Microtubule Gliding Assay

A microtubule gliding assay is an in vitro method for measuring how motor proteins transport cytoskeletal filaments across a surface, making it useful for studying nanoscale motion and force generation. In a typical assay, kinesin molecules are immobilized on a substrate and use energy from ATP hydrolysis to propel fluorescently labeled microtubules along the surface, allowing researchers to quantify velocity, direction, and motor activity. In engineering, this platform supports the design of biomolecular transport systems, biosensors, and motor-driven nanodevices. It also enables systematic testing of surface chemistry, filament properties, and experimental conditions that influence nanoscale transport performance.

Microtubule Gliding Assay - Related Videos

Research

JoVE Journal - Bioengineering

Flexural Rigidity Measurements of Biopolymers Using Gliding Assays

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Cited by 2 •

2012

A method to measure the persistence length or flexural rigidity of biopolymers is described. The method uses a kinesin-driven microtubule gliding assay to experimentally determine the persistence length of individual microtubules and is adaptable to actin-based gliding assays.

Gliding Motility in Phormidium lacuna Filaments

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2025

Source: Weber, N., et al., Natural Transformation, Protein Expression, and Cryoconservation of the Filamentous Cyanobacterium Phormidium lacuna. J. Vis. Exp. (2022)This video demonstrates the procedure to assess gliding motility in Phormidium lacuna by homogenizing filament cultures to create a uniform suspension, preparing a Petri plate assay setup over a microscope slide, and visualizing filament movement.

The Gliding Actin Filament Assay: An In Vitro Motility Assay to Study Translocation of Actin Filaments on Immobilized Myosins

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2025

In this video, we perform an in vitro motility assay to analyze the actin-myosin interactions. The gliding movement of actin filaments on immobilized myosin molecules is visualized using fluorescence microscopy.

Microtubule Binding Assay in CRC Cells: A Method to Examine Microtubule Binding Tau Protein in Colorectal Cancer Cells

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2023

This video describes the microtubule-binding assay used to separate the microtubule-binding tau protein from non-binding hyperphosphorylated tau protein fractions in colorectal cancer cells. This assay helps determine the effect of various chemicals that can alter the phosphorylation status of tau protein, affecting its microtubule binding.

Preparation of Segmented Microtubules to Study Motions Driven by the Disassembling Microtubule Ends

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Cited by 24 •

2014

Microtubules are inherently unstable polymers, and their switching between growth and shortening is stochastic and difficult to control. Here we describe protocols using segmented microtubules with photoablatable stabilizing caps. Depolymerization of segmented microtubules can be triggered with high temporal and spatial resolution, thereby assisting analysis of motions with the disassembling microtubule ends.

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