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May 1, 1993Proceedings of the National Academy of Sciences294 citationsOpen Access

Initial localization of regulatory regions of the cardiac sarcolemmal Na(+)-Ca2+ exchanger.

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SMSatoshi MatsuokaDNDebora A. NicollRRRobert F. Reilly

Key Result

Deletion mutagenesis of the cardiac Na(+)-Ca2+ exchanger revealed that residues 562-685 are essential for regulation by free cytoplasmic Ca2+ and inhibition by exchanger inhibitory peptide.

Structured PICO

P
Population
Xenopus laevis oocytes expressing wild-type and mutant cardiac Na(+)-Ca2+ exchangers
I
Intervention
Deletion mutagenesis (mutants delta 240-679 and delta 562-685) and chymotrypsin treatment
C
Comparator
Wild-type cardiac Na(+)-Ca2+ exchanger
O
Outcome
Exchanger transport function and regulatory properties (Na(+)-dependent inactivation, Ca2+ regulation, XIP inhibition)surrogate

The study localizes the binding sites for exchanger inhibitory peptide and regulatory calcium to residues 562-685 of the cardiac Na(+)-Ca2+ exchanger.

Abstract

We have analyzed the regulatory properties of the wild-type cardiac Na(+)-Ca2+ exchanger expressed in Xenopus laevis oocytes using the giant excised patch technique. The exchanger is activated by cytoplasmic application of chymotrypsin and exhibits a number of properties that can be changed or abolished by chymotrypsin treatment, including cytoplasmic Na(+)-dependent inactivation, secondary regulation by free cytoplasmic Ca2+, and inhibition by exchanger inhibitory peptide. Thus, the cloned exchanger expressed in oocytes exhibits regulatory properties similar to those of the native sarcolemmal exchanger. The exchanger protein contains a large (520 amino acids) hydrophilic domain modeled to be intracellular. The role of this region in exchanger function and regulation was examined by deletion mutagenesis. Mutants with residues 240-679 and 562-685 deleted exhibited exchange activity, indicating that this extensive region is not essential for transport function. Both mutants were stimulated by chymotrypsin treatment. Neither mutant demonstrated regulation by free cytoplasmic Ca2+ (Ca2+i) or inhibition by exchanger inhibitory peptide (XIP). However, mutant delta 562-685 but not delta 240-679 displayed Na(+)-dependent inactivation. The data suggest that the binding sites for XIP and regulatory Ca2+ may reside in the region encompassed by residues 562-685. A chimera made from renal and cardiac exchangers has normal regulatory characteristics and helps to further define these sites.

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Cite This Study

Matsuoka et al. (1993) studied this question. Deletion mutagenesis (mutants delta 240-679 and delta 562-685) vs. Wild-type cardiac Na(+)-Ca2+ exchanger was evaluated on Exchanger function and regulation (exchange activity, Na(+)-dependent inactivation, regulation by Ca2+, inhibition by XIP). Deletion mutagenesis of the cardiac Na(+)-Ca2+ exchanger revealed that residues 562-685 are essential for regulation by free cytoplasmic Ca2+ and inhibition by exchanger inhibitory peptide.

synapsesocial.com/papers/6a611efe25786de97237b95dhttps://doi.org/10.1073/pnas.90.9.3870
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