Vesicle transport along microtubular ribbons and isolation of cytoplasmic dynein from Paramecium.
Open Access
- 1 December 1990
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 111 (6) , 2553-2562
- https://doi.org/10.1083/jcb.111.6.2553
Abstract
Cytoplasmic microtubule-based motility in Paramecium was investigated using video-enhanced contrast microscopy, the quick-freeze, deep-etch technique, and biochemical isolations. Three distinct vesicle populations were found to be transported unidirectionally along the cytopharyngeal microtubular ribbons. This minus-end-directed movement exhibited unique in vivo features in that the vesicle transport was nonsaltatory, rapid, and predominantly along one side of the microtubular ribbons. To identify candidate motor proteins which may participate in vesicle transport, we prepared cytosolic extracts of Paramecium and used bovine brain microtubules as an affinity matrix. These preparations were found to contain a microtubule-stimulated ATPase which supported microtubule gliding in vitro. This protein was verified as a cytoplasmic dynein based upon its relative molecular mass, sedimentation coefficient of 16S, susceptibility to vanadate photocleavage, elevated CTPase/ATPase ratio, and its typical two-headed dynein morphology. This dynein was directly compared with the axonemal dyneins from Paramecium and found to differ by five criteria: morphology, sedimentation coefficient, CTPase/ATPase ratio, vanadate cleavage patterns, and polypeptide composition. The cytoplasmic dynein is therefore not an axonemal dynein precursor, but rather it represents a candidate for supporting the microtubule-based vesicle transport which proceeds along the microtubular ribbons.Keywords
This publication has 45 references indexed in Scilit:
- Microtubule translocation properties of intact and proteolytically digested dyneins from Tetrahymena cilia.The Journal of cell biology, 1989
- Sertoli cell processes have axoplasmic features: an ordered microtubule distribution and an abundant high molecular weight microtubule-associated protein (cytoplasmic dynein).The Journal of cell biology, 1988
- The role of kinesin and other soluble factors in organelle movement along microtubules.The Journal of cell biology, 1988
- Characterization of the microtubule-activated ATPase of brain cytoplasmic dynein (MAP 1C).The Journal of cell biology, 1988
- Microtubule-associated protein 1C from brain is a two-headed cytosolic dyneinNature, 1988
- MAP 1C is a microtubule-activated ATPase which translocates microtubules in vitro and has dynein-like properties.The Journal of cell biology, 1987
- Visualization of the structural polarity of microtubulesNature, 1980
- Axenic Paramecium caudatum. I. Mass Culture and Structure*The Journal of Protozoology, 1979
- Evidence for firm linkages between microtubules and membrane-bounded vesicles.The Journal of cell biology, 1975
- Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Nature, 1970