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一个 Gateway MultiSite 重组克隆工具包。

A Gateway MultiSite recombination cloning toolkit.

机构信息

Department of Cell Biology and Neuroscience, Montana State University, Bozeman, Montana, United States of America.

出版信息

PLoS One. 2011;6(9):e24531. doi: 10.1371/journal.pone.0024531. Epub 2011 Sep 9.

Abstract

The generation of DNA constructs is often a rate-limiting step in conducting biological experiments. Recombination cloning of single DNA fragments using the Gateway system provided an advance over traditional restriction enzyme cloning due to increases in efficiency and reliability. Here we introduce a series of entry clones and a destination vector for use in two, three, and four fragment Gateway MultiSite recombination cloning whose advantages include increased flexibility and versatility. In contrast to Gateway single-fragment cloning approaches where variations are typically incorporated into model system-specific destination vectors, our Gateway MultiSite cloning strategy incorporates variations in easily generated entry clones that are model system-independent. In particular, we present entry clones containing insertions of GAL4, QF, UAS, QUAS, eGFP, and mCherry, among others, and demonstrate their in vivo functionality in Drosophila by using them to generate expression clones including GAL4 and QF drivers for various trp ion channel family members, UAS and QUAS excitatory and inhibitory light-gated ion channels, and QUAS red and green fluorescent synaptic vesicle markers. We thus establish a starter toolkit of modular Gateway MultiSite entry clones potentially adaptable to any model system. An inventory of entry clones and destination vectors for Gateway MultiSite cloning has also been established (www.gatewaymultisite.org).

摘要

DNA 构建体的生成通常是进行生物学实验的限速步骤。使用 Gateway 系统对单个 DNA 片段进行重组克隆,提高了效率和可靠性,优于传统的限制酶克隆。本文介绍了一系列用于 Gateway MultiSite 重组克隆的入门克隆和目的载体,其优势在于增加了灵活性和多功能性。与通常将变体整合到特定于模型系统的目的载体中的 Gateway 单片段克隆方法不同,我们的 Gateway MultiSite 克隆策略将变体整合到易于生成的与模型系统无关的入门克隆中。特别是,我们提供了包含 GAL4、QF、UAS、QUAS、eGFP 和 mCherry 等插入物的入门克隆,并通过在果蝇中使用它们来生成表达克隆,包括用于各种 TRP 离子通道家族成员的 GAL4 和 QF 驱动子、UAS 和 QUAS 兴奋性和抑制性光门控离子通道以及 QUAS 红色和绿色荧光突触囊泡标记物,证明了它们的体内功能。因此,我们建立了一个潜在适用于任何模型系统的模块化 Gateway MultiSite 入门克隆起始工具包。还建立了 Gateway MultiSite 克隆的入门克隆和目的载体清单(www.gatewaymultisite.org)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/faf2/3170369/6855cc66ba04/pone.0024531.g001.jpg

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