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Publication : Cardiac function is regulated by the sodium-dependent inhibition of the sodium-calcium exchanger NCX1.

First Author  Scranton K Year  2024
Journal  Nat Commun Volume  15
Issue  1 Pages  3831
PubMed ID  38714663 Mgi Jnum  J:348093
Mgi Id  MGI:7639051 Doi  10.1038/s41467-024-47850-z
Citation  Scranton K, et al. (2024) Cardiac function is regulated by the sodium-dependent inhibition of the sodium-calcium exchanger NCX1. Nat Commun 15(1):3831
abstractText  The Na(+)-Ca(2+) exchanger (NCX1) is the dominant Ca(2+) extrusion mechanism in cardiac myocytes. NCX1 activity is inhibited by intracellular Na(+) via a process known as Na(+)-dependent inactivation. A central question is whether this inactivation plays a physiological role in heart function. Using CRISPR/Cas9, we inserted the K229Q mutation in the gene (Slc8a1) encoding for NCX1. This mutation removes the Na(+)-dependent inactivation while preserving transport properties and other allosteric regulations. NCX1 mRNA levels, protein expression, and protein localization are unchanged in K229Q male mice. However, they exhibit reduced left ventricular ejection fraction and fractional shortening, while displaying a prolonged QT interval. K229Q ventricular myocytes show enhanced NCX1 activity, resulting in action potential prolongation, higher incidence of aberrant action potentials, a faster decline of Ca(2+) transients, and depressed cell shortening. The results demonstrate that NCX1 Na(+)-dependent inactivation plays an essential role in heart function by affecting both cardiac excitability and contractility.
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