Vander Zwan Christine J, Wheeler John C, Li Ling-Hui, Tracey William D, Gergen J Peter
Department of Biochemistry and Cell Biology and the Center for Developmental Genetics, State University of New York at Stony Brook, Stony Brook, NY 11794-5140, USA.
Blood Cells Mol Dis. 2003 Mar-Apr;30(2):207-22. doi: 10.1016/s1079-9796(03)00026-3.
DNA-binding proteins are important for regulating gene expression during development. It is widely assumed that this regulation involves sequence-specific DNA binding by these transcription factors to cognate cis-regulatory sequences of their downstream target genes. However, studies in both the Drosophila and the mouse model systems have provided examples in which the DNA-binding activity of a transcription factor is not essential for in vivo function. Using a system that allows for quantitative analysis of gene function in the Drosophila embryo, we have discovered a DNA-binding-independent activity of Runt, the founding member of the RUNX family of transcriptional regulators. Examination of the in vivo potency of a DNA-binding-defective form of Runt reveals differential requirements for DNA binding in the regulation of different downstream target genes. DNA binding is not required for establishing repression of the odd-numbered stripes of the segment polarity gene engrailed, but does contribute to Runt's role as a regulator of sloppy-paired, another downstream target gene in the pathway of segmentation. We investigate this DNA-binding-independent pathway using a genetic screen for dose-dependent modifiers of runt activity. These studies reveal that DNA-binding proteins encoded by the tramtrack locus cooperate with Runt to repress engrailed. These results provide new insights into the context-dependent regulatory functions of Runt domain proteins and provide a paradigm for understanding DNA-binding-independent regulation by developmentally important transcription factors.
DNA结合蛋白在发育过程中对基因表达的调控至关重要。人们普遍认为,这种调控涉及这些转录因子与下游靶基因的同源顺式调控序列进行序列特异性DNA结合。然而,在果蝇和小鼠模型系统中的研究都提供了一些例子,其中转录因子的DNA结合活性对体内功能并非必不可少。利用一个能够对果蝇胚胎中的基因功能进行定量分析的系统,我们发现了RUNX转录调节因子家族的创始成员Runt的一种不依赖DNA结合的活性。对Runt的一种DNA结合缺陷形式的体内效力进行检测,揭示了在调控不同下游靶基因时对DNA结合的不同需求。在建立对节段极性基因en基因奇数条纹的抑制时不需要DNA结合,但确实有助于Runt作为另一个下游靶基因sloppy-paired在分割途径中的调节因子的作用。我们使用对runt活性的剂量依赖性修饰因子进行遗传筛选来研究这种不依赖DNA结合的途径。这些研究表明,由tramtrack基因座编码的DNA结合蛋白与Runt协同作用以抑制en基因。这些结果为Runt结构域蛋白的上下文依赖性调控功能提供了新的见解,并为理解发育中重要转录因子的不依赖DNA结合的调控提供了一个范例。