Wang Xuejiao, Xu Siqun, Rivolta Carlo, Li Lili Y, Peng Guang-Hua, Swain Prabodh K, Sung Ching-Hwa, Swaroop Anand, Berson Eliot L, Dryja Thaddeus P, Chen Shiming
Department of Ophthalmology and Visual Sciences, Molecular Biology and Pharmacology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Biol Chem. 2002 Nov 8;277(45):43288-300. doi: 10.1074/jbc.M207952200. Epub 2002 Sep 4.
Crx (cone-rod homeobox) is a homeodomain transcription factor implicated in regulating the expression of photoreceptor and pineal genes. To identify proteins that interact with Crx in the retina, we carried out a yeast two-hybrid screen of a retinal cDNA library. One of the identified clones encodes Baf (barrier to autointegration factor), which was previously shown to have a role in mitosis and retroviral integration. Additional biochemical assays provided supporting evidence for a Baf-Crx interaction. The Baf protein is detectable in all nuclear layers of the mouse retina, including the photoreceptors and the bipolar cells where Crx is expressed. Transient transfection assays with a rhodopsin-luciferase reporter in HEK293 cells demonstrate that overexpression of Baf represses Crx-mediated transactivation, suggesting that Baf acts as a negative regulator of Crx. Consistent with this role for Baf, an E80A mutation of CRX associated with cone-rod dystrophy has a higher than normal transactivation potency but a reduced interaction with Baf. Although our studies did not identify a causative Baf mutation in retinopathies, we suggest that Baf may contribute to the phenotype of a photoreceptor degenerative disease by modifying the activity of Crx. In view of the ubiquitous expression of Baf, we hypothesize that it may play a role in regulating tissue- or cell type-specific gene expression by interacting with homeodomain transcription factors.
Crx(视锥-视杆同源框)是一种同源结构域转录因子,参与调节光感受器和松果体基因的表达。为了鉴定在视网膜中与Crx相互作用的蛋白质,我们对视网膜cDNA文库进行了酵母双杂交筛选。其中一个鉴定出的克隆编码Baf(自身整合障碍因子),该因子先前已被证明在有丝分裂和逆转录病毒整合中起作用。其他生化分析为Baf与Crx的相互作用提供了支持证据。Baf蛋白在小鼠视网膜的所有核层中均可检测到,包括表达Crx的光感受器和双极细胞。在HEK293细胞中用视紫红质-荧光素酶报告基因进行的瞬时转染分析表明,Baf的过表达会抑制Crx介导的反式激活,这表明Baf作为Crx的负调节因子发挥作用。与Baf的这一作用一致,与视锥-视杆营养不良相关的CRX的E80A突变具有高于正常的反式激活能力,但与Baf的相互作用减弱。尽管我们的研究未在视网膜病变中鉴定出致病性Baf突变,但我们认为Baf可能通过改变Crx的活性而导致光感受器退行性疾病的表型。鉴于Baf的广泛表达,我们推测它可能通过与同源结构域转录因子相互作用,在调节组织或细胞类型特异性基因表达中发挥作用。