Hither and yon: a review of bi-directional microtubule-based transport
- 1 June 2004
- journal article
- research article
- Published by IOP Publishing in Physical Biology
- Vol. 1 (2) , R1-R11
- https://doi.org/10.1088/1478-3967/1/2/r01
Abstract
Active transport is critical for cellular organization and function, and impaired transport has been linked to diseases such as neuronal degeneration. Much long distance transport in cells uses opposite polarity molecular motors of the kinesin and dynein families to move cargos along microtubules. It is increasingly clear that many cargos are moved by both sets of motors, and frequently reverse course. This review compares this bi-directional transport to the more well studied uni-directional transport. It discusses some bi-directionally moving cargos, and critically evaluates three different physical models for how such transport might occur. It then considers the evidence for the number of active motors per cargo, and how the net or average direction of transport might be controlled. The likelihood of a complex linking the activities of kinesin and dynein is also discussed. The paper concludes by reviewing elements of apparent universality between different bi-directionally moving cargos and by briefly considering possible reasons for the existence of bi-directional transport.Keywords
This publication has 57 references indexed in Scilit:
- Cytoplasmic dynein functions as a gear in response to loadNature, 2004
- Pigment Cells: A Model for the Study of Organelle TransportAnnual Review of Cell and Developmental Biology, 2003
- Switching between Microtubule- and Actin-Based Transport Systems in Melanophores Is Controlled by cAMP LevelsCurrent Biology, 2003
- Rabs grab motors: defining the connections between Rab GTPases and motor proteinsCurrent Opinion in Cell Biology, 2002
- Motor–cargo interactions: the key to transport specificityTrends in Cell Biology, 2002
- Single molecule nanobioscienceTrends in Biochemical Sciences, 2001
- Modulation of cytoplasmic dynein ATPase activity by the accessory subunitsCell Motility, 2000
- Making Sense of Melanosome Dynamics in Mouse MelanocytesPigment Cell Research, 2000
- The 55-kDa Tumor Necrosis Factor Receptor Induces Clustering of Mitochondria through Its Membrane-proximal RegionJournal of Biological Chemistry, 1998
- Nerve growth cone lamellipodia contain two populations of actin filaments that differ in organization and polarity.The Journal of cell biology, 1992