McAllister A K
Center for Neuroscience, University of California, Davis, CA, USA.
Sci STKE. 2000 Sep 26;2000(51):pl1. doi: 10.1126/stke.2000.51.pl1.
One method used to study gene function is through the manipulation of gene expression by transfecting cells with DNA constructs designed to overexpress or knock out particular proteins. Unfortunately, transfection of cells and tissues remains a rate-limiting step for molecular studies in many fields, especially neurobiology. Conventional transfection techniques are of limited effectiveness, particularly in intact tissue. This protocol describes an alternative method for transfecting cells, called biolistics. Biolistics is a physical method of transfection in which target tissue is bombarded with DNA-coated gold particles using a "gene gun," produced by Bio-Rad Laboratories. Cells penetrated by gold particles have a high likelihood of becoming transfected. Because biolistic transfection relies only on the physical penetration of a cell's membrane, it is possible to use biolistics to transfect cells that are resistant to transfection by other methods, such as neurons in primary culture and organotypic slice cultures. This protocol provides information on optimizing the biolistic parameters for transfecting neurons in both of these preparations. Once optimized, biolistic transfection is a reliable and efficient method for studying gene function in many cell types, especially postmitotic neurons.
一种用于研究基因功能的方法是通过用设计用于过表达或敲除特定蛋白质的DNA构建体转染细胞来操纵基因表达。不幸的是,细胞和组织的转染仍然是许多领域(尤其是神经生物学)分子研究的一个限速步骤。传统的转染技术效果有限,特别是在完整组织中。本方案描述了一种转染细胞的替代方法,称为生物弹道学方法。生物弹道学方法是一种物理转染方法,其中使用伯乐公司生产的“基因枪”将包被有DNA的金颗粒轰击靶组织。被金颗粒穿透的细胞很有可能被转染。由于生物弹道学转染仅依赖于细胞膜的物理穿透,因此可以使用生物弹道学方法转染对其他方法(如原代培养的神经元和器官型切片培养)有抗性的细胞。本方案提供了关于在这两种制备物中转染神经元时优化生物弹道学参数的信息。一旦优化,生物弹道学转染是研究许多细胞类型(尤其是有丝分裂后神经元)基因功能的一种可靠且有效的方法。