Benson D E, Conrad D W, de Lorimier R M, Trammell S A, Hellinga H W
Department of Biochemistry, Box 3711, Duke University Medical Center, Durham, NC 27710, USA.
Science. 2001 Aug 31;293(5535):1641-4. doi: 10.1126/science.1062461.
We report a flexible strategy for transducing ligand-binding events into electrochemical responses for a wide variety of proteins. The method exploits ligand-mediated hinge-bending motions, intrinsic to the bacterial periplasmic binding protein superfamily, to establish allosterically controlled interactions between electrode surfaces and redox-active, Ru(II)-labeled proteins. This approach allows the development of protein-based bioelectronic interfaces that respond to a diverse set of analytes. Families of these interfaces can be generated either by exploiting natural binding diversity within the superfamily or by reengineering the specificity of individual proteins. These proteins may have numerous medical, environmental, and defense applications.
我们报告了一种灵活的策略,可将多种蛋白质的配体结合事件转化为电化学反应。该方法利用细菌周质结合蛋白超家族固有的配体介导的铰链弯曲运动,在电极表面与氧化还原活性的钌(II)标记蛋白之间建立变构控制的相互作用。这种方法能够开发出对多种分析物作出响应的基于蛋白质的生物电子界面。这些界面家族既可以通过利用超家族内的天然结合多样性来生成,也可以通过重新设计单个蛋白质的特异性来生成。这些蛋白质可能具有众多医学、环境和国防应用。