de Celis J F, Barrio R
European Molecular Biology Laboratory, Meyerhofstrasse, 69117, Heidelberg, Germany.
Mech Dev. 2000 Mar 1;91(1-2):31-41. doi: 10.1016/s0925-4773(99)00261-0.
Spalt and Spalt-related encode conserved Zn-finger proteins that mediate the function of the TGF-beta molecule Decapentaplegic during the positioning of veins in the Drosophila wing. Here we show that Spalt and Spalt-related regulate the vein-specific expression of the transcription factors of the knirps and iroquois gene complexes, delimiting their domains of expression in the wing pouch. The effects of spalt/spalt-related mutations on knirps and iroquois expression are cell-autonomous, suggesting that they could be direct. The regulation of iroquois involves transcriptional repression by Spalt and Spalt-related, whereas the regulation of knirps involves a combination of transcriptional activation and repression mediated by the same genes. We suggest that the regulation of the iroquois and knirps gene complexes by Spalt and Spalt-related translates the Decapentaplegic morphogenetic gradient into precisely spaced pattern elements.
Spalt和Spalt相关基因编码保守的锌指蛋白,这些蛋白在果蝇翅膀中静脉定位过程中介导TGF-β分子Decapentaplegic的功能。我们在此表明,Spalt和Spalt相关基因调节knirps和iroquois基因复合体转录因子的静脉特异性表达,在翅芽囊中界定它们的表达域。spalt/spalt相关基因突变对knirps和iroquois表达的影响是细胞自主的,这表明它们可能是直接作用。对iroquois的调控涉及Spalt和Spalt相关基因的转录抑制,而对knirps的调控涉及由相同基因介导的转录激活和抑制的组合。我们认为,Spalt和Spalt相关基因对iroquois和knirps基因复合体的调控将Decapentaplegic形态发生梯度转化为精确间隔的模式元件。