的差异可以通过这两个体节中UBX蛋白表达的不同时空模式来解释。我们没有发现对不同水平的UBX蛋白存在多重阈值反应的证据。我们特别研究了Ubx在肢体发育中的作用。我们发现,当Ubx在腹部表达时,UBX蛋白会在7小时前抑制肢体原基,但在UBX首次在T3肢体原基中表达后则不会。UBX的一个下游靶点Distalless基因的调控,在分子水平上为这种转变提供了一个模型。