Related Experiment Video
Updated: Jul 7, 2026

Assembling Molecular Shuttles Powered by Reversibly Attached Kinesins
Published on: January 26, 2019
Enhancing the stability of kinesin motors for microscale transport applications
Maruti Uppalapati1, Ying-Ming Huang, Thomas Nelson Jackson
1Department of Bioengineering, Penn State University, 229 Hallowell Building, University Park, PA 16802, USA.
Abstract:
Biomolecular motors, such as kinesins, have great potential for micro-actuation and micro- or nanoscale active transport when integrated into microscale devices. However, the stability and limited shelf life of these motor proteins and their associated protein filaments is a barrier to their implementation. Here we demonstrate that freeze-drying or critical point-drying kinesins adsorbed to glass surfaces extends their lifetime from days to more than four months. Further, photoresist deposition and removal can be carried out on these motor-adsorbed surfaces without loss of motor function. The methods developed here are an important step towards realizing the integration of biological motors into practical devices, and these approaches can be extended to patterning and preserving other proteins immobilized on surfaces.
Related Concept Videos
Destabilization of Microtubules
The Movement of Organelles and Vesicles
Microtubule Associated Motor Proteins
Anaphase A and B
Plus-end depolymerization releases tubulin heterodimers from the terminal region of the microtubule. As tubulin subunits are lost, the Ndc80 complexes detach...
Microtubule Instability
Microtubules in Cell Motility

