论文标题

柔性引起的胶体夹子运动的影响

Flexibility-induced effects in the Brownian motion of colloidal trimers

论文作者

Verweij, Ruben W., Moerman, Pepijn G., Ligthart, Nathalie E. G., Huijnen, Loes P. P., Groenewold, Jan, Kegel, Willem K., van Blaaderen, Alfons, Kraft, Daniela J.

论文摘要

分子和生物系统中无处不在的分段柔韧性产生的形状变化,并有望影响分散物体的扩散运动和(生物学)功能。现在,具有自由连接键的胶体结构的最新发展已经直接研究了扩散形状变化的物体的可能性。在这里,我们显示了节段灵活性对最简单的模型系统的影响,这是一个由三个球形粒子组成的自由关联群,并验证了长期以来的理论预测。我们发现,除了旋转扩散时间之外,类似的构象扩散时间决定了扩散运动的放松,这是柔性组件独有的,其转化扩散率与较小但可测量的量不同。我们还发现了一个布朗式的胶囊模式,在该模式下,扩散运动与布朗的形状变化耦合。我们的发现可能对扩散起着重要作用的分子和生物系统具有影响,例如在锁定蛋白相互作用中的功能位点可用性。

Shape changes resulting from segmental flexibility are ubiquitous in molecular and biological systems, and are expected to affect both the diffusive motion and (biological) function of dispersed objects. The recent development of colloidal structures with freely-jointed bonds have now made a direct experimental investigation of diffusive shape-changing objects possible. Here, we show the effect of segmental flexibility on the simplest possible model system, a freely-jointed cluster of three spherical particles, and validate long-standing theoretical predictions. We find that in addition to the rotational diffusion time, an analogous conformational diffusion time governs the relaxation of the diffusive motion, unique to flexible assemblies, and that their translational diffusivity differs by a small but measurable amount. We also uncovered a Brownian quasiscallop mode, where diffusive motion is coupled to Brownian shape changes. Our findings could have implications for molecular and biological systems where diffusion plays an important role, such as functional site availability in lock-and-key protein interactions.

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