Estes P, Mosher J, Crews S T
Department of Biochemistry and Biophysics, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, 27599-7260, USA.
Dev Biol. 2001 Apr 1;232(1):157-75. doi: 10.1006/dbio.2001.0174.
The Drosophila single-minded gene controls CNS midline cell development by both activating midline gene expression and repressing lateral CNS gene expression in the midline cells. The mechanism by which Single-minded represses transcription was examined using the ventral nervous system defective gene as a target gene. Transgenic-lacZ analysis of constructs containing fragments of the ventral nervous system defective regulatory region identified sequences required for lateral CNS transcription and midline repression. Elimination of Single-minded:Tango binding sites within the ventral nervous system defective gene did not affect midline repression. Mutants of Single-minded that removed the DNA binding and transcriptional activation regions abolished ventral nervous system defective repression, as well as transcriptional activation of other genes. The replacement of the Single-minded transcriptional activation region with a heterologous VP16 transcriptional activation region restored the ability of Single-minded to both activate and repress transcription. These results indicate that Single-minded indirectly represses transcription by activating the expression of repressive factors. Single-minded provides a model system for how regulatory proteins that act only as transcriptional activators can control lineage-specific transcription in both positive and negative modes.
果蝇的单-minded基因通过激活中线基因表达和抑制中线细胞中的外侧中枢神经系统基因表达来控制中枢神经系统中线细胞的发育。以腹侧神经系统缺陷基因作为靶基因,研究了单-minded抑制转录的机制。对含有腹侧神经系统缺陷调控区片段的构建体进行转基因-lacZ分析,确定了外侧中枢神经系统转录和中线抑制所需的序列。消除腹侧神经系统缺陷基因内的单-minded:Tango结合位点不影响中线抑制。去除DNA结合和转录激活区域的单-minded突变体消除了腹侧神经系统缺陷抑制以及其他基因的转录激活。用异源VP16转录激活区域取代单-minded转录激活区域,恢复了单-minded激活和抑制转录的能力。这些结果表明,单-minded通过激活抑制因子的表达间接抑制转录。单-minded为仅作为转录激活剂的调节蛋白如何以正向和负向模式控制谱系特异性转录提供了一个模型系统。