Furlong E E, Andersen E C, Null B, White K P, Scott M P
Department of Developmental Biology, Howard Hughes Medical Institute, Beckman Center B300, Stanford University School of Medicine, Stanford, CA 94305-5329, USA.
Science. 2001 Aug 31;293(5535):1629-33. doi: 10.1126/science.1062660. Epub 2001 Aug 2.
The transcription factor Twist initiates Drosophila mesoderm development, resulting in the formation of heart, somatic muscle, and other cell types. Using a Drosophila embryo sorter, we isolated enough homozygous twist mutant embryos to perform DNA microarray experiments. Transcription profiles of twist loss-of-function embryos, embryos with ubiquitous twist expression, and wild-type embryos were compared at different developmental stages. The results implicate hundreds of genes, many with vertebrate homologs, in stage-specific processes in mesoderm development. One such gene, gleeful, related to the vertebrate Gli genes, is essential for somatic muscle development and sufficient to cause neural cells to express a muscle marker.
转录因子Twist启动果蝇中胚层发育,导致心脏、体肌和其他细胞类型的形成。利用果蝇胚胎分选仪,我们分离出足够数量的纯合twist突变胚胎以进行DNA微阵列实验。在不同发育阶段比较了twist功能丧失胚胎、普遍表达twist的胚胎和野生型胚胎的转录谱。结果表明,数百个基因(其中许多与脊椎动物同源基因)参与中胚层发育的特定阶段过程。其中一个基因gleeful与脊椎动物Gli基因相关,对体肌发育至关重要,并且足以使神经细胞表达肌肉标记物。