论文标题

比较增强酶扩散的单分子成像的不同方法

Comparison of different approaches to single-molecule imaging of enhanced enzyme diffusion

论文作者

Xu, Mengqi, Rogers, W. Benjamin, Ahmed, Wylie W., Ross, Jennifer L.

论文摘要

在其存在反应物存在下,酶已显示出更快的散射。最近,我们揭示了使用单粒子跟踪(SPT)具有总内反射荧光(TIRF)显微镜,对这一增强扩散的过程进行了新的见解。我们发现,在底物存在下,单个酶的迁移率增强了三倍,并且运动仍然是布朗尼亚语。在这项工作中,我们比较了研究单个酶扩散的不同实验设计以及不同的数据分析方法。我们首先将酶直接扎在受支持的脂质双层(SLB)上,以将酶扩散到两个维度。正如我们之前观察到的那样,这种实验设计在底物存在下恢复了酶扩散的3倍增强。我们还通过用SLB涂层的表面和甘油代替先前室设计中使用的庞大聚合物来简化系统。使用这种新设计的SLB/甘油腔,我们比较了SPT的两种不同的分析方法:均方体位移(MSD)分析和跳长分析。我们发现,MSD分析需要高粘度和较大的颗粒来准确地报告扩散系数,而跳长分析则较少取决于粘度或大小。此外,SLB甘油腔室无法再现酶的增强,因为甘油抑制了酶活性。

Enzymes have been shown to diffuse faster in the presence of their reactants. Recently, we revealed new insights into this process of enhanced diffusion using single-particle tracking (SPT) with total internal reflection fluorescence (TIRF) microscopy. We found that the mobility of individual enzymes was enhanced three fold in the presence of the substrate, and the motion remained Brownian. In this work, we compare different experimental designs, as well as different data analysis approaches, for studying single enzyme diffusion. We first tether enzymes directly on supported lipid bilayers (SLBs) to constrain the diffusion of enzymes to two dimensions. This experimental design recovers the 3-fold enhancement in enzyme diffusion in the presence of the substrate, as we observed before. We also simplify our system by replacing the bulky polymers used in the prior chamber design with a SLB-coated surface and glycerol. Using this newly-designed SLB/glycerol chamber, we compare two different analysis approaches for SPT: the mean-squared displacement (MSD) analysis and the jump-length analysis. We find that the MSD analysis requires high viscosity and large particles to accurately report the diffusion coefficient, while jump-length analysis depends less on the viscosity or size. Furthermore, the SLB-glycerol chamber fails to reproduce the enhanced diffusion of enzymes because glycerol inhibits enzyme activity.

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