Valbuena Alejandro, Oroz Javier, Vera Andrés Manuel, Gimeno Alejandro, Gómez-Herrero Julio, Carrión-Vázquez Mariano
Instituto Cajal, CSIC and Centro de Investigación Biomédica en Red sobre Enfermedades Neurodegenerativas (CIBERNED), E-28002 Madrid, Spain.
Rev Sci Instrum. 2007 Nov;78(11):113707. doi: 10.1063/1.2794732.
Most of studies in protein nanomechanics have used the atomic force microscope (AFM) in its force-measuring mode on immobilized protein repeats (polyproteins) as single-molecule markers. Here, we add imaging capabilities to a standard, state-of-the-art AFM "puller" and integrate the most powerful programs of analysis available for both AFM modes. This unique instrument allows high-resolution, quasi-simultaneous imaging/force spectroscopy in aqueous solution. We demonstrate its capabilities using polyproteins of a model system (titin I27 domain). This tool should greatly facilitate the development of a much needed universal functionalization system for AFM, one that should allow better sample control and an improved efficiency of protein immobilization.
蛋白质纳米力学的大多数研究都使用原子力显微镜(AFM)在其测力模式下对固定化的蛋白质重复序列(多蛋白)进行单分子标记。在此,我们为标准的、最先进的AFM“拉拽器”增添成像功能,并整合了适用于两种AFM模式的最强大的分析程序。这一独特的仪器能够在水溶液中进行高分辨率、准同步成像/力谱分析。我们使用一个模型系统(肌联蛋白I27结构域)的多蛋白来展示其功能。该工具应能极大地推动为AFM开发急需的通用功能化系统,该系统应能实现更好的样品控制并提高蛋白质固定效率。