Membrane currents that govern smooth muscle contraction in a ctenophore
- 1 February 1988
- journal article
- research article
- Published by Springer Nature in Nature
- Vol. 331 (6156) , 533-535
- https://doi.org/10.1038/331533a0
Abstract
Ctenophores are transparent marine organisms that swim by means of beating cilia; they are the simplest animals with individual muscle fibres. Predatory species, such as Beroe ovata, have particularly well-developed muscles and are capable of an elaborate feeding response. When Beroe contacts its prey, the mouth opens, the body shortens, the pharynx expands, the prey is engulfed and the lips then close tightly. How this sequence, which lasts 1 s, is accomplished is unclear. The muscles concerned are structurally uniform and are innervated at each end by a neuronal nerve net with no centre for coordination. Isolated muscle cells studied under voltage-clamp provide a solution to this puzzle. We find that different groups of muscle cells have different time-dependent membrane currents. Because muscle contraction depends upon calcium entry during each action potential, these different currents produce different patterns of contraction. We conclude that in a simple animal such as a ctenophore, a sophisticated set of membrane conductances can compensate for the absence of an elaborate system of effectors.Keywords
This publication has 15 references indexed in Scilit:
- Single-Channel and Genetic Analyses Reveal Two Distinct A-Type Potassium Channels in DrosophilaScience, 1987
- Isolation of functional giant smooth muscle cells from an invertebrate: structural features of relaxed and contracted fibers.Proceedings of the National Academy of Sciences, 1982
- Voltage clamp of single freshly dissociated smooth muscle cells: Current-voltage relationship for three currentsPflügers Archiv - European Journal of Physiology, 1981
- Calcium ChannelAnnual Review of Neuroscience, 1981
- Ultrastructure of the giant smooth muscle fiber of the ctenophore Beroe ovataJournal of Ultrastructure Research, 1980
- Giant smooth muscle cells of Beroë. Ultrastructure, innervation, and electrical properties.The Journal of general physiology, 1980
- The effect of internal and external 4‐aminopyridine on the potassium currents in intracellularly perfused squid giant axonsThe Journal of Physiology, 1977
- Potassium activation in Helix aspersa neurones under voltage clamp: a component mediated by calcium influx.The Journal of Physiology, 1975
- The nervous system of ctenophores III. Ultrastructure of synapsesJournal of Neurocytology, 1973
- Membrane changes of Onchidium nerve cell in potassium‐rich mediaThe Journal of Physiology, 1961