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在心肌细胞中,FKBP12.6缺失或受到抑制时L型钙通道与兰尼碱受体之间的敏化信号传导。

Sensitized signalling between L-type Ca2+ channels and ryanodine receptors in the absence or inhibition of FKBP12.6 in cardiomyocytes.

作者信息

Zhao Yan-Ting, Guo Yun-Bo, Gu Lei, Fan Xue-Xin, Yang Hua-Qian, Chen Zheng, Zhou Peng, Yuan Qi, Ji Guang-Ju, Wang Shi-Qiang

机构信息

State Key Laboratory of Membrane Biology, College of Life Sciences, Peking University, 5 Yiheyuan Road, Beijing 100871, China.

National Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, 15 Datun Road, Beijing 100101, China.

出版信息

Cardiovasc Res. 2017 Mar 1;113(3):332-342. doi: 10.1093/cvr/cvw247.

Abstract

AIMS

The heart contraction is controlled by the Ca2+-induced Ca2+ release (CICR) between L-type Ca2+ channels and ryanodine receptors (RyRs). The FK506-binding protein FKBP12.6 binds to RyR subunits, but its role in stabilizing RyR function has been debated for long. Recent reports of high-resolution RyR structure show that the HD2 domain that binds to the SPRY2 domain of neighbouring subunit in FKBP-bound RyR1 is detached and invisible in FKBP-null RyR2. The present study was to test the consequence of FKBP12.6 absence on the in situ activation of RyR2.

METHODS AND RESULTS

Using whole-cell patch-clamp combined with confocal imaging, we applied a near threshold depolarization to activate a very small fraction of LCCs, which in turn activated RyR Ca2+ sparks stochastically. FKBP12.6-knockout and FK506/rapamycin treatments increased spark frequency and LCC-RyR coupling fidelity without altering LCC open probability. Neither FK506 nor rapamycin further altered LCC-RyR coupling fidelity in FKBP12.6-knockout cells. In loose-seal patch-clamp experiments, the LCC-RyR signalling kinetics, indexed by the delay for a LCC sparklet to trigger a RyR spark, was accelerated after FKBP12.6 knockout and FK506/rapamycin treatments. These results demonstrated that RyRs became more sensitive to Ca2+ triggers without FKBP12.6. Isoproterenol (1 μM) further accelerated the LCC-RyR signalling in FKBP12.6-knockout cells. The synergistic sensitization of RyRs by catecholaminergic signalling and FKBP12.6 dysfunction destabilized the CICR system, leading to chaotic Ca2+ waves and ventricular arrhythmias.

CONCLUSION

FKBP12.6 keeps the RyRs from over-sensitization, stabilizes the potentially regenerative CICR system, and thus may suppress the life-threatening arrhythmogenesis.

摘要

目的

心脏收缩受L型钙通道与兰尼碱受体(RyRs)之间钙诱导钙释放(CICR)的调控。FK506结合蛋白FKBP12.6与RyR亚基结合,但其在稳定RyR功能中的作用长期以来一直存在争议。近期高分辨率RyR结构的报道显示,在FKBP结合的RyR1中,与相邻亚基的SPRY2结构域结合的HD2结构域在FKBP缺失的RyR2中分离且不可见。本研究旨在测试FKBP12.6缺失对RyR2原位激活的影响。

方法与结果

采用全细胞膜片钳结合共聚焦成像技术,施加接近阈值的去极化以激活极小部分的L型钙通道(LCCs),进而随机激活RyR钙火花。FKBP12.6基因敲除及FK506/雷帕霉素处理增加了火花频率和LCC-RyR偶联保真度,而未改变LCC开放概率。在FKBP12.6基因敲除细胞中,FK506和雷帕霉素均未进一步改变LCC-RyR偶联保真度。在 loose-seal 膜片钳实验中,以LCC小火花触发RyR火花的延迟为指标的LCC-RyR信号转导动力学在FKBP12.6基因敲除及FK506/雷帕霉素处理后加快。这些结果表明,没有FKBP12.6时,RyRs对钙触发变得更加敏感。异丙肾上腺素(1μM)进一步加快了FKBP12.6基因敲除细胞中的LCC-RyR信号转导。儿茶酚胺能信号和FKBP12.6功能障碍对RyRs的协同致敏作用使CICR系统不稳定,导致混乱的钙波和室性心律失常。

结论

FKBP12.6可防止RyRs过度敏感,稳定潜在的再生性CICR系统,从而可能抑制危及生命的心律失常发生。

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