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首页> 外文期刊>BMC Molecular Biology >A plasmid toolkit for cloning chimeric cDNAs encoding customized fusion proteins into any Gateway destination expression vector
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A plasmid toolkit for cloning chimeric cDNAs encoding customized fusion proteins into any Gateway destination expression vector

机译:用于将编码定制融合蛋白的嵌合cDNA克隆到任何Gateway目的表达载体中的质粒工具包

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Valuable clone collections encoding the complete ORFeomes for some model organisms have been constructed following the completion of their genome sequencing projects. These libraries are based on Gateway cloning technology, which facilitates the study of protein function by simplifying the subcloning of open reading frames (ORF) into any suitable destination vector. The expression of proteins of interest as fusions with functional modules is a frequent approach in their initial functional characterization. A limited number of Gateway destination expression vectors allow the construction of fusion proteins from ORFeome-derived sequences, but they are restricted to the possibilities offered by their inbuilt functional modules and their pre-defined model organism-specificity. Thus, the availability of cloning systems that overcome these limitations would be highly advantageous. We present a versatile cloning toolkit for constructing fully-customizable three-part fusion proteins based on the MultiSite Gateway cloning system. The fusion protein components are encoded in the three plasmids integral to the kit. These can recombine with any purposely-engineered destination vector that uses a heterologous promoter external to the Gateway cassette, leading to the in-frame cloning of an ORF of interest flanked by two functional modules. In contrast to previous systems, a third part becomes available for peptide-encoding as it no longer needs to contain a promoter, resulting in an increased number of possible fusion combinations. We have constructed the kit’s component plasmids and demonstrate its functionality by providing proof-of-principle data on the expression of prototype fluorescent fusions in transiently-transfected cells. We have developed a toolkit for creating fusion proteins with customized N- and C-term modules from Gateway entry clones encoding ORFs of interest. Importantly, our method allows entry clones obtained from ORFeome collections to be used without prior modifications. Using this technology, any existing Gateway destination expression vector with its model-specific properties could be easily adapted for expressing fusion proteins.
机译:在完成其基因组测序项目后,已经构建了一些有价值的克隆集合,这些集合为某些模型生物编码了完整的ORFeomes。这些文库基于Gateway克隆技术,该技术通过将开放阅读框(ORF)的亚克隆简化为任何合适的目的载体,促​​进了蛋白质功能的研究。目的蛋白与功能模块融合的表达是其初始功能表征中的一种常见方法。有限数量的Gateway目的表达载体允许从ORFeome衍生的序列构建融合蛋白,但它们限于其内置的功能模块及其预先定义的模型生物特异性所提供的可能性。因此,克服这些限制的克隆系统的可用性将是非常有利的。我们提出了一个多功能的克隆工具包,用于基于MultiSite Gateway克隆系统构建完全可定制的三部分融合蛋白。融合蛋白组分编码在试剂盒必不可少的三个质粒中。这些可以与使用Gateway盒外部的异源启动子的任何特意设计的目的载体重组,从而导致侧翼克隆两个功能模块旁的目标ORF。与以前的系统相比,第三部分可用于肽编码,因为它不再需要包含启动子,从而导致可能的融合组合数量增加。我们已经构建了试剂盒的成分质粒,并通过提供关于瞬时转染细胞中原型荧光融合蛋白表达的原理数据来证明其功能。我们已经开发了一个工具包,用于从编码感兴趣的ORF的Gateway入门克隆中,使用定制的N和C术语模块创建融合蛋白。重要的是,我们的方法允许从ORFeome集合获得的入门克隆无需事先修改即可使用。使用这项技术,任何现有的具有网关特定模式特性的Gateway目的表达载体都可以轻松地表达融合蛋白。

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