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December 1, 1989Cell251 citationsOpen Access

Regulation of intracellular pH by a neuronal homolog of the erythrocyte anion exchanger

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RKRon R. KopitoBLBeth S. LeeDSDonna M. Simmons

Key Result

Expression of AE3 cDNA in COS cells led to chronic cytoplasmic acidification and chloride- and bicarbonate-dependent changes in intracellular pH, confirming its function as an anion exchanger.

PICO

I
Intervention / Comparator
Expression of AE3 cDNA vs AE3 mutant lacking NH2-terminal 645 amino acids
O
Primary Outcome
Intracellular pH regulation and anion exchange activity

Abstract

We have isolated AE3, a novel gene expressed primarily in brain neurons and in heart. The predicted AE3 polypeptide shares a high degree of identity with the anion exchange and cytoskeletal binding domains of the erythrocyte band 3 protein. Expression of AE3 cDNA in COS cells leads to chronic cytoplasmic acidification and to chloride- and bicarbonate-dependent changes in intracellular pH, confirming that this gene product is an anion exchanger. Characterization of an AE3 mutant lacking the NH2-terminal 645 amino acids demonstrates that the COOH-terminal half of the polypeptide is both necessary and sufficient for correct insertion into the plasma membrane and for anion exchange activity. The NH2-terminal domain may play a role in regulating the activity of the exchanger and may be involved in the structural organization of the cytoskeleton in neurons.

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Cite This Study

Kopito et al. (1989) studied this question. Expression of AE3 cDNA vs. AE3 mutant lacking NH2-terminal 645 amino acids was evaluated on Intracellular pH regulation and anion exchange activity. Expression of AE3 cDNA in COS cells led to chronic cytoplasmic acidification and chloride- and bicarbonate-dependent changes in intracellular pH, confirming its function as an anion exchanger.

synapsesocial.com/papers/6aa228e895599a1e6e6ee96dhttps://doi.org/10.1016/0092-8674(89)90615-6
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