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The measurement of volume change by capillary dilatometry

机译:通过毛细管膨胀法测量体积变化

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摘要

Capillary dilatometry enables direct measurement of changes in volume, an extensive thermodynamic property. The results provide insight into the changes in hydration that occur upon protein folding, ligand binding, and the interactions of proteins with nucleic acids and other cellular components. Often the entropy change arising from release of hydrating solvent provides the main driving force of a binding reaction. For technical reasons, though, capillary dilatometry has not been as widely used in protein biochemistry and biophysics as other methods such as calorimetry. Described here are simple apparatus and simple methods, which bring the technique within the capacity of any laboratory. Even very simple results are shown to have implications for macromolecular‐based phenomena. Protein examples are described.
机译:毛细管膨胀法可以直接测量体积变化,具有广泛的热力学性质。结果提供了对蛋白质折叠,配体结合以及蛋白质与核酸和其他细胞成分相互作用后发生水合变化的见解。通常,由水合溶剂的释放引起的熵变提供了结合反应的主要驱动力。但是,由于技术原因,毛细管膨胀法并未像其他方法(例如量热法)那样广泛用于蛋白质生物化学和生物物理学中。这里描述的是简单的设备和简单的方法,这些技术和方法使任何实验室都可以使用。结果表明,即使是非常简单的结果也对基于大分子的现象有影响。描述了蛋白质实例。

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