THE ROLE OF CALCIUM IN Chlamydomonas PHOTOMOVEMENT RESPONSES AS ANALYSED BY CALCIUM CHANNEL INHIBITORS
- 1 September 1990
- journal article
- research article
- Published by Wiley in Photochemistry and Photobiology
- Vol. 52 (3), 575-583
- https://doi.org/10.1111/j.1751-1097.1990.tb01802.x
Abstract
Phototaxis and light-induced stop responses in Chlamydomonas are known to be calcium dependent. We show that phototaxis is stereoselectively inhibited by dihyropyridines, verapamil, diltiazem, .omega.-conotoxin and pimozide, all inhibitors of slow L-type calcium channels. In contrast, the stop response in Chlamydomonas can be specifically reduced only by .omega.-conotoxin and pimozide. The light-regulated calcium uptake as detected by 45calcium can be completely suppressed by verapamil and .omega.-conotoxin but not by diltiazem or any of the dihyropyridine-type calcium channel inhibitors. We conclude that phototaxis and stop response in Chlamydomonas are regulated by three distinguishable drug receptor sites. One of them controls phototaxis and is sensitive to verapamil. The second site controls stop response and phototaxis and shows a high sensitivity to .omega.-conotoxin and pimozide. These two drug receptors seem to be localized in the plasma membrane and function as ion channels. In addition, calcium influences internal signal transduction from the photoreceptor to the flagella. This internal role of calcium is inhibited by the dihydropyridine binding to a dihydropyridine receptor protein. The arylazide-1,4-dihydropyridine[3H]azidopine binds with a Kd = 35 nM to a 50 kDa protein located in one of the internal cell membranes. Azidopine binding is fully reversible and can be partially inhibited by nimodipine and PN-200110. This protein is the first identified dihyropyridine receptor in an unicellular plant cell. It might serve as an internal calcium regulating channel in Chlamydomonas.This publication has 47 references indexed in Scilit:
- Adaptation ofChlamydomonas phototaxis: I. A light-scattering apparatus for measuring the phototactic rate of microorganisms with high time resolutionCell Motility, 1989
- Evidence on the Role of Ca2+ as a Modulator of Photosensory Transduction in Chamydomonas reinhardtii: Selective Effects of Cu2+ on PhotoresponsesAnnals of the New York Academy of Sciences, 1987
- Resolving the structure of the Ca2+ channel by photoaffinity labellingTrends in Pharmacological Sciences, 1987
- Purification of the cardiac 1,4-dihydropyridine receptor/calcium channel complexBiochemical and Biophysical Research Communications, 1985
- A venom peptide with a novel presynaptic blocking actionNature, 1984
- Submicromolar levels of calcium control the balance of beating between the two flagella in demembranated models of Chlamydomonas.The Journal of cell biology, 1984
- Allosteric interactions among drug binding sites on calmodulinBiochemical and Biophysical Research Communications, 1983
- Flagellar Coordination in Chlamydomonas reinhardtii : Isolation and Reactivation of the Flagellar ApparatusScience, 1975
- Deoxyribonucleic acid replication in meiosis of Chlamydomonas reinhardiJournal of Molecular Biology, 1967
- Importance of Calcium and Magnesium Ions in Phototaxis of Motile Green AlgæNature, 1957