4.4 Article

Cardiac-specific ablation of synapse-associated protein SAP97 in mice decreases potassium currents but not sodium current

Journal

HEART RHYTHM
Volume 12, Issue 1, Pages 181-192

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.hrthm.2014.09.057

Keywords

SAP97; Sodium channel; Potassium channel; Action potential; Tissue-specific knockout

Funding

  1. European Community's Seventh Framework Program [HEALTH-F2-2009-241526]
  2. EUTrigTreat
  3. Swiss National Science Foundation [310030B_14706035693]

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BACKGROUND Membrane-associated guanylate kinase (MAGUK) proteins are important determinants of ion channel organization in the plasma membrane. In the heart, the MAGUK protein SAP97, encoded by the DLG1 gene, interacts with several ion channels via their PDZ domain-binding motif and regulates their function and localization. OBJECTIVE The purpose of this study was to assess in vivo the role of SAP97 in the heart by generating a genetically modified mouse model in which SAP97 is suppressed exclusively in cardiomyocytes. METHODS SAP97(fl/fl) mice were generated by inserting LoxP sequences flanking exons 1-3 of the SAP97 gene. SAP97(fl/fl) mice were crossed with alpha MHC-Cre mice to generate alpha MHC-Cre/SAP97(fl/fl) mice, thus resulting in a cardiomyocyte-specific deletion of SAP97. Quantitative reverse transcriptase-polymerase chain reaction, western blots, and immunostaining were performed to measure mRNA and protein expression levels, and ion channel localization. The patch-clamp technique was used to record ion currents and action potentials. Echocardiography and surface ECGs were performed on anesthetized mice. RESULTS Action potential duration was greatly prolonged in alpha MHC-Cre/SAP97(fl/fl) cardiomyocytes compared to SAP97(fl/fl) controls, but maximal upstroke velocity was unchanged. This was consistent with the decreases observed in I-K1, I-to, and I-Kur potassium currents and the absence of effect on the sodium current IN,. Surface ECG revealed an increased corrected QT interval in (alpha MHC-Cre/SAP97(fl/fl) mice. CONCLUSION These data suggest that ablation of SAP97 in the mouse heart mainly alters potassium channel function. Based on the important role of SAP97 in regulating the QT interval, DLG1 may be a susceptibility gene to be investigated in patients with congenital long QT syndrome.

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