Scholl T, Mahanta S K, Strominger J L
Department of Molecular and Cellular Biology, Harvard University, 7 Divinity Avenue, Cambridge, MA 02138, USA.
Proc Natl Acad Sci U S A. 1997 Jun 10;94(12):6330-4. doi: 10.1073/pnas.94.12.6330.
Two of the genes defective in the five complementation groups identified in the class II-negative bare lymphocyte syndrome or corresponding laboratory mutants have been cloned. One gene encodes a protein, RFX5, that is a member of the RFX family of DNA binding proteins. The other, CIITA, encodes a large protein with a defined acidic transcriptional activation domain; this protein does not interact with DNA. Expression plasmids encoding regions of RFX5 fused to the GAL4 DNA binding domain activated transcription from a reporter construct containing GAL4 sites in a cotransfection assay in the Raji human B cell line. However, these plasmids produced transcriptional activity in HeLa cells only in conjunction with interferon gamma stimulation, a condition in which expression of both CIITA and class II major histocompatibility complex surface proteins are induced. Furthermore, these plasmids were not active in RJ2.2.5, an in vitro mutagenized derivative of Raji in which both copies of CIITA are defective. Transcriptional activation by the RFX5 fusion protein could be restored in RJ2.2.5 by cotransfection with a CIITA expression plasmid. Finally, a direct interaction between RFX5 and CIITA was detected with the yeast two-hybrid and far-Western blot assays. Thus, RFX5 can activate transcription only in cooperation with CIITA. RFX5 and CIITA associate to form a complex capable of activating transcription from class II major histocompatibility complex promoters. In this complex, promoter specificity is determined by the DNA binding domain of RFX5 and the general transcription apparatus is recruited by the acidic activation domain of CIITA.
在II类阴性裸淋巴细胞综合征或相应实验室突变体中鉴定出的五个互补组中存在缺陷的两个基因已被克隆。一个基因编码一种蛋白质RFX5,它是DNA结合蛋白RFX家族的成员。另一个基因CIITA编码一种具有明确酸性转录激活结构域的大蛋白;这种蛋白不与DNA相互作用。在Raji人B细胞系的共转染试验中,编码与GAL4 DNA结合结构域融合的RFX5区域的表达质粒激活了来自含有GAL4位点的报告构建体的转录。然而,这些质粒仅在与γ干扰素刺激结合时才在HeLa细胞中产生转录活性,γ干扰素刺激是一种诱导CIITA和II类主要组织相容性复合体表面蛋白表达的条件。此外,这些质粒在RJ2.2.5中无活性,RJ2.2.5是Raji的体外诱变衍生物,其中CIITA的两个拷贝均有缺陷。通过与CIITA表达质粒共转染,RFX5融合蛋白在RJ2.2.5中的转录激活得以恢复。最后,通过酵母双杂交和Far-Western印迹分析检测到RFX5和CIITA之间存在直接相互作用。因此,RFX5仅能与CIITA协同激活转录。RFX5和CIITA结合形成一个能够激活II类主要组织相容性复合体启动子转录的复合体。在这个复合体中,启动子特异性由RFX5的DNA结合结构域决定,而通用转录装置则由CIITA的酸性激活结构域募集。