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首页> 外文期刊>The Journal of Physiology >Comparison of slow inactivation in human heart and rat skeletal muscle Na+ channel chimaeras.
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Comparison of slow inactivation in human heart and rat skeletal muscle Na+ channel chimaeras.

机译:人心脏和大鼠骨骼肌Na +通道嵌合体缓慢失活的比较。

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1. Voltage-gated Na+ channels undergo two types of inactivation in response to depolarization. One type, fast inactivation, occurs with a time scale of milliseconds. The other, slow inactivation, occurs over seconds to minutes. In addition, these two processes appear to be distinct at the molecular level. However, the molecular mechanism of Na+ channel slow inactivation is unknown. 2. We used patch clamp techniques to study slow inactivation, activation and fast inactivation in alpha-subunit cDNA clones for wild-type human heart Na+ channels (hH1) and rat skeletal muscle Na+ channels (mu1) transiently expressed in human embryonic kidney (HEK) cells. Our experiments showed that the Na+ channel slow inactivation phenotype (development, steady state and recovery) differed dramatically between hH1 and mu1. Slow inactivation in mu1 had a faster onset, a steeper voltage dependence, and was more complete compared with hH1. In addition, recovery from slow inactivation was much slower for mu1 than for hH1. Activation and fast inactivation kinetics were also different in hH1 and mu1. In hH1, fast inactivation was slower and V values of activation and steady-state fast inactivation (hthorn ) were more negative than in mu1. 3. To better understand the molecular basis of Na+ channel slow inactivation, Na+ channel chimaeras were constructed with domains from hH1 and mu1. The slow inactivation phenotype in the chimaeras (domains denoted by subscripts) mu1(1)hH1(2,3,4), mu1(1,2)hH1(3,4) and mu1(1,2,3)hH1(4) was intermediate compared with that of wild-type. However, the chimaera mu1(1)hH1(2,3,4) was more like wild-type hH1, while the chimaeras mu1(1,2)hH1(3,4) and mu1(1,2,3)hH1(4) were more similar to wild-type mu1. In the chimaeras, activation resembled that of mu1, fast inactivation resembled that of hH1, and steady-state fast inactivation fell between that of hH1 and mu1. 4. The data demonstrate that all four domains can modulate the Na+ channel slow inactivation phenotype. However, domains D1 and D2 may play a more prominent role in determining Na+ channel slow inactivation phenotype than D3 and D4. The results also support previous conclusions that D3 and D4 (and the D3-D4 linker) play an important role in Na+ channel fast inactivation, and that activation may require non-equivalent contributions from all four domains.
机译:1.电压门控的Na +通道响应去极化而经历两种失活。一种类型的快速灭活发生在毫秒级的时间范围内。另一种是缓慢的失活,持续数秒至数分钟。另外,这两个过程在分子水平上似乎是不同的。但是,Na +通道缓慢失活的分子机制尚不清楚。 2.我们使用膜片钳技术研究了在人胚肾(HEK)中瞬时表达的野生型人心脏Na +通道(hH1)和大鼠骨骼肌Na +通道(mu1)的alpha亚基cDNA克隆的慢灭活,激活和快速灭活。 ) 细胞。我们的实验表明,hH1和mu1之间的Na +通道慢灭活表型(发育,稳态和恢复)显着不同。与hH1相比,mu1中的慢速灭活起效更快,电压依赖性更强,并且更完整。此外,对于mu1,从慢速灭活中恢复要比对hH1慢得多。 hH1和mu1中的激活和快速失活动力学也不同。在hH1中,快速灭活较慢,而激活和稳态快速灭活(hthorn)的V值比mu1中的负值更大。 3.为了更好地理解Na +通道缓慢失活的分子基础,构建了带有hH1和mu1结构域的Na +通道嵌合体。嵌合体(下标表示的域)中的慢灭活表型mu1(1)hH1(2,3,4),mu1(1,2)hH1(3,4)和mu1(1,2,3)hH1(4 )与野生型相比处于中等水平。但是,chimaera mu1(1)hH1(2,3,4)更像是野生型hH1,而chimaeras mu1(1,2)hH1(3,4)和mu1(1,2,3)hH1( 4)与野生型mu1更相似。在嵌合体中,激活类似于mu1的激活,快速灭活类似于hH1的激活,稳态快速灭活介于hH1和mu1之间。 4.数据表明,所有四个结构域均可以调节Na +通道慢失活表型。但是,域D1和D2在确定Na +通道慢灭活表型方面可能比D3和D4发挥更大的作用。结果还支持先前的结论,即D3和D4(以及D3-D4接头)在Na +通道快速失活中起重要作用,并且激活可能需要来自所有四个域的非等效贡献。

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