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Probing the potential of CnaB-type domains for the design of tag/catcher systems

机译:探索CnaB型域在标签/捕获系统设计中的潜力

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摘要

Building proteins into larger, post-translational assemblies in a defined and stable way is still a challenging task. A promising approach relies on so-called tag/catcher systems that are fused to the proteins of interest and allow a durable linkage via covalent intermolecular bonds. Tags and catchers are generated by splitting protein domains that contain intramolecular isopeptide or ester bonds that form autocatalytically under physiological conditions. There are already numerous biotechnological and medical applications that demonstrate the usefulness of covalent linkages mediated by these systems. Additional covalent tag/catcher systems would allow creating more complex and ultra-stable protein architectures and networks. Two of the presently available tag/catcher systems were derived from closely related CnaB-domains of Streptococcus pyogenes and Streptococcus dysgalactiae proteins. However, it is unclear whether domain splitting is generally tolerated within the CnaB-family or only by a small subset of these domains. To address this point, we have selected a set of four CnaB domains of low sequence similarity and characterized the resulting tag/catcher systems by computational and experimental methods. Experimental testing for intermolecular isopeptide bond formation demonstrated two of the four systems to be functional. For these two systems length and sequence variations of the peptide tags were investigated revealing only a relatively small effect on the efficiency of the reaction. Our study suggests that splitting into tag and catcher moieties is tolerated by a significant portion of the naturally occurring CnaB-domains, thus providing a large reservoir for the design of novel tag/catcher systems.
机译:以定义和稳定的方式将蛋白质构建成更大的翻译后装配体仍然是一项艰巨的任务。一种有前途的方法依赖于与目标蛋白融合并允许通过共价分子间键的持久连接的所谓标签/捕获系统。通过分裂包含在生理条件下自动催化形成的分子内异肽或酯键的蛋白质结构域,可以生成标签和捕获物。已经有许多生物技术和医学应用证明了这些系统介导的共价键的有用性。额外的共价标签/捕手系统将允许创建更复杂和超稳定的蛋白质结构和网络。目前可用的两个标记/捕获系统来自化脓性链球菌和dysgalactiae链球菌蛋白的密切相关的CnaB域。但是,尚不清楚在CnaB家族中一般仅容忍域分裂,还是仅这些域的一小部分容忍域分裂。为了解决这一问题,我们选择了一组四个序列相似性低的CnaB结构域,并通过计算和实验方法对所得的标签/捕获系统进行了表征。分子间异肽键形成的实验测试证明了四个系统中的两个具有功能。对于这两个系统,对肽标签的长度和序列变化进行了研究,发现对反应效率的影响相对较小。我们的研究表明,自然存在的CnaB结构域的很大一部分可以容忍分裂成标签和捕集器部分,从而为新颖的标签/捕集器系统的设计提供了很大的空间。

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