Section of Cell and Developmental Biology, University of California San Diego, La Jolla, California.
Department of Developmental Biology, Johann-Friedrich-Blumenbach Institute for Zoology and Anthropology, Georg-August-University of Göttingen, Ernst-Caspari-Haus (GZMB), Göttingen, Germany.
Elife. 2017 Dec 23;6:e30281. doi: 10.7554/eLife.30281.
The () locus encodes transcription factors required for induction of the L2 wing vein in . Here, we employ diverse CRISPR/Cas9 genome editing tools to generate a series of targeted lesions within the endogenous cis-regulatory module (CRM) required for expression in the L2 vein primordium. Phenotypic analysis of these '' mutations based on both expression of Kni protein and adult wing phenotypes, reveals novel unexpected features of L2-CRM function including evidence for a chromosome pairing-dependent process that promotes transcription. We also demonstrate that self-propagating active genetic elements (CopyCat elements) can efficiently delete and replace the L2-CRM with orthologous sequences from other divergent fly species. Wing vein phenotypes resulting from these trans-species enhancer replacements parallel features of the respective donor fly species. This highly sensitive phenotypic readout of enhancer function in a native genomic context reveals novel features of CRM function undetected by traditional reporter gene analysis.
()基因座编码在果蝇中诱导 L2 翅脉所必需的转录因子。在这里,我们采用多种 CRISPR/Cas9 基因组编辑工具在 L2 脉原基中表达所需的内源性顺式调控模块(CRM)内产生一系列靶向损伤。这些“突变”的表型分析基于 Kni 蛋白的表达和成年翅膀表型,揭示了 L2-CRM 功能的新的意想不到的特征,包括证据表明存在一个依赖于染色体配对的过程,促进转录。我们还证明,自我传播的活性遗传元件(CopyCat 元件)可以有效地删除和替换 L2-CRM,并用来自其他不同果蝇物种的同源序列进行替换。这些跨物种增强子替换产生的翅脉表型与各自供体果蝇物种的特征相似。这种在天然基因组背景下增强子功能的高度敏感表型读出揭示了 CRM 功能的新特征,这些特征是传统报告基因分析无法检测到的。