Regional Analysis of Whole Cell Currents From Hair Cells of the Turtle Posterior Crista
Open Access
- 1 December 2002
- journal article
- Published by American Physiological Society in Journal of Neurophysiology
- Vol. 88 (6) , 3259-3278
- https://doi.org/10.1152/jn.00770.2001
Abstract
The turtle posterior crista is made up of two hemicristae, each consisting of a central zone containing type I and type II hair cells and a surrounding peripheral zone containing only type II hair cells and extending from the planum semilunatum to the nonsensory torus. Afferents from various regions of a hemicrista differ in their discharge properties. To see if afferent diversity is related to the basolateral currents of the hair cells innervated, we selectively harvested type I and II hair cells from the central zone and type II hair cells from two parts of the peripheral zone, one near the planum and the other near the torus. Voltage-dependent currents were studied with the whole cell, ruptured-patch method and characterized in voltage-clamp mode. We found regional differences in both outwardly and inwardly rectifying voltage-sensitive currents. As in birds and mammals, type I hair cells have a distinctive outwardly rectifying current ( IK,L), which begins activating at more hyperpolarized voltages than do the outward currents of type II hair cells. Activation of IK,Lis slow and sigmoidal. Maximal outward conductances are large. Outward currents in type II cells vary in their activation kinetics. Cells with fast kinetics are associated with small conductances and with partial inactivation during 200-ms depolarizing voltage steps. Almost all type II cells in the peripheral zone and many in the central zone have fast kinetics. Some type II cells in the central zone have large outward currents with slow kinetics and little inactivation. Although these currents resemble IK,L, they can be distinguished from the latter both electrophysiologically and pharmacologically. There are two varieties of inwardly rectifying currents in type II hair cells: activation of IK1is rapid and monoexponential, whereas that of Ihis slow and sigmoidal. Many type II cells either have both inward currents or only have IK1; very few cells only have Ih. Inward currents are less conspicuous in type I cells. Type II cells near the torus have smaller outwardly rectifying currents and larger inwardly rectifying currents than those near the planum, but the differences are too small to account for variations in discharge properties of bouton afferents innervating the two regions of the peripheral zone. The large outward conductances seen in central cells, by lowering impedances, may contribute to the low rotational gains of some central-zone afferents.Keywords
This publication has 56 references indexed in Scilit:
- JPCalc, a software package for calculating liquid junction potential corrections in patch-clamp, intracellular, epithelial and bilayer measurements and for correcting junction potential measurementsPublished by Elsevier ,2003
- Cyclic GMP inhibits and shifts the activation curve of the delayed-rectifier (IK1) of type I mammalian vestibular hair cellsNeuroReport, 1997
- Functional architecture of vestibular primary afferents from the posterior semicircular canal of a turtle,Pseudemys (Trachemys) scripta elegansJournal of Comparative Neurology, 1994
- Comparative transduction mechanisms of hair cells in the bullfrog utriculus. I. Responses to intracellular currentJournal of Neurophysiology, 1994
- Comparative transduction mechanisms of hair cells in the bullfrog utriculus. II. Sensitivity and response dynamics to hair bundle displacementJournal of Neurophysiology, 1994
- Morphological correlates of response dynamics and efferent stimulation in horizontal semicircular canal afferents of the toadfish, Opsanus tauJournal of Neurophysiology, 1991
- Studies of solitary semicircular canal hair cells in the adult pigeon. I. Frequency- and time-domain analysis of active and passive membrane propertiesJournal of Neurophysiology, 1989
- The vestibular nerve of the chinchilla. II. Relation between afferent response properties and peripheral innervation patterns in the semicircular canalsJournal of Neurophysiology, 1988
- Correspondences between afferent innervation patterns and response dynamics in the bullfrog utricle and lagenaBrain Research, 1986
- M‐currents and other potassium currents in bullfrog sympathetic neuronesThe Journal of Physiology, 1982