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首页> 外文期刊>Journal of Molecular Biology >A New Versatile Immobilization Tag Based on the Ultra High Affinity and Reversibility of the Calmodulin-Calmodulin Binding Peptide Interaction
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A New Versatile Immobilization Tag Based on the Ultra High Affinity and Reversibility of the Calmodulin-Calmodulin Binding Peptide Interaction

机译:基于钙调蛋白-钙调蛋白结合肽相互作用的超高亲和力和可逆性的新型多功能固定标签。

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摘要

Reversible, high-affinity immobilization tags are critical tools for myriad biological applications. However, inherent issues are associated with a number of the current methods of immobilization. Particularly, a critical element in phage display sorting is functional immobilization of target proteins. To circumvent these problems, we have used a mutant (N5A) of calmodulin binding peptide (CBP) as an immobilization tag in phage display sorting. The immobilization relies on the ultra high affinity of calmodulin to N5A mutant CBP (RWKKNFIAVSAANRFKKIS) in presence of calcium (K-D similar to 2 pM), which can be reversed by EDTA allowing controlled "capture and release" of the specific binders. To evaluate the capabilities of this system, we chose eight targets, some of which were difficult to overexpress and purify with other tags and some had failed in sorting experiments. In all cases, specific binders were generated using a Fab phage display library with CBP-fused constructs. K-D values of the Fabs were in subnanomolar to low nanomolar (nM) ranges and were successfully used to selectively recognize antigens in cell-based experiments. Some of these targets were problematic even without any tag; thus, the fact that all led to successful selection endpoints means that borderline cases can be worked on with a high probability of a positive outcome. Taken together with examples of successful case specific, high-level applications like generation of conformation-, epitope- and domain-specific Fabs, we feel that the CBP tag embodies all the attributes of covalent immobilization tags but does not suffer from some of their well-documented drawbacks. (C) 2015 Elsevier Ltd. All rights reserved.
机译:可逆的高亲和力固定标签是无数生物学应用的关键工具。但是,固有问题与许多当前的固定方法有关。特别地,噬菌体展示分选中的关键要素是靶蛋白的功能固定。为了避免这些问题,我们使用了钙调蛋白结合肽(CBP)的突变体(N5A)作为噬菌体展示分类中的固定标签。固定化依赖于钙存在下钙调蛋白对N5A突变体CBP(RWKKNFIAVSAANRFKKIS)的超高亲和力(K-D类似于2 pM),EDTA可以逆转,从而可控制“捕获和释放”特定粘合剂。为了评估该系统的功能,我们选择了8个目标,其中一些目标难以使用其他标签进行过表达和纯化,还有一些目标在分类实验中失败。在所有情况下,使用具有CBP融合构建体的Fab噬菌体展示文库生成特异性结合物。 Fab的K-D值在亚纳摩尔至低纳摩尔(nM)范围内,并已成功用于基于细胞的实验中选择性识别抗原。其中一些目标即使没有标签也存在问题。因此,所有这些因素都会导致成功的选择终点,这意味着可以对边缘病例进行积极处理的可能性很高。结合成功案例的成功案例(例如构象,表位和域特定Fab的生成),我们认为CBP标签体现了共价固定标签的所有属性,但并没有遭受某些损害记录的缺点。 (C)2015 Elsevier Ltd.保留所有权利。

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