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January 13, 2010Journal of Neuroscience187 citationsOpen Access

Loss of Cav1.3 Channels Reveals the Critical Role of L-Type and BK Channel Coupling in Pacemaking Mouse Adrenal Chromaffin Cells

AMAndrea MarcantoniDVDavid VandaelSMSatyajit Mahapatra

Key Result

Cav1.3 channel deficiency decreased the proportion of spontaneously firing mouse chromaffin cells from 80% to 30%, revealing their critical role as subthreshold pacemaker channels.

Structured PICO

P
Population
In vitro study of adrenal chromaffin cells isolated from young wild-type and Cav1.3 knockout mice to study pacemaker currents.
E
Exposure
Cav1.3 channel deletion (Cav1.3(-/-) knockout) and pharmacological modulation (nifedipine, BayK-8644, paxilline)
C
Comparator
Wild-type (WT) mouse chromaffin cells
O
Outcome
Electrophysiological properties including spontaneous firing rate, action potential shape, and LTCC-BK channel couplingsurrogate

Cav1.3 channels are critical subthreshold pacemaker channels in mouse adrenal chromaffin cells, functioning through close coupling with fast-inactivating BK channels.

Main Result

Absolute Event Rate: 30% vs 80%

Limitations

  • In vitro study on isolated cells may not fully reflect intact adrenal gland physiology.
  • Use of a single representative action potential train for voltage clamp may not capture the full variability of spontaneous firing patterns.
  • Potential compensatory upregulation of non-L-type channels (e.g., R-type) in knockout mice could confound some observations.

Abstract

We studied wild-type (WT) and Cav1.3(-/-) mouse chromaffin cells (MCCs) with the aim to determine the isoform of L-type Ca(2+) channel (LTCC) and BK channels that underlie the pacemaker current controlling spontaneous firing. Most WT-MCCs (80%) were spontaneously active (1.5 Hz) and highly sensitive to nifedipine and BayK-8644 (1,4-dihydro-2,6-dimethyl-5-nitro-4-2-(trifluoromethyl)phenyl-3-pyridinecarboxylic acid, methyl ester). Nifedipine blocked the firing, whereas BayK-8644 increased threefold the firing rate. The two dihydropyridines and the BK channel blocker paxilline altered the shape of action potentials (APs), suggesting close coupling of LTCCs to BK channels. WT-MCCs expressed equal fractions of functionally active Cav1.2 and Cav1.3 channels. Cav1.3 channel deficiency decreased the number of normally firing MCCs (30%; 2.0 Hz), suggesting a critical role of these channels on firing, which derived from their slow inactivation rate, sizeable activation at subthreshold potentials, and close coupling to fast inactivating BK channels as determined by using EGTA and BAPTA Ca(2+) buffering. By means of the action potential clamp, in TTX-treated WT-MCCs, we found that the interpulse pacemaker current was always net inward and dominated by LTCCs. Fast inactivating and non-inactivating BK currents sustained mainly the afterhyperpolarization of the short APs (2-3 ms) and only partially the pacemaker current during the long interspike (300-500 ms). Deletion of Cav1.3 channels reduced drastically the inward Ca(2+) current and the corresponding Ca(2+)-activated BK current during spikes. Our data highlight the role of Cav1.3, and to a minor degree of Cav1.2, as subthreshold pacemaker channels in MCCs and open new interesting features about their role in the control of firing and catecholamine secretion at rest and during sustained stimulations matching acute stress.

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Cite This Study

Marcantoni et al. (2010) studied this question. Cav1.3 channel deficiency (knockout) vs. Wild-type (WT) mice was evaluated on Proportion of spontaneously active mouse chromaffin cells. Cav1.3 channel deficiency decreased the proportion of spontaneously firing mouse chromaffin cells from 80% to 30%, revealing their critical role as subthreshold pacemaker channels.

synapsesocial.com/papers/6a93ac56ba040e773e6976a3https://doi.org/10.1523/jneurosci.4961-09.2010
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