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利用果蝇中的TARGET和基因开关系统进行时空基因表达靶向

Spatiotemporal gene expression targeting with the TARGET and gene-switch systems in Drosophila.

作者信息

McGuire Sean E, Mao Zhengmei, Davis Ronald L

机构信息

Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

Sci STKE. 2004 Feb 12;2004(220):pl6. doi: 10.1126/stke.2202004pl6.

Abstract

Targeted gene expression has become a standard technique for the study of biological questions in Drosophila. Until recently, transgene expression could be targeted in the dimension of either time or space, but not both. Several new systems have recently been developed to direct transgene expression simultaneously in both time and space. We describe here two such systems that we developed in our laboratory. The first system provides a general method for temporal and regional gene expression targeting (TARGET) with the conventional GAL4-upstream activator sequence (UAS) system and a temperature-sensitive GAL80 molecule, which represses GAL4 transcriptional activity at permissive temperatures. The second system, termed Gene-Switch, is based on a GAL4-progesterone receptor chimera that is hormone-inducible. We have used both systems for simultaneous spatial and temporal rescue of memory dysfunction in the rutabaga (rut) memory mutant of Drosophila. In this protocol, we provide guidelines for the use of these two novel systems, which should have general utility in studying Drosophila biology and in using the fly as a model for human disease.

摘要

靶向基因表达已成为研究果蝇生物学问题的一项标准技术。直到最近,转基因表达还只能在时间或空间维度上进行靶向,而不能同时在两个维度上实现。最近已经开发出几种新系统,能够同时在时间和空间上指导转基因表达。在此,我们描述我们实验室开发的两个这样的系统。第一个系统利用传统的GAL4-上游激活序列(UAS)系统和一个温度敏感型GAL80分子,提供了一种用于时间和区域基因表达靶向(TARGET)的通用方法,该温度敏感型GAL80分子在允许温度下会抑制GAL4的转录活性。第二个系统称为基因开关(Gene-Switch),它基于一个可被激素诱导的GAL4-孕酮受体嵌合体。我们已经使用这两个系统在果蝇的rutabaga(rut)记忆突变体中同时进行空间和时间上的记忆功能障碍挽救。在本方案中,我们提供了使用这两个新系统的指南,它们在研究果蝇生物学以及将果蝇用作人类疾病模型方面应具有普遍用途。

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