4.6 Article

Activation of the Ae4 (Slc4a9) cation-driven Cl-/HCO3- exchanger by the cAMP-dependent protein kinase in salivary gland acinar cells

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajpgi.00145.2021

关键词

cAMP-activated; chloride; bicarbonate exchangers; PKA-activated anion exchanger

资金

  1. Intramural Research Program of the NIH, NIDCR [1-ZIA-DE000738]
  2. Proyecto Fondecyt of the Fondo Nacional de Ciencia y Tecnologia (Chile) [1171135, 1191868, 11150454]
  3. ANID-Millenium Science Initiative Program [NC160011]
  4. FONDEQUIP [EQM 150118]

向作者/读者索取更多资源

This study revealed that Ae4 exchanger activity in secretory salivary gland acinar cells is enhanced upon b-adrenergic receptor stimulation, which can be blocked by H89. Protein sequence analysis identified S173 and S273 as potential targets of cAMP-dependent PKA. Experiments on CHO-K1 cells expressing S173A and S273A mutants showed that S173A, but not S273A, is not activated by PKA.
Ae4 transporters are critical for Cl- uptake across the basolateral membrane of acinar cells in the submandibular gland (SMG). Although required for fluid secretion, little is known about the physiological regulation of Ae4. To investigate whether Ae4 is regulated by the cAMP-dependent signaling pathway, we measured Cl-/HCO3- exchanger activity in SMG acinar cells from Ae2(-/-) mice, which only express Ae4, and found that the Ae4-mediated activity was increased in response to beta-adrenergic receptor stimulation. Moreover, pretreatment with H89, an inhibitor of the cAMP-activated kinase (PKA), prevented the stimulation of Ae4 exchangers. We then expressed Ae4 in CHO-K1 cells and found that the Ae4-mediated activity was increased when Ae4 is coexpressed with the catalytic subunit of PKA (PKAc), which is constitutively active. Ae4 sequence analysis showed two potential PKA phosphorylation serine residues located at the intracellular NH2-terminal domain according to a homology model of Ae4. NH2-terminal domain Ser residues were mutated to alanine (S173A and S273A, respectively), where the Cl-/HCO3- exchanger activity displayed by the mutant S173A was not activated by PKA. Conversely, S273A mutant kept the PKA dependency. Together, we conclude that Ae4 is stimulated by PKA in SMG acinar cells by a mechanism that probably depends on the phosphorylation of S173. NEW & NOTEWORTHY We found that Ae4 exchanger activity in secretory salivary gland acinar cells is increased upon b-adrenergic receptor stimulation. The activation of Ae4 was prevented by H89, a nonselective PKA inhibitor. Protein sequence analysis revealed two residues (S173 and S273) that are potential targets of cAMP-dependent protein kinase (PKA). Experiments in CHO-K1 cells expressing S173A and S273A mutants showed that S173A, but not S273A, is not activated by PKA.

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