The Road Less Traveled: Emerging Principles of Kinesin Motor Utilization
- 1 November 1999
- journal article
- review article
- Published by Annual Reviews in Annual Review of Cell and Developmental Biology
- Vol. 15 (1), 141-183
- https://doi.org/10.1146/annurev.cellbio.15.1.141
Abstract
Proteins of the kinesin superfamily utilize a conserved catalytic motor domain to generate movements in a wide variety of cellular processes. In this review, we discuss the rapid expansion in our understanding of how eukaryotic cells take advantage of these proteins to generate force and movement in diverse functional contexts. We summarize several recent examples revealing that the simplest view of a kinesin motor protein binding to and translocating a cargo along a microtubule track is inadequate. In fact, this paradigm captures only a small subset of the many ways in which cells harness force production of the generation of intracellular movements and functions. We also highlight several situations where the catalytic kinesin motor domain may not be used to generate movement, but instead may be used in other biochemical and functional contexts. Finally, we review some recent ideas about kinesin motor regulation, redundancy, and cargo attachment strategies.Keywords
This publication has 259 references indexed in Scilit:
- KIF3C, a Novel Member of the Kinesin Superfamily: Sequence, Expression, and Mapping to Human Chromosome 2 at 2p23Genomics, 1998
- KIFC2 Is a Novel Neuron-Specific C-Terminal Type Kinesin Superfamily Motor for Dendritic Transport of Multivesicular Body-Like OrganellesNeuron, 1997
- Interaction of the Rho Family Small G Proteins with Kinectin, an Anchoring Protein of Kinesin MotorBiochemical and Biophysical Research Communications, 1996
- A bipolar kinesinNature, 1996
- Xklp2, a Novel Xenopus Centrosomal Kinesin-like Protein Required for Centrosome Separation during MitosisCell, 1996
- Modulation of CENP-E organization at kinetochores by spindle microtubule attachmentCell Motility, 1996
- A plus-end-directed motor enzyme that moves antiparallel microtubules in vitro localizes to the interzone of mitotic spindlesNature, 1992
- Kinesin-related gene unc-104 is required for axonal transport of synaptic vesicles in C. elegansCell, 1991
- Microtubule nucleation and organization in teleost photoreceptors: Microtubule recovery after elimination by coldJournal of Neurocytology, 1990
- Polarity orientation of microtubules in hippocampal neurons: uniformity in the axon and nonuniformity in the dendrite.Proceedings of the National Academy of Sciences, 1988