Vesicle transport: The role of actin filaments and myosin motors
- 15 October 1999
- journal article
- review article
- Published by Wiley in Microscopy Research and Technique
- Vol. 47 (2) , 93-106
- https://doi.org/10.1002/(sici)1097-0029(19991015)47:2<93::aid-jemt2>3.0.co;2-p
Abstract
The transport of vesicles and the retention of organelles at specific locations are fundamental processes in cells. Actin filaments and myosin motors have been shown to be required for both of these tasks. Most of the organelles in cells associate with actin filaments and some of the myosin motors required for movement on actin filaments have been identified. Myosin V has been shown to transport endoplasmic reticulum (ER) vesicles in neurons, pigment granules in melanocytes, and the vacuole in yeast. Myosin I has been shown to be involved in the transport of Golgi-derived vesicles in epithelial cells. Myosin VI has been shown to be associated with Golgi-derived vesicles, and cytoplasmic vesicles in living Drosophila embryos. Myosin II may be a vesicle motor but its role in vesicle transport has not been resolved. Secretory vesicles, endosomes and mitochondria appear to be transported on actin filaments but the myosin motors on these organelles have not been identified. Mitochondria in yeast may be transported by the dynamic assembly of an actin "tail." The model that has unified all of these findings is the concept that long-range movement of vesicles occurs on microtubules and short-range movement on actin filaments. The details of how the microtubule-dependent and the actin-dependent motors are coordinated are important questions in the field. There is now strong evidence that two molecular motors, kinesin and myosin V, interact with each other and perhaps function as a complex on vesicles. An understanding of the interrelationship of microtubules and actin filaments and the motors that move cargo on them will ultimately establish how vesicles and organelles are transported to their specific locations in cells.Keywords
This publication has 100 references indexed in Scilit:
- Interaction between Mitochondria and the Actin Cytoskeleton in Budding Yeast Requires Two Integral Mitochondrial Outer Membrane Proteins, Mmm1p and Mdm10pThe Journal of cell biology, 1998
- The dilute-lethal (dl) gene attacks a Ca2+ store in the dendritic spine of Purkinje cells in miceNeuroscience Letters, 1996
- Golgi-membrane dynamics are cytoskeleton dependent: A study on Golgi stack movement induced by brefeldin AProtoplasma, 1996
- MMM1 encodes a mitochondrial outer membrane protein essential for establishing and maintaining the structure of yeast mitochondria.The Journal of cell biology, 1994
- Relative distribution of actin, myosin I, and myosin II during the wound healing response of fibroblasts.The Journal of cell biology, 1993
- Changes in the microvillus cytoskeleton during rhabdom formation in the retina of the crayfishProcambarus clarkiiJournal of Neurocytology, 1991
- Microtubule- and motor-dependent fusion in vitro between apical and basolateral endocytic vesicles from MDCK cellsCell, 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
- Serial analysis of microtubules in cultured rat sensory axonsJournal of Neurocytology, 1981
- Polarity of actin at the leading edge of cultured cellsNature, 1978