Forsyth Allyn, Wang Liangsu
GHC Technologies, Inc., La Jolla, CA, USA.
Methods Mol Biol. 2008;416:307-21. doi: 10.1007/978-1-59745-321-9_20.
This chapter provides methods and insights into the use of antisense RNA as a molecular genetic tool. Posttranscriptional inhibition of specific gene expression can be achieved by antisense RNA fragments under control of a conditional promoter. Effective titration of gene expression can cause an apparent null mutation or can be modulated to levels of interest in comparison with wild type. Validation of antisense RNA can be achieved by both RNA and protein quantitation techniques. Applications include phenotypic studies of genes in response to specific stimuli, environments, or the contribution of genes in regulatory networks. This chapter will focus on shotgun-cloned antisense for comprehensive gene identification and cell-based hypersensitivity assays for antibiotic screening. Antisense RNA strategies have high utility when the target gene is essential for survival and needs to be compared with wild type.
本章提供了将反义RNA用作分子遗传工具的方法和见解。在条件性启动子的控制下,反义RNA片段可实现对特定基因表达的转录后抑制。对基因表达进行有效的滴定可导致明显的无效突变,或与野生型相比,可将其调节至感兴趣的水平。通过RNA和蛋白质定量技术均可实现对反义RNA的验证。其应用包括对基因在特定刺激、环境下的表型研究,或基因在调控网络中的作用。本章将重点介绍用于全面基因鉴定的鸟枪法克隆反义技术,以及用于抗生素筛选的基于细胞的超敏反应测定。当靶基因对生存至关重要且需要与野生型进行比较时,反义RNA策略具有很高的实用性。