Single-molecule analysis of kinesin motility reveals regulation by the cargo-binding tail domain
- 11 August 1999
- journal article
- Published by Springer Nature in Nature Cell Biology
- Vol. 1 (5) , 293-297
- https://doi.org/10.1038/13008
Abstract
Conventional kinesin transports membranes along microtubules in vivo, but the majority of cellular kinesin is unattached to cargo. The motility of non-cargo-bound, soluble kinesin may be repressed by an interaction between the amino-terminal motor and carboxy-terminal cargo-binding tail domains, but neither bead nor microtubule-gliding assays have shown such inhibition. Here we use a single-molecule assay that measures the motility of kinesin unattached to a surface. We show that full-length kinesin binds microtubules and moves about ten times less frequently and exhibits discontinuous motion compared with a truncated kinesin lacking a tail. Mutation of either the stalk hinge or neck coiled-coil domain activates motility of full-length kinesin, indicating that these regions are important for tail-mediated repression. Our results suggest that the motility of soluble kinesin in the cell is inhibited and that the motor becomes activated by cargo binding.Keywords
This publication has 47 references indexed in Scilit:
- The C-Terminal Region of the Stalk Domain of Ubiquitous Human Kinesin Heavy Chain Contains the Binding Site for Kinesin Light ChainBiochemistry, 1998
- The Directional Preference of Kinesin Motors Is Specified by an Element outside of the Motor Catalytic DomainCell, 1997
- Failure of a single-headed kinesin to track parallel to microtubule protofilamentsNature, 1995
- Cloning and localization of a conventional kinesin motor expressed exclusively in neuronsNeuron, 1994
- Single kinesin molecules crossbridge microtubules in vitro.Proceedings of the National Academy of Sciences, 1993
- Cloning and expression of a human kinesin heavy chain gene: interaction of the COOH-terminal domain with cytoplasmic microtubules in transfected CV-1 cellsThe Journal of cell biology, 1992
- Submolecular domains of bovine brain kinesin identified by electron microscopy and monoclonal antibody decorationCell, 1989
- The molecular structure of adrenal medulla kinesinCell Motility, 1989
- Copurification of kinesin polypeptides with microtubule‐stimulated Mg‐ATPase activity and kinetic analysis of enzymatic propertiesCell Motility, 1989