Distinct moieties underlie biphasic H+ gating of connexin43 channels, producing a pH optimum for intercellular communication
Most mammalian cells can intercommunicate via connexin-assembled, gap-junctional channels. To regulate signal transmission, connexin (Cx) channel permeability must respond dynamically to physiological and pathophysiological stimuli. One key stimulus is intracellular pH (pHi), which is modulated by a...
Κύριοι συγγραφείς: | Garciarena, C, Malik, A, Swietach, P, Moreno, A, Vaughan-Jones, R |
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Μορφή: | Journal article |
Έκδοση: |
Federation of American Society of Experimental Biology
2018
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Παρόμοια τεκμήρια
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Low and High pH Gating of Connexin43 Channels
ανά: Garciarena, C, κ.ά.
Έκδοση: (2013) -
H⁺-activated Na⁺ influx in the ventricular myocyte couples Ca²⁺-signalling to intracellular pH.
ανά: Garciarena, C, κ.ά.
Έκδοση: (2013) -
H+-activated Na+ influx in the ventricular myocyte couples Ca2+-signalling to intracellular pH
ανά: Garciarena, C, κ.ά.
Έκδοση: (2013) -
Gating of cardiac gap junctional channels at acid and alkaline pH
ανά: Swietach, P, κ.ά.
Έκδοση: (2005) -
Sarcolemmal localisation of Na+/H+ exchange and Na+-HCO3- co-transport influences the spatial regulation of intracellular pH in rat ventricular myocytes.
ανά: Garciarena, C, κ.ά.
Έκδοση: (2013)