Schulz R A, Chromey C, Lu M F, Zhao B, Olson E N
Department of Biochemistry and Molecular Biology, University of Texas, MD Anderson Cancer Center, Houston 77030, USA.
Oncogene. 1996 Apr 18;12(8):1827-31.
D-MEF2 is a MADS domain transcription factor expressed in the cardiac, somatic, and visceral muscle cell lineages in the Drosophila embryo. Genetic studies have demonstrated that D-mef2 gene function is required for the proper differentiation of all three of these muscle types. We show that D-MEF2 is also expressed in a limited number of other cells types during development, including Kenyon cells present in the mushroom bodies of the Drosophila brain. This finding suggests a role for D-mef2 in neuron differentiation. To investigate D-mef2 expression in muscle and Kenyon cells, we assayed 26 kb of D-mef2 5'-flanking and intragenic DNA for regulatory sequences controlling the expression of the gene. Our results show that separable enhancer sequences direct D-mef2 gene expression in the myogenic and neuronal cell lineages. The identification of these regulatory DNAs provides a starting point for the analysis of transcriptional regulators controlling the cell-specific expression of D-mef2 and a means to address the function of D-mef2 in Kenyon cell differentiation.
D-MEF2是一种MADS结构域转录因子,在果蝇胚胎的心脏、体壁和内脏肌肉细胞谱系中表达。遗传学研究表明,D-mef2基因功能对于这三种肌肉类型的正常分化是必需的。我们发现,在发育过程中,D-MEF2也在其他有限数量的细胞类型中表达,包括果蝇大脑蘑菇体中的肯扬细胞。这一发现表明D-mef2在神经元分化中发挥作用。为了研究D-mef2在肌肉和肯扬细胞中的表达,我们检测了26 kb的D-mef2 5'侧翼和基因内DNA,以寻找控制该基因表达的调控序列。我们的结果表明,可分离的增强子序列指导D-mef2基因在肌源性和神经元细胞谱系中的表达。这些调控DNA的鉴定为分析控制D-mef2细胞特异性表达的转录调节因子提供了一个起点,也为研究D-mef2在肯扬细胞分化中的功能提供了一种方法。