Ritterson Ryan S, Kuchenbecker Kristopher M, Michalik Michael, Kortemme Tanja
Graduate Group in Biophysics, University of California, San Francisco, San Francisco, California 94158, USA.
J Am Chem Soc. 2013 Aug 28;135(34):12516-9. doi: 10.1021/ja404992r. Epub 2013 Aug 14.
There is a growing interest in engineering proteins whose function can be controlled with the spatial and temporal precision of light. Here, we present a novel example of a functional light-triggered switch in the Ca-dependent cell-cell adhesion protein E-cadherin, created using a mechanism-based design strategy. We report an 18-fold change in apparent Ca(2+) binding affinity upon illumination. Our results include a detailed examination of functional switching via linked changes in Ca(2+) binding and cadherin dimerization. This design opens avenues toward controllable tools that could be applied to many long-standing questions about cadherin's biological function in cell-cell adhesion and downstream signaling.
人们对工程化蛋白质的兴趣日益浓厚,这类蛋白质的功能能够通过光的空间和时间精度进行控制。在此,我们展示了一种在钙依赖性细胞间粘附蛋白E-钙粘蛋白中功能性光触发开关的新例子,它是利用基于机制的设计策略创建的。我们报告了光照后表观钙(2+)结合亲和力有18倍的变化。我们的结果包括通过钙(2+)结合和钙粘蛋白二聚化的相关变化对功能转换进行的详细研究。这种设计为可控工具开辟了道路,这些工具可应用于许多关于钙粘蛋白在细胞间粘附和下游信号传导中的生物学功能的长期问题。