4.8 Article

A physiologic rise in cytoplasmic calcium ion signal increases pannexin1 channel activity via a C-terminus phosphorylation by CaMKII

Publisher

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2108967118

Keywords

pannexin1 channel; permeability; phosphorylation; site-directed mutagenesis; unitary events

Funding

  1. Fondo Nacional de Desarrollo Cientifico y Tecnologico [21140955, 3180272, 1170733, 1191329, 1171240, 1181582, 11201113]
  2. grant ICMANID from the Centro Interdisciplinario de Neurociencias de Valparaiso [P09-022]

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This study identified S394 as a potential phosphorylation site for CaMKII in Panx1 channels, showing that phosphorylation at this site may activate Panx1 channels, allowing for ATP release and DAPI uptake. The results suggest a mechanism for Panx1 activation in response to increased cytoplasmic calcium signals without cleavage of the C-terminal domain.
Pannexin1 (Panx1) channels are ubiquitously expressed in vertebrate cells and are widely accepted as adenosine triphosphate (ATP)-releasing membrane channels. Activation of Panx1 has been associated with phosphorylation in a specific tyrosine residue or cleavage of its C-terminal domains. In the present work, we identified a residue (S394) as a putative phosphorylation site by Ca2+/calmodulin-dependent kinase II (CaMKII). In HeLa cells transfected with rat Panx1 (rPanx1), membrane stretch (MS)-induced activation- measured by changes in DAPI uptake rate-was drastically reduced by either knockdown of Piezo1 or pharmacological inhibition of calmodulin or CaMKII. By site-directed mutagenesis we generated rPanx1S394A-EGFP (enhanced green fluorescent protein), which lost its sensitivity to MS, and rPanx1S394D-EGFP, mimicking phosphorylation, which shows high DAPI uptake rate without MS stimulation or cleavage of the C terminus. Using whole-cell patch-clamp and outside-out excised patch configurations, we found that rPanx1EGFP and rPanx1S394D-EGFP channels showed current at all voltages between +/- 100 mV, similar single channel currents with outward rectification, and unitary conductance (similar to 30 to 70 pS). However, using cell-attached configuration we found that rPanx1S394D-EGFP channels show increased spontaneous unitary events independent of MS stimulation. In silico studies revealed that phosphorylation of S394 caused conformational changes in the selectivity filter and increased the average volume of lateral tunnels, allowing ATP to be released via these conduits and DAPI uptake directly from the channel mouth to the cytoplasmic space. These results could explain one possible mechanism for activation of rPanx1 upon increase in cytoplasmic Ca2+ signal elicited by diverse physiological conditions in which the C-terminal domain is not cleaved.

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