Bylino Oleg V, Ibragimov Airat N, Digilio Filomena Anna, Giordano Ennio, Shidlovskii Yulii V
Department of Gene Expression Regulation in Development, Institute of Gene Biology, Russian Academy of Sciences, Moscow, Russia.
Center for Precision Genome Editing and Genetic Technologies for Biomedicine, Institute of Gene Biology, Russian Academy of Sciences, Moscow, Russia.
Front Genet. 2022 Jul 15;13:734208. doi: 10.3389/fgene.2022.734208. eCollection 2022.
A transition from one developmental stage to another is accompanied by activation of developmental programs and corresponding gene ensembles. Changes in the spatial conformation of the corresponding loci are associated with this activation and can be investigated with the help of the Chromosome Conformation Capture (3C) methodology. Application of 3C to specific developmental stages is a sophisticated task. Here, we describe the use of the 3C method to study the spatial organization of developmental loci in larvae. We critically analyzed the existing protocols and offered our own solutions and the optimized protocol to overcome limitations. To demonstrate the efficiency of our procedure, we studied the spatial organization of the developmental locus in 3rd instar larvae. Differences in locus conformation were found between embryonic cells and living wild-type larvae. We also observed the establishment of novel regulatory interactions in the presence of an adjacent transgene upon activation of its expression in larvae. Our work fills the gap in the application of the 3C method to larvae and provides a useful guide for establishing 3C on an animal model.
从一个发育阶段过渡到另一个发育阶段伴随着发育程序和相应基因组合的激活。相应基因座空间构象的变化与这种激活相关联,并且可以借助染色体构象捕获(3C)方法进行研究。将3C应用于特定发育阶段是一项复杂的任务。在这里,我们描述了使用3C方法研究幼虫中发育基因座的空间组织。我们严格分析了现有的方案,并提供了我们自己的解决方案和优化方案以克服局限性。为了证明我们方法的有效性,我们研究了三龄幼虫中发育基因座的空间组织。在胚胎细胞和活的野生型幼虫之间发现了基因座构象的差异。我们还观察到在幼虫中转基因表达激活后,相邻转基因存在时新的调控相互作用的建立。我们的工作填补了3C方法在幼虫应用方面的空白,并为在动物模型上建立3C提供了有用的指导。