4.5 Article

Molecular and Functional Evidence of HCN4 and Caveolin-3 Interaction During Cardiomyocyte Differentiation from Human Embryonic Stem Cells

Journal

STEM CELLS AND DEVELOPMENT
Volume 22, Issue 11, Pages 1717-1727

Publisher

MARY ANN LIEBERT INC
DOI: 10.1089/scd.2012.0247

Keywords

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Funding

  1. Italian MIUR [PRIN 2007AL2YNC]
  2. EnteCassa di Risparmio di Firenze (EC)
  3. Swiss National Science Foundation [310031-110002]
  4. Geneva University Hospitals [CGR82102]

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Maturation of human embryonic stem cell-derived cardiomyocytes (hESC-CM) is accompanied by changes in ion channel expression, with relevant electrophysiological consequences. In rodent CM, the properties of hyperpolarization-activated cyclic nucleotide-gated channel (HCN)4, a major f-channel isoform, depends on the association with caveolin-3 (Cav3). To date, no information exists on changes in Cav3 expression and its associative relationship with HCN4 upon hESC-CM maturation. We hypothesize that Cav3 expression and its compartmentalization with HCN4 channels during hESC-CM maturation accounts for the progression of f-current properties toward adult phenotypes. To address this, hESC were differentiated into spontaneously beating CM and examined at similar to 30, similar to 60, and similar to 110 days of differentiation. Human adult and fetal CM served as references. HCN4 and Cav3 expression and localization were analyzed by real time PCR and immunocyto/histochemistry. F-current was measured in patch-clamped single cells. HCN4 and Cav3 co-localize in adult human atrial and ventricular CM, but not in fetal CM. Proteins and mRNA for Cav3 were not detected in undifferentiated hESC, but expression increased during hESC-CM maturation. At 110 days, HCN4 appeared to be colocalized with Cav3. Voltage-dependent activation of the f-current was significantly more positive in fetal CM and 60-day hESC-CM (midpoint activation, V-1/2, similar to -82mV) than in 110-day hESC-CM or adult CM(V-1/2 similar to-100mV). In the latter cells, caveolae disruption reversed voltage dependence toward a more positive or an immature phenotype, with V-1/2 at -75 mV, while in fetal CM voltage dependence was not affected. Our data show, for the first time, a developmental change in HCN4-Cav3 association in hESC-CM. Cav3 expression and its association with ionic channels likely represent a crucial step of cardiac maturation.

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