Experimental dissection of flagellar surface motility in chlamydomonas
Open Access
- 1 August 1980
- journal article
- research article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 86 (2) , 656-665
- https://doi.org/10.1083/jcb.86.2.656
Abstract
Experiments have explored the possible relationships between the flagellar surface motility of chlamydomonas, visualized as translocation of polystyrene beads by paralyzed (pf) mutants (Bloodgood, 1977, J. Cell Biol. 15:983-989), and the capacity of gametic flagella to participate in the mating reaction. While vegetative and gametic flagella bind beads with equal efficiencies and are capable of transporting them along entire flagellar lengths, beads on vegetative flagella are primarily associated with the proximal half of the flagella whereas those of gametic flagella exhibit no such preference. This difference may relate to the "tipping" response of gametes during sexual flagellar agglutination (Goodenough and Jurivich, 1978, J. Cell Biol. 79:680-693). Colchicine, vinblastine, chymotrypsin, cytochalasins B and D, and anti-β-tubulin antiserum are all able to inhibit the binding of beads to the flagellar suface. Trysin digestion and an antiserum directed against whole chlamydomonas flagella have no effect on the ability of flagella to bind beads, but the beads remain immobile. These results suggest that at least two flagellar activities participate in surface motility: (a) bead binding, which may involve a tubulin-like component at the flagellar surface; and (b) bead translocation, which may depend on a second component (e.g. an ATPase) of the flagellar surface. Surface motility is shown to be distinct from gametic adhesiveness per se, but it may participate in concentrating dispersed agglutinins, in driving them toward the flagellar tips, and/or in generating a signal-to-fuse from the flagellar tips to the cell body. Directly supporting these concepts is the observation that bound beads remain immobilized at the flagellar tips during the "tip-locking" stage of pf x pf matings, and the observation that bound ligands such as antibody fail to be tipped by trypsinized flagella.This publication has 28 references indexed in Scilit:
- Membrane-membrane and membrane-ligand interactions in Chlamydomonas mating.1980
- Reversible inhibition of Chlamydomonas flagellar surface motility.The Journal of cell biology, 1979
- Tipping and mating-structure activation induced in Chlamydomonas gametes by flagellar membrane antisera.The Journal of cell biology, 1978
- SEX-LIMITED EXPRESSION OF GENE LOCI CONTROLLING FLAGELLAR MEMBRANE AGGLUTINATION IN THE CHLAMYDOMONAS MATING REACTIONGenetics, 1978
- Microtubular proteins of Chlamydomonas reinhardtii. An immunochemical study based on the use of an antibody specific for the beta-tubulin subunit.Journal of Biological Chemistry, 1977
- Membrane marker movement on sympathetic axons in tissue cultureJournal of Neurobiology, 1976
- Gametic differentiation in Chlamydomonas reinhardtii. II. Flagellar membranes and the agglutination reaction.The Journal of cell biology, 1975
- THE UPPER CELL SURFACE: ITS INABILITY TO SUPPORT ACTIVE CELL MOVEMENT IN CULTUREThe Journal of cell biology, 1974
- Surface Movements during the Growth of Single Explanted NeuronsProceedings of the National Academy of Sciences, 1970
- NUTRITIONAL STUDIES WITH CHLAMYDOMONAS REINHARDIAnnals of the New York Academy of Sciences, 1953