Department of Pathology and Immunology, Faculty of Medicine, Geneva University, Geneva, Switzerland.
Stem Cells Dev. 2013 Jun 1;22(11):1717-27. doi: 10.1089/scd.2012.0247. Epub 2013 Feb 27.
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 ∼30, ∼60, and ∼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 colocalize 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, V1/2, ∼ -82 mV) than in 110-day hESC-CM or adult CM (V1/2∼-100 mV). In the latter cells, caveolae disruption reversed voltage dependence toward a more positive or an immature phenotype, with V1/2 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.
人类胚胎干细胞衍生的心肌细胞(hESC-CM)的成熟伴随着离子通道表达的变化,具有相关的电生理后果。在啮齿动物的 CM 中,主要的 f 通道同工型 hyperpolarization-activated cyclic nucleotide-gated channel (HCN)4 的特性取决于与 caveolin-3 (Cav3) 的结合。迄今为止,关于 hESC-CM 成熟过程中 Cav3 表达的变化及其与 HCN4 通道的关联关系尚无信息。我们假设 hESC-CM 成熟过程中 Cav3 表达及其与 HCN4 通道的分隔化解释了 f 电流特性向成人表型的进展。为了解决这个问题,我们将 hESC 分化为自发搏动的 CM,并在分化约 30、60 和 110 天时进行检查。人类成人和胎儿 CM 作为参考。通过实时 PCR 和免疫细胞/组织化学分析 HCN4 和 Cav3 的表达和定位。在膜片钳单细胞中测量 f 电流。HCN4 和 Cav3 在成人人心房和心室 CM 中存在共定位,但在胎儿 CM 中不存在。未分化的 hESC 中未检测到 Cav3 的蛋白质和 mRNA,但在 hESC-CM 成熟过程中表达增加。在 110 天时,HCN4 似乎与 Cav3 共定位。f 电流的电压依赖性激活在胎儿 CM 和 60 天的 hESC-CM(中点激活,V1/2,约-82 mV)中比在 110 天的 hESC-CM 或成人 CM 中更为正向(V1/2∼-100 mV)。在后一种细胞中, caveolae 破坏将电压依赖性向更正向或更不成熟的表型逆转,V1/2 为-75 mV,而在胎儿 CM 中电压依赖性不受影响。我们的数据首次显示了 hESC-CM 中 HCN4-Cav3 关联的发育变化。Cav3 表达及其与离子通道的关联可能代表心脏成熟的关键步骤。