首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >The role of binding site cluster strength in Bicoid-dependent patterning in Drosophila
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The role of binding site cluster strength in Bicoid-dependent patterning in Drosophila

机译:结合位点簇强度在果蝇Bicoid依赖模式中的作用。

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The maternal morphogen Bicoid (Bcd) is distributed in an embryonic gradient that is critical for patterning the anterior-posterior (AP) body plan in Drosophila. Previous work identified several target genes that respond directly to Bed-dependent activation. Positioning of these targets along the AP axis is thought to be controlled by cis-regulatory modules (CRMs) that contain clusters of Bed-binding sites of different "strengths." Here we use a combination of Bed-site cluster analysis and evolutionary conservation to predict Bed-dependent CRMs. We tested 14 predicted CRMs by in vivo reporter gene assays; 11 show Bed-dependent activation, which brings the total number of known Bcd target elements to 21. Some CRMs drive expression patterns that are restricted to the most anterior part of the embryo, whereas others extend into middle and posterior regions. However, we do not detect a strong correlation between AP position of target gene expression and the strength of Bcd site clusters alone. Rather, we find that binding sites for other activators, including Hunchback and Caudal correlate with CRM expression in middle and posterior body regions. Also, many Bcd-dependent CRMs contain clusters of sites for the gap protein Kruppel, which may limit the posterior extent of activation by the Bcd gradient. We propose that the key design principle in AP patterning is the differential integration of positive and negative transcriptional information at the level of individual CRMs for each target gene.
机译:母体形态发生原Bicoid(Bcd)以胚胎梯度分布,这对于在果蝇中构图前后(AP)身体计划至关重要。先前的工作鉴定了几个直接响应Bed依赖性激活的靶基因。这些靶标沿着AP轴的定位被认为是由顺式调节模块(CRM)控制的,该模块包含具有不同“强度”的床结合位点簇。在这里,我们结合使用Bed-site聚类分析和进化保护来预测Bed-based CRM。我们通过体内报告基因检测测试了14种预测的CRM。图11显示了依赖床的激活,这使已知Bcd靶标元素的总数达到21。一些CRM驱动表达模式,该模式仅限于胚胎的最前部分,而其他CRM则延伸到中部和后部区域。但是,我们没有检测到目标基因表达的AP位置和单独的Bcd位点簇的强度之间有很强的相关性。相反,我们发现其他激活物(包括驼背和尾鳍)的结合位点与中,后体区域的CRM表达相关。而且,许多依赖Bcd的CRM都包含缺口蛋白Kruppel的位点簇,这可能会限制Bcd梯度激活的后部程度。我们建议AP模式中的关键设计原则是在每个目标基因的单个CRM级别上阳性和阴性转录信息的差异整合。

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