Protein Movement Rates

Protein movement rates describe how quickly proteins change position within cells or other biological environments, a property that influences signaling, transport, assembly, and cellular organization. Movement can result from Brownian diffusion down concentration gradients, interactions with membranes or binding partners, or active transport driven by motor proteins and cellular energy. Rates vary with protein size, shape, viscosity, molecular crowding, and binding strength, and can be measured through approaches such as fluorescence recovery after photobleaching and single-particle tracking. Comparing these rates helps researchers understand protein localization, reaction timing, intracellular trafficking, and disruptions associated with disease or altered cell function.

Protein Movement Rates - Related Videos

Research

JoVE Journal - Biology

The Structure of Skilled Forelimb Reaching in the Rat: A Movement Rating Scale

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Cited by 54 •

2008

The skilled reaching scale divides the movement by a forelimb in a reach for food act into composite elements each of which are evaluated with a three-point scale. The rating scale is described for a normal rat and can be applied toward evaluating neurological motor disorders.

Measuring Plasma Membrane Protein Endocytic Rates by Reversible Biotinylation

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Cited by 23 •

2009

Regulated endocytosis governs the cell surface expression levels of the majority of membrane proteins. Here we utilize reducible, membrane impermeant biotinylation reagents to measure the endocytic rate of the dopamine transporter (DAT), a polytopic membrane protein. The method facilitates a straightforward approach to measuring the endocytic rate of most plasma membrane proteins.

Quantitative Autoradiographic Method for Determination of Regional Rates of Cerebral Protein Synthesis In Vivo

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Cited by 3 •

2019

Protein synthesis is a critical biological process for cells. In brain, it is required for adaptive changes. Measurement of rates of protein synthesis in the intact brain requires careful methodological considerations. Here we present the L-[1-14C]-leucine quantitative autoradiographic method for determination of regional rates of cerebral protein synthesis in vivo.

Eye Movement Monitoring of Memory

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Cited by 10 •

2010

Eye movement monitoring (or eye tracking) reveals where in space the eyes linger, when and for how long. Here, we demonstrate how eye tracking can be used to investigate the integrity of memory in multiple participant populations, without requiring verbal, or otherwise explicit, reports.

Improving the Success Rate of Protein Crystallization by Random Microseed Matrix Screening

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Cited by 20 •

2013

Here we describe a general method for random microseed matrix screening. This technique is shown to significantly increase the success rate of protein crystallization screening experiments, reduce the need for optimization, and provide a reliable supply of crystals for data collection and ligand-soaking experiments.

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