Institute for Experimental Medical Research, Oslo University Hospital, Ullevål, Kirkeveien 166, N-0407 Oslo, Norway.
Cardiovasc Res. 2010 Apr 1;86(1):63-71. doi: 10.1093/cvr/cvp401. Epub 2009 Dec 17.
To describe the overall role of reduced sarcoplasmic reticulum Ca(2+) ATPase (SERCA2) for Ca(2+) wave development.
SERCA2 knockout [Serca2(flox/flox) Tg(alphaMHC-MerCreMer); KO] mice allowing inducible cardiomyocyte-specific disruption of the Serca2 gene in adult mice were compared with Serca(flox/flox) (FF) control mice. Six days after Serca2 gene disruption, SERCA2 protein abundance was reduced by 53% in KO compared with FF, whereas SERCA2 activity in field-stimulated, Fluo-5F AM-loaded cells was reduced by 42%. Baseline Ca(2+) content of the sarcoplasmic reticulum (SR) and Ca(2+) transient amplitude and rate constant of decay measured in whole-cell voltage-clamped cells were decreased in KO to 75, 81, and 69% of FF values. Ca(2+) waves developed in only 31% of KO cardiomyocytes compared with 57% of FF when external Ca(2+) was raised (10 mM), although SR Ca(2+) content needed for waves to develop was 79% of FF values. In addition, waves propagated at a 15% lower velocity in KO cells. Ventricular extrasystoles (VES) occurred with lower frequency in SERCA2 KO mice (KO: 3 +/- 1 VES/h vs. FF: 8 +/- 1 VES/h) (P < 0.05 for all results).
Reduced SERCA2 abundance resulted in decreased amplitude and decay rate of Ca(2+) transients, reduced SR Ca(2+) content, and decreased propensity for Ca(2+) wave development.
描述肌浆网 Ca(2+)ATP 酶(SERCA2)减少对 Ca(2+)波发展的总体作用。
SERCA2 敲除[Serca2(flox/flox)Tg(alphaMHC-MerCreMer); KO]小鼠允许在成年小鼠中诱导性地破坏肌浆网 SERCA2 基因,与 Serca(flox/flox)(FF)对照小鼠进行比较。在 SERCA2 基因破坏后 6 天,与 FF 相比,KO 中 SERCA2 蛋白丰度降低了 53%,而在电场刺激下,Fluo-5F AM 加载细胞中的 SERCA2 活性降低了 42%。在全细胞膜片钳电压钳细胞中测量的肌浆网(SR)基础 Ca(2+)含量、Ca(2+)瞬变幅度和衰减速率常数在 KO 中降低至 FF 值的 75%、81%和 69%。当外部 Ca(2+)升高(10 mM)时,与 57%的 FF 相比,仅在 KO 心肌细胞中发展 Ca(2+)波的比例为 31%,尽管发展波所需的 SR Ca(2+)含量为 FF 值的 79%。此外,在 KO 细胞中,波的传播速度降低了 15%。SERCA2 KO 小鼠的室性期前收缩(VES)发生频率较低(KO:3±1VES/h 与 FF:8±1VES/h)(所有结果 P<0.05)。
SERCA2 丰度降低导致 Ca(2+)瞬变幅度和衰减率降低、SR Ca(2+)含量降低以及 Ca(2+)波发展的倾向性降低。