首页> 外文期刊>Nucleic Acids Research >The MHC class II transactivator (CIITA) requires conserved leucine charged domains for interactions with the conserved W box promoter element.
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The MHC class II transactivator (CIITA) requires conserved leucine charged domains for interactions with the conserved W box promoter element.

机译:MHC II类反式激活因子(CIITA)需要保守的亮氨酸带电域才能与保守的W盒启动子元件相互作用。

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摘要

The class II transactivator CIITA is required for transcriptional activation of the major histocompatibility complex (MHC) class II genes. Aside from an N-terminal acidic transcriptional activation domain, little is known about how this factor functions. Extensive mutagenesis of CIITA was undertaken to identify structural motifs required for function. The ability of mutants to activate a reporter gene under the control of MHC class II conserved W-X-Y or X-Y regulatory elements was determined. Two mutants displayed differential activity between the two promoters, activating transcription with the W-X-Y but not the X-Y elements. All mutants were tested for their ability to interfere with wild-type CIITA activity. Five CIITA mutant constructions were able to down-regulate wild-type CIITA activity. Three of these mutants contained targeted disruptions of potential functional motifs: the acidic activation domain, a putative GTP-binding motif and two leucine charged domains (LCD motifs). The other two contained mutations in regions that do not have homology to described proteins. The characterization of CIITA mutants that are able to discriminate between promoters with or without the W box strongly suggests that CIITA requires such interactions for function. The identification of LCD motifs required for CIITA function brings to light a previously undefined role of these motifs in CIITA function.
机译:II类反式激活因子CIITA是主要组织相容性复合体(MHC)II类基因的转录激活所必需的。除了N端酸性转录激活域外,对该因子的功能了解甚少。进行了CIITA的广泛诱变,以鉴定功能所需的结构基序。确定了突变体在MHC II类保守的W-X-Y或X-Y调节元件的控制下激活报告基因的能力。两个突变体在两个启动子之间显示出不同的活性,用W-X-Y激活转录,但不激活X-Y元素。测试所有突变体干扰野生型CIITA活性的能力。五个CIITA突变体构建体能够下调野生型CIITA活性。这些突变体中的三个包含潜在功能基序的定向破坏:酸性激活域,推定的GTP结合基序和两个亮氨酸带电域(LCD基序)。其他两个在与所描述的蛋白质不具有同源性的区域中包含突变。能够区分带有或不带有W框的启动子的CIITA突变体的特征强烈表明,CIITA需要这种相互作用才能发挥功能。 CIITA功能所需的LCD图案的识别揭示了这些图案在CIITA功能中先前未定义的作用。

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