Blick Amanda J, Mayer-Hirshfeld Ilana, Malibiran Beatriz R, Cooper Matthew A, Martino Pieter A, Johnson Justine E, Bateman Jack R
Biology Department, Bowdoin College, Brunswick, Maine 04011.
Biology Department, Bowdoin College, Brunswick, Maine 04011
Genetics. 2016 May;203(1):203-18. doi: 10.1534/genetics.115.185645. Epub 2016 Mar 16.
The interphase nucleus is organized such that genomic segments interact in cis, on the same chromosome, and in trans, between different chromosomes. In Drosophila and other Dipterans, extensive interactions are observed between homologous chromosomes, which can permit enhancers and promoters to communicate in trans Enhancer action in trans has been observed for a handful of genes in Drosophila, but it is as yet unclear whether this is a general property of all enhancers or specific to a few. Here, we test a collection of well-characterized enhancers for the capacity to act in trans Specifically, we tested 18 enhancers that are active in either the eye or wing disc of third instar Drosophila larvae and, using two different assays, found evidence that each enhancer can act in trans However, the degree to which trans-action was supported varied greatly between enhancers. Quantitative analysis of enhancer activity supports a model wherein an enhancer's strength of transcriptional activation is a major determinant of its ability to act in trans, but that additional factors may also contribute to an enhancer's trans-activity. In sum, our data suggest that a capacity to activate a promoter on a paired chromosome is common among Drosophila enhancers.
间期细胞核的组织方式使得基因组片段在同一染色体上顺式相互作用,以及在不同染色体间反式相互作用。在果蝇和其他双翅目昆虫中,同源染色体之间存在广泛的相互作用,这可以使增强子和启动子进行反式通讯。在果蝇中,已经观察到少数基因存在反式增强子作用,但目前尚不清楚这是所有增强子的普遍特性还是仅特定于少数增强子。在这里,我们测试了一组特征明确的增强子的反式作用能力。具体而言,我们测试了在三龄果蝇幼虫的眼盘或翅盘中活跃的18个增强子,并使用两种不同的检测方法,发现每个增强子都能进行反式作用的证据。然而,不同增强子之间支持反式作用的程度差异很大。增强子活性的定量分析支持这样一种模型,即增强子转录激活的强度是其反式作用能力的主要决定因素,但其他因素也可能有助于增强子的反式活性。总之,我们的数据表明,激活配对染色体上启动子的能力在果蝇增强子中很常见。