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II类主要组织相容性复合体转录突变体在高阶复合体形成方面存在缺陷。

Class II MHC transcriptional mutants are defective in higher order complex formation.

作者信息

Riley J L, Boss J M

机构信息

Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, GA 30322.

出版信息

J Immunol. 1993 Dec 15;151(12):6942-53.

PMID:8258702
Abstract

Human class II MHC genes are regulated in part by a series of conserved upstream sequence elements termed the X1, X2, and Y boxes. Class II MHC transcriptional mutant B cell lines have been defined that differ with regard to the presence of RFX, an X1 box DNA-binding activity. To further characterize these mutant cell lines, we tested the ability of these conserved upstream elements to respond to the presence of known transcriptional activation domains. A series of HLA-DRA promoter reporter constructions carrying Gal4 binding sites and GAL4 fusion protein expression vectors were cotransfected into both wild type B cells and mutant B cells representing the two RFX phenotypes. Regardless of RFX or class II phenotype, the activation domains of GAL4-VP16 and GAL4-E1a could synergistically stimulate expression of constructions containing both the X2 and Y boxes. GAL4-VP16- and GAL4-E1a-mediated expression was inhibited by the presence of the X1 box in cells that contained RFX. In mutant cells that lacked RFX, GAL4-VP16 activation was not inhibited. In the RFX-positive class II mutant cell line RJ2.2.5, the X1 box inhibitory activity could be overcome by separating the Gal4 site from the X1 box by two additional helical turns, suggesting that the RFX factor is bound at the X1 site and sterically interferes with activation. This was not the case in wild type B cells, suggesting that a stable higher order complex forms in wild type cells and not in the mutant cells.

摘要

人类Ⅱ类主要组织相容性复合体(MHC)基因部分受一系列保守的上游序列元件调控,这些元件被称为X1、X2和Y盒。已定义了Ⅱ类MHC转录突变B细胞系,它们在RFX(一种X1盒DNA结合活性)的存在方面存在差异。为了进一步表征这些突变细胞系,我们测试了这些保守上游元件对已知转录激活域存在的反应能力。将一系列携带Gal4结合位点的HLA - DRA启动子报告构建体和GAL4融合蛋白表达载体共转染到代表两种RFX表型的野生型B细胞和突变B细胞中。无论RFX或Ⅱ类表型如何,GAL4 - VP16和GAL4 - E1a的激活域都能协同刺激含有X2和Y盒的构建体的表达。在含有RFX的细胞中,X1盒的存在会抑制GAL4 - VP16和GAL4 - E1a介导的表达。在缺乏RFX的突变细胞中,GAL4 - VP16的激活不受抑制。在RFX阳性的Ⅱ类突变细胞系RJ2.2.5中,通过将Gal4位点与X1盒隔开两个额外的螺旋圈,可以克服X1盒的抑制活性,这表明RFX因子结合在X1位点并在空间上干扰激活。在野生型B细胞中情况并非如此,这表明在野生型细胞中形成了稳定的高阶复合物,而在突变细胞中则没有。

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