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Golden EGG,一种简化的 Golden Gate 克隆系统,用于组装多个片段。

Golden EGG, a simplified Golden Gate cloning system to assemble multiple fragments.

机构信息

Institute of Plant Biology, HUN-REN Biological Research Centre Szeged, Szeged, Hungary.

Institute of Genetics and Biotechnology, Hungarian University of Agriculture and Life Sciences, Gödöllő, Hungary.

出版信息

Sci Rep. 2024 Oct 25;14(1):25288. doi: 10.1038/s41598-024-77327-4.

Abstract

The Golden Gate method is an efficient tool for seamless assembly of multiple DNA fragments, which uses Type IIS restriction endonucleases, cleaving the DNA outside of their recognition site to release DNA parts from PCR fragments or entry clones, thus allowing the design of overhangs for ligation at will. However, the construction of the entry clones requires the use of other restriction enzyme(s) or cloning techniques and different entry vectors for the individual overhangs. Here, we present a simplified Golden Gate cloning approach termed Golden EGG. It features (1) a single entry vector with a specific cloning site to host the DNA parts; (2) a unique primer design to create the restriction enzyme recognition site to release the fragments with the overhangs at will; (3) the use of a single Type IIS enzyme for the construction of both the entry and destination clones; (4) a specific temperature profile during the digestion-ligation reaction. Our user-friendly, streamlined method retains the key attributes of the Golden Gate technique, while offering the potential to generate compatible parts with any existing Golden Gate toolkit and to be accessible to a wide user base without the need for extensive acquisition of new vectors or expensive enzymes.

摘要

金门方法是一种高效的用于无缝组装多个 DNA 片段的工具,它使用 II 型限制性内切酶,在其识别位点之外切割 DNA,从而从 PCR 片段或入口克隆中释放 DNA 片段,从而可以随意设计粘性末端用于连接。然而,入口克隆的构建需要使用其他限制性内切酶或克隆技术以及不同的入口载体来处理各个粘性末端。在这里,我们提出了一种简化的金门克隆方法,称为 Golden EGG。它具有以下特点:(1)一个带有特定克隆位点的单一入口载体,用于容纳 DNA 片段;(2)独特的引物设计,用于创建限制性内切酶识别位点,以便随意释放带有粘性末端的片段;(3)使用单一的 II 型酶构建入口和目的克隆;(4)消化-连接反应过程中的特定温度曲线。我们的用户友好、简化的方法保留了金门技术的关键属性,同时具有生成与任何现有金门工具包兼容的部件的潜力,并且无需广泛获取新载体或昂贵的酶即可为广大用户所使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6a4/11512045/54222fa0cbf4/41598_2024_77327_Fig3_HTML.jpg

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