Chang Yuh-Long, King Balas, Lin Shu-Chun, Kennison James A, Huang Der-Hwa
Institute of Molecular Biology, Academia Sinica, Taipei, Taiwan 115, Republic of China.
Mol Cell Biol. 2007 Aug;27(15):5486-98. doi: 10.1128/MCB.00692-07. Epub 2007 May 25.
More than a dozen trithorax group (trxG) proteins are involved in activation of Drosophila HOX genes. How they act coordinately to integrate signals from distantly located enhancers is not fully understood. The female sterile (1) homeotic (fs(1)h) gene is one of the trxG genes that is most critical for Ultrabithorax (Ubx) activation. We show that one of the two double-bromodomain proteins encoded by fs(1)h acts as an essential factor in the Ubx proximal promoter. First, overexpression of the small isoform FSH-S, but not the larger one, can induce ectopic expression of HOX genes and cause body malformation. Second, FSH-S can stimulate Ubx promoter in cultured cells through a critical proximal region in a bromodomain-dependent manner. Third, purified FSH-S can bind specifically to a motif within this region that was previously known as the ZESTE site. The physiological relevance of FSH-S is ascertained using transgenic embryos containing a modified Ubx proximal promoter and chromatin immunoprecipitation. In addition, we show that FSH-S is involved in phosphorylation of itself and other regulatory factors. We suggest that FSH-S acts as a critical component of a regulatory circuitry mediating long-range effects of distant enhancers.
十几种三胸节组(trxG)蛋白参与果蝇HOX基因的激活。它们如何协同作用以整合来自远距离增强子的信号尚不完全清楚。雌性不育(1)同源异型(fs(1)h)基因是trxG基因之一,对超双胸(Ubx)的激活最为关键。我们发现,由fs(1)h编码的两种双溴结构域蛋白之一在Ubx近端启动子中起着重要作用。首先,小异构体FSH-S而非较大的异构体的过表达可诱导HOX基因的异位表达并导致身体畸形。其次,FSH-S可通过溴结构域依赖性方式,通过关键的近端区域刺激培养细胞中的Ubx启动子。第三,纯化的FSH-S可特异性结合该区域内一个先前被称为ZESTE位点的基序。使用含有修饰的Ubx近端启动子的转基因胚胎和染色质免疫沉淀来确定FSH-S的生理相关性。此外,我们表明FSH-S参与自身和其他调节因子的磷酸化。我们认为FSH-S作为调节回路的关键组成部分,介导远距离增强子的长程效应。