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June 1, 2001Journal of Biological Chemistry161 citationsOpen Access

Molecular Cloning of a Third Member of the Potassium-dependent Sodium-Calcium Exchanger Gene Family,NCKX3

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AKAlexander KraevBQBeate D. QuednauSLStephen Leach

Structured PICO

P
Population
Heterologous expression systems and human tissue samples (brain, aorta, uterus, intestine)
I
Intervention
Molecular cloning and functional expression of NCKX3 (SLC24A3)
O
Outcome
Functional activity of NCKX3 (K(+)-dependent Na(+)/Ca(2+) exchanger activity) and tissue expression profilesurrogate

The discovery of NCKX3 expands the K(+)-dependent Na(+)/Ca(2+) exchanger family, suggesting a broader role in cellular calcium handling, including in smooth muscle tissues like the aorta.

Abstract

We describe here the identification and characterization of a novel member of the family of K(+)-dependent Na(+)/Ca(2+) exchangers, NCKX3 (gene SLC24A3). Human NCKX3 encodes a protein of 644 amino acids that displayed a high level of sequence identity to the other family members, rod NCKX1 and cone/neuronal NCKX2, in the hydrophobic regions surrounding the "alpha -repeat" sequences thought to form the ion-binding pocket for transport. Outside of these regions NCKX3 showed no significant identity to other known proteins. As anticipated from this sequence similarity, NCKX3 displayed K(+)-dependent Na(+)/Ca(2+) exchanger activity when assayed in heterologous expression systems, using digital imaging of fura-2 fluorescence, electrophysiology, or radioactive (45)Ca(2+) uptake. The N-terminal region of NCKX3, although not essential for expression, increased functional activity at least 10-fold and may represent a cleavable signal sequence. NCKX3 transcripts were most abundant in brain, with highest levels found in selected thalamic nuclei, in hippocampal CA1 neurons, and in layer IV of the cerebral cortex. Many other tissues also expressed NCKX3 at lower levels, especially aorta, uterus, and intestine, which are rich in smooth muscle. The discovery of NCKX3 thus expands the K(+)-dependent Na(+)/Ca(2+) exchanger family and suggests this class of transporter has a more widespread role in cellular Ca(2+) handling than previously appreciated.

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Cite This Study

Kraev et al. (2001) studied this question.

synapsesocial.com/papers/6a72b95a1556b380a2276272https://doi.org/10.1074/jbc.m102314200
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Cloning of a Third Mammalian Na+-Ca2+ Exchanger, NCX31996 · 348 citations
  2. 2Molecular Cloning of a Novel Potassium-dependent Sodium-Calcium Exchanger from Rat Brain1998 · 125 citations
  3. 3Analysis of Ion Interactions with the K+ -dependent Na+/Ca+ Exchangers NCKX2, NCKX3, and NCKX42006 · 47 citations
  4. 4K+‐Dependent Na+/Ca2+ Exchangers in the Brain2002 · 67 citations
  5. 5Cloning of the NCX2 isoform of the plasma membrane Na(+)-Ca2+ exchanger1994 · 354 citations