Voltage-gated mobility of the Ca2+ channel cytoplasmic tails and its regulatory role

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Abstract

Transient increase in intracellular free Ca2+ concentration generated by the voltage-gated Cav1.2 channels acts as an important intracellular signal. By using fluorescence resonance energy transfer combined with patch clamp in living cells, we present evidence for voltage-gated mobility of the cytoplasmic tails of the Cav1.2 channel and for its regulatory role in intracellular signaling. Anchoring of the C-terminal tail to the plasma membrane caused an inhibition of its state-dependent mobility, channel inactivation, and CREB-dependent transcription. Release of the tail restored these functions suggesting a direct role for voltage-gated mobility of the C-terminal tail in Ca2+ signaling.

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Kobrinsky, E., Schwartz, E., Abernethy, D. R., & Soldatov, N. M. (2003). Voltage-gated mobility of the Ca2+ channel cytoplasmic tails and its regulatory role. Journal of Biological Chemistry, 278(7), 5021–5028. https://doi.org/10.1074/jbc.M211254200

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