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Gastrointestinal Unit, Departments of Physiology and Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland
The cloned epithelial cell-specific
Na+/H+
exchanger (NHE) isoform NHE2 is stimulated by fibroblast growth factor
(FGF), phorbol 12-myristate 13-acetate (PMA), okadaic acid (OA), and
fetal bovine serum (FBS) through a change in maximal velocity of the
transporter. In the present study, we used COOH-terminal truncation
mutants to delineate specific domains in the COOH terminus of NHE2 that are responsible for growth factor and/or protein kinase regulation. Five truncation mutants (designated by the amino acid number at the
truncation site) were stably expressed in NHE-deficient PS120 fibroblasts. The effects of PMA, FGF, OA, FBS, and W-13 [a
Ca2+/calmodulin (CaM)
inhibitor] were studied. Truncation mutant E2/660, but not
E2/573, was stimulated by PMA. OA stimulated E2/573 but not E2/540. FGF
stimulated E2/540 but not E2/499. The most truncated mutant, E2/499,
was stimulated by FBS. W-13 stimulated the basal activity of the
wild-type NHE2. However, W-13 had no effect on E2/755. By monitoring
the emission spectra of dansylated CaM fluorescence, we showed that
dansylated CaM bound directly to a purified fusion protein of
glutathione S-transferase and the last
87 amino acids of NHE2 in a
Ca2+-dependent manner, with a
stoichiometry of 1:1 and a dissociation constant of 300 nM. Our results showed that the COOH terminus of NHE2 is organized into
separate stimulatory and inhibitory growth factor/protein kinase
regulatory subdomains. This organization of growth factor/protein
kinase regulatory subdomains is very similar to that of NHE3,
suggesting that the tertiary structures of the putative COOH termini of
NHE2 and NHE3 are very similar despite the minimal amino acid identity
in this part of the two proteins.
sodium/hydrogen exchanger; calmodulin; fibroblast growth factor; phorbol 12-myristate 13-acetate; okadaic acid
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