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首页> 外文期刊>Biophysical Journal >Sarcoplasmic reticulum K+ (TRIC) channel does not carry essential countercurrent during Ca2+ release
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Sarcoplasmic reticulum K+ (TRIC) channel does not carry essential countercurrent during Ca2+ release

机译:肌浆网K +(TRIC)通道在Ca2 +释放期间不携带必需的逆流

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The charge translocation associated with sarcoplasmic reticulum (SR) Ca2+ efflux is compensated for by a simultaneous SR K+ influx. This influx is essential because, with no countercurrent, the SR membrane potential (Vm) would quickly (1 ms) reach the Ca 2+ equilibrium potential and SR Ca2+ release would cease. The SR K+ trimeric intracellular cation (TRIC) channel has been proposed to carry the essential countercurrent. However, the ryanodine receptor (RyR) itself also carries a substantial K+ countercurrent during release. To better define the physiological role of the SR K+ channel, we compared SR Ca2+ transport in saponin-permeabilized cardiomyocytes before and after limiting SR K+ channel function. Specifically, we reduced SR K+ channel conduction 35 and 88% by replacing cytosolic K+ for Na+ or Cs+ (respectively), changes that have little effect on RyR function. Calcium sparks, SR Ca2+ reloading, and caffeine-evoked Ca2+ release amplitude (and rate) were unaffected by these ionic changes. Our results show that countercurrent carried by SR K+ (TRIC) channels is not required to support SR Ca2+ release (or uptake). Because K+ enters the SR through RyRs during release, the SR K+ (TRIC) channel most likely is needed to restore trans-SR K+ balance after RyRs close, assuring SR Vm stays near 0 mV.
机译:与肌浆网(SR)Ca2 +外流相关的电荷移位可通过同时SR K +涌入来补偿。这种流入是必不可少的,因为在没有逆流的情况下,SR膜电位(Vm)将迅速(<1 ms)达到Ca 2+平衡电位,并且SR Ca2 +释放将停止。 SR K +三聚体细胞内阳离子(TRIC)通道已提出携带必需的逆流。然而,在释放过程中,ryanodine受体(RyR)本身也携带大量K +逆流。为了更好地定义SR K +通道的生理作用,我们在限制SR K +通道功能之前和之后比较了皂素通透性心肌细胞中SR Ca2 +的转运。具体而言,我们通过分别用Na +或Cs +代替胞质K +将SR K +通道传导降低了35%和88%,这些变化对RyR功能的影响很小。钙火花,SR Ca2 +重载和咖啡因诱发的Ca2 +释放幅度(和速率)不受这些离子变化的影响。我们的结果表明,不需要SR K +(TRIC)通道携带的逆流来支持SR Ca2 +释放(或吸收)。由于K +在释放期间通过RyRs进入SR,因此最有可能需要SR K +(TRIC)通道以在RyRs关闭后恢复跨SR K +平衡,从而确保SR Vm保持在0 mV附近。

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