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使用集成机器人进行半自动克隆的方法和结果。

Methods and results for semi-automated cloning using integrated robotics.

作者信息

Klock Heath E, White Aprilfawn, Koesema Eric, Lesley Scott A

机构信息

Joint Center for Structural Genomics, Genomics Institute of the Novartis Research Foundation, 10675 John Jay Hopkins Drive, San Diego, CA 92121, USA.

出版信息

J Struct Funct Genomics. 2005;6(2-3):89-94. doi: 10.1007/s10969-005-3084-1.

Abstract

The Joint Center for Structural Genomics (JCSG) has emphasized automation and parallel processing approaches. Here, we describe automated methods used across the cloning process with results from JCSG projects. The protocols for PCR, restriction digests and ligations, as well as for gel electrophoresis and microtiter plate assays have all been automated. The system has the capacity to routinely process 384 clones a week. This throughput can adequately supply our expression and purification pipeline with expression-ready clones, including novel targets and truncations. The utility of our system is demonstrated by our results from three diverse projects. In summary, 94% of the PCR amplicons generated to date have been successfully cloned and verified by sequencing (83% of the total attempted targets). Our results demonstrate the capabilities of this robotic platform to provide an avenue to high-throughput cloning which requires little manpower and is rapid and cost-effective while providing insights for method optimization.

摘要

结构基因组学联合中心(JCSG)一直强调自动化和并行处理方法。在此,我们描述了在克隆过程中使用的自动化方法以及JCSG项目的结果。PCR、限制性酶切和连接反应的方案,以及凝胶电泳和微量滴定板检测的方案均已实现自动化。该系统每周能够常规处理384个克隆。这种通量能够为我们的表达和纯化流程充分提供可用于表达的克隆,包括新的靶点和截短体。我们来自三个不同项目的结果证明了我们系统的实用性。总之,迄今为止所产生的PCR扩增子中有94%已成功克隆并通过测序验证(占总尝试靶点的83%)。我们的结果证明了这个机器人平台能够提供一条通向高通量克隆的途径,该途径所需人力极少、速度快且具有成本效益,同时还能为方法优化提供思路。

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