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首页> 外文期刊>FEBS Open Bio >protaTETHER – a method for the incorporation of variable linkers in protein fusions reveals impacts of linker flexibility in a PKAc‐GFP fusion protein
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protaTETHER – a method for the incorporation of variable linkers in protein fusions reveals impacts of linker flexibility in a PKAc‐GFP fusion protein

机译:protaTETHER –在蛋白质融合中掺入可变接头的方法揭示了PKAc-GFP融合蛋白中接头柔性的影响

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Protein fusions are of fundamental importance in the study of cellular biology and the elucidation of cell signaling pathways, and the importance of linkers for the proper function of protein fusions is well documented in the literature. However, there are few convenient methods available to experimentalists for the systematic implementation of linkers in protein fusions. In this work, we describe a universal approach to the creation and insertion of focused linker libraries into protein fusions. This process, deemed protaTETHER, utilizes reiterative oligomer design, PCR‐mediated linker library generation, and restriction enzyme‐free cloning methods in a straightforward, three‐step cloning process. We utilize a fusion between the catalytic subunit of cAMP‐dependent protein kinase A (PKAc) and green fluorescent protein (GFP) for the development of the protaTETHER method, implementing small linker libraries that vary by length, sequence, and predicted secondary structural elements. We analyze the impact of linker length and sequence on the expression, activity, and subcellular localization of the PKAc‐GFP fusions, and use these results to select a PKAc‐GFP fusion construct with robust expression and enzymatic activity. Based upon the results of both biochemical experiments and molecular modeling, we determine that linker flexibility is more important than linker length for optimal kinase activity and expression.
机译:蛋白质融合蛋白在细胞生物学研究和阐明细胞信号通路中至关重要,并且接头在蛋白质融合蛋白正常功能中的重要性已在文献中充分记载。然而,对于蛋白质融合中的接头的系统实现,实验者几乎没有方便的方法。在这项工作中,我们描述了一种通用方法,用于创建聚焦的接头库并将其插入蛋白质融合物中。该过程被认为是protaTETHER,它通过简单的三步克隆过程利用了重复性寡聚物设计,PCR介导的连接子文库生成和无限制性酶的克隆方法。我们利用cAMP依赖性蛋白激酶A(PKAc)和绿色荧光蛋白(GFP)的催化亚基之间的融合来开发protaTETHER方法,实现随长度,序列和预测的二级结构元件而变化的小型接头库。我们分析了接头长度和序列对PKAc-GFP融合蛋白的表达,活性和亚细胞定位的影响,并使用这些结果来选择具有稳健表达和酶促活性的PKAc-GFP融合构建体。基于生化实验和分子建模的结果,我们确定接头的柔性比接头的长度更重要,以获得最佳的激酶活性和表达。

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