Biology Department, Brandeis University, Waltham, MA 02454, United States.
Biology Department, Brandeis University, Waltham, MA 02454, United States.
Methods. 2021 Dec;196:74-84. doi: 10.1016/j.ymeth.2021.04.016. Epub 2021 Apr 24.
Circular RNAs (circRNAs) are a class of covalently closed RNA molecules generated by backsplicing. circRNAs are expressed in a tissue-specific manner, accumulate with age in neural tissues, and are highly stable. In many cases, circRNAs are generated at the expense of a linear transcript as back-splicing competes with linear splicing. Some circRNAs regulate gene expression in cis, and some circRNAs can be translated into protein. The advent of deep sequencing and new bioinformatic tools has allowed detection of thousands of circRNAs in eukaryotes. Studying the functions of circRNAs is done using a combination of molecular and genetic methods. The unique genetic tools that can be used in studies of Drosophila melanogaster are ideal for deciphering the functions of circRNAs in vivo. These tools include the GAL4-UAS system, which can be used to manipulate the levels of circRNAs with exquisite temporal and spatial control, and genetic interaction screening, which could be used to identify pathways regulated by circRNAs. Research performed in Drosophila has revealed circRNAs production mechanisms, details of their translation, and their physiological functions. Due to their short lifecycle and the existence of excellent neurodegeneration models, Drosophila can also be used to study the role of circRNAs in aging and age-related disorders. Here, we review molecular and genetic tools and methods for detecting, manipulating, and studying circRNAs in Drosophila.
环状 RNA(circRNAs)是一类通过反向剪接产生的共价闭合 RNA 分子。circRNAs 以组织特异性方式表达,在神经组织中随年龄积累,并且高度稳定。在许多情况下,circRNAs 的产生是以牺牲线性转录本为代价的,因为反向剪接与线性剪接竞争。一些 circRNAs 以顺式调控基因表达,而一些 circRNAs 可以翻译为蛋白质。深度测序和新的生物信息学工具的出现使得在真核生物中可以检测到数千种 circRNAs。circRNAs 功能的研究是通过分子和遗传方法的结合来完成的。在黑腹果蝇研究中可以使用的独特遗传工具非常适合在体内破译 circRNAs 的功能。这些工具包括 GAL4-UAS 系统,它可以用于以精细的时空控制来操纵 circRNAs 的水平,以及遗传相互作用筛选,它可以用于鉴定受 circRNAs 调节的途径。在果蝇中进行的研究揭示了 circRNAs 的产生机制、其翻译的细节以及它们的生理功能。由于其短生命周期和存在优秀的神经退行性变模型,果蝇也可用于研究 circRNAs 在衰老和与年龄相关的疾病中的作用。在这里,我们综述了在果蝇中检测、操纵和研究 circRNAs 的分子和遗传工具及方法。