Abraham Punnoose Jibin, Hayden Andrew, Kam Chai S, Halvorsen Ken
The RNA Institute, University at Albany, State University of New York, Albany, NY, USA.
Department of Biological Sciences, University at Albany, State University of New York, Albany, NY, USA.
Nat Protoc. 2024 Dec 30. doi: 10.1038/s41596-024-01102-y.
The ability to apply controlled forces to individual molecules or molecular complexes and observe their behaviors has led to many important discoveries in biology. Instruments capable of probing single-molecule forces typically cost >US$100,000, limiting the use of these techniques. The centrifuge force microscope (CFM) is a low-cost and easy-to-use instrument that enables high-throughput single-molecule studies. By combining the imaging capabilities of a microscope with the force application of a centrifuge, the CFM enables the simultaneous probing of hundreds to thousands of single-molecule interactions using tethered particles. Here we present a comprehensive set of instructions for building a CFM module that fits within a commercial benchtop centrifuge. The CFM module uses a 3D-printed housing, relies on off-the-shelf optical and electrical components, and can be built for less than US$1,000 in about 1 day. We also provide detailed instructions for setting up and running an experiment to measure force-dependent shearing of a short DNA duplex, as well as the software for CFM control and data analysis. The protocol is suitable for users with basic experience in analytical biochemistry and biophysics. The protocol enables the use of CFM-based experiments and may facilitate access to the single-molecule research field.
对单个分子或分子复合物施加可控力并观察其行为的能力,已在生物学领域带来了许多重要发现。能够探测单分子力的仪器通常售价超过10万美元,这限制了这些技术的应用。离心力显微镜(CFM)是一种低成本且易于使用的仪器,可实现高通量单分子研究。通过将显微镜的成像能力与离心机的力施加功能相结合,CFM能够使用系留颗粒同时探测数百到数千个单分子相互作用。在此,我们提供了一套完整的构建适合商用台式离心机的CFM模块的说明。该CFM模块使用3D打印外壳,依赖现成的光学和电气组件,大约1天内花费不到1000美元即可构建完成。我们还提供了设置和运行测量短DNA双链体的力依赖性剪切实验的详细说明,以及CFM控制和数据分析软件。该方案适用于具有分析生物化学和生物物理学基础经验的用户。该方案能够实现基于CFM的实验,可能有助于进入单分子研究领域。