The possible presence of different types of delayed rectifier K+ current (IK) was studied in vestibular hair cells of frog semicircular canals. Experiments were performed in thin slice preparations of the whole crista ampullaris and recordings were made using the whole-cell patch-clamp technique. We found that an apparent homogeneous IK, isolated from the other K+ currents, could be pharmacologically separated into two complementary components: a capsaicin-sensitive current (IK;c) and a barium-sensitive current (IK;b). IK;c was recruited at potentials more positive than 360 mV and showed a slow activation having a time constant (da) ranging on average from 12 ms at 40 mV to 32 ms at 320 mV. This current inactivated slowly with two voltage-independent time constants (dd1 and dd2 were 300 ms and 4 s respectively) and more than 80% of the channels were in an inactivated state at the cell resting potential. IK;b was also recruited at potentials more positive than 360 mV, but in contrast to IK;c, it activated more rapidly (da ranged on average from 1 ms at 40 mV to 4.5 ms at 320 mV) and it did not exhibit any inactivation process. Current clamp experiments revealed that IK;b, at variance with IK;c, contributes to the cell resting potential and represents the main repolarizing current when sensory cells are depolarized from rest. IK;c could have a role in hair cells when they are depolarized after hyperpolarizing stimuli, a condition that removes channel inactivation.

Inactivating and non-inactivating delayed rectifier potassium currents in hair cells of frog crista ampullaris

RUSSO, GIANCARLO;PRIGIONI, IVO
1999-01-01

Abstract

The possible presence of different types of delayed rectifier K+ current (IK) was studied in vestibular hair cells of frog semicircular canals. Experiments were performed in thin slice preparations of the whole crista ampullaris and recordings were made using the whole-cell patch-clamp technique. We found that an apparent homogeneous IK, isolated from the other K+ currents, could be pharmacologically separated into two complementary components: a capsaicin-sensitive current (IK;c) and a barium-sensitive current (IK;b). IK;c was recruited at potentials more positive than 360 mV and showed a slow activation having a time constant (da) ranging on average from 12 ms at 40 mV to 32 ms at 320 mV. This current inactivated slowly with two voltage-independent time constants (dd1 and dd2 were 300 ms and 4 s respectively) and more than 80% of the channels were in an inactivated state at the cell resting potential. IK;b was also recruited at potentials more positive than 360 mV, but in contrast to IK;c, it activated more rapidly (da ranged on average from 1 ms at 40 mV to 4.5 ms at 320 mV) and it did not exhibit any inactivation process. Current clamp experiments revealed that IK;b, at variance with IK;c, contributes to the cell resting potential and represents the main repolarizing current when sensory cells are depolarized from rest. IK;c could have a role in hair cells when they are depolarized after hyperpolarizing stimuli, a condition that removes channel inactivation.
1999
Physiology considers resources that study the regulation of biological functions at the level of the whole organism. This includes research from biochemical, cell biological and whole system studies of human and animal physiology. Comparative physiology, biological rhythms, and physiological measurement are also included. Resources emphasizing cellular regulation, or the physiology of specific organs are excluded and are covered in the Cell & Developmental Biology and Medical Research: Organs & Systems categories.
Sì, ma tipo non specificato
Inglese
Internazionale
STAMPA
135
1 -2
113
123
Tematica: Canali ionici delle cellule cigliate
VESTIBULAR HAIR CELLS; POTASSIUM CURRENT; PATCH CLAMP
http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6T73-3X88B57-D&_user=3719172&_coverDate=09%2F30%2F1999&_rdoc=12&_fmt=high&_orig=browse&_srch=doc-info(%23toc%235047%231999%23998649998%23121005%23FLA%23display%23Volume)&_cdi=5047&_sort=d&_docanchor=&_ct=18&_acct=C000061210&_version=1&_urlVersion=0&_userid=3719172&md5=ca517eaefb8687877990b2006a4fa904
3
info:eu-repo/semantics/article
262
Marcotti, W.; Russo, Giancarlo; Prigioni, Ivo
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/138053
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