Literature DB >> 1647663

Multiple calcium currents in a thyroid C-cell line: biophysical properties and pharmacology.

B A Biagi1, J J Enyeart.   

Abstract

The whole cell version of the patch-clamp technique was used to characterize voltage-gated Ca2+ channels in the calcitonin-secreting rat thyroid C-cell line 6-23 (clone 6). Three types of Ca2+ channels could be distinguished based on differences in voltage dependence, kinetics, and pharmacological sensitivity. T-type current was half-maximal at -31 mV, showed steady-state voltage-dependent inactivation that was half-maximal at -57 mV, inactivated with a voltage-dependent time constant that reached a minimum of 20 ms at potentials positive to -20 mV, and deactivated with a single time constant of approximately 2 ms at -80 mV. Reactivation of inactivated channels occurred with a time constant of 1.26 s at -90 mV. T current was selectively blocked by Ni2+ at concentrations between 5 and 50 microM. La3+ and Y3+ blocked the T current at 10- to 20-fold lower concentrations. Dihydropyridine-sensitive L-type current was half-maximal at a test potential of -3 mV and was approximately doubled in size when Ba2+ replaced Ca2+ as the charge carrier. Unlike L-type Ca2+ current in many cells, this current in C-cells displayed little Ca(2+)-dependent inactivation. N-type current was composed of inactivating and sustained components that were inhibited by omega-conotoxin. The inactivating component was half-maximal at +9 mV and could be fitted by two exponentials with time constants of 22 and 142 ms. A slow inactivation of N current with a time constant of 24.9 s was observed upon switching the holding potential from -80 to -40 mV. These results demonstrate that, similar to other neural crest derived cells, thyroid C-cells express multiple Ca2+ channels, including one previously observed only in neurons.

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Year:  1991        PMID: 1647663     DOI: 10.1152/ajpcell.1991.260.6.C1253

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  6 in total

1.  Availability of low-threshold Ca2+ current in retinal ganglion cells.

Authors:  Sherwin C Lee; Yuki Hayashida; Andrew T Ishida
Journal:  J Neurophysiol       Date:  2003-12       Impact factor: 2.714

2.  Molecular cloning of the alpha-1 subunit of an omega-conotoxin-sensitive calcium channel.

Authors:  S J Dubel; T V Starr; J Hell; M K Ahlijanian; J J Enyeart; W A Catterall; T P Snutch
Journal:  Proc Natl Acad Sci U S A       Date:  1992-06-01       Impact factor: 11.205

Review 3.  Low-voltage-activated ("T-Type") calcium channels in review.

Authors:  Anne Marie R Yunker; Maureen W McEnery
Journal:  J Bioenerg Biomembr       Date:  2003-12       Impact factor: 2.945

4.  High-voltage-activated calcium current in developing neurons is insensitive to nifedipine.

Authors:  P E Hockberger; S C Nam
Journal:  Pflugers Arch       Date:  1994-03       Impact factor: 3.657

5.  Block of current through T-type calcium channels by trivalent metal cations and nickel in neural rat and human cells.

Authors:  B Mlinar; J J Enyeart
Journal:  J Physiol       Date:  1993-09       Impact factor: 5.182

Review 6.  Neuronal T-type calcium channels: what's new? Iftinca: T-type channel regulation.

Authors:  M C Iftinca
Journal:  J Med Life       Date:  2011-05-25
  6 in total

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