首页> 美国卫生研究院文献>The Journal of Physiology >Na+ currents through low-voltage-activated Ca2+ channels of chick sensory neurones: block by external Ca2+ and Mg2+.
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Na+ currents through low-voltage-activated Ca2+ channels of chick sensory neurones: block by external Ca2+ and Mg2+.

机译:Na +电流通过雏鸡感觉神经元的低压激活的Ca2 +通道:被外部Ca2 +和Mg2 +阻断。

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摘要

1. Whole-cell currents through low-voltage-activated (LVA) Ca2+ channels carried by monovalent cations were studied in chick dorsal root ganglion (DRG) cells. 2. With 120 mM [Na+] on both sides of the membrane and [Ca2+]o less than or equal to 100 microM, the currents reversed at 0 mV. Their half-times of activation and inactivation were strictly voltage-dependent and decreased to near-constant values of 0.6-0.85 and 40 ms, respectively, at positive membrane potentials. The longer activation times were observed with [Ca2+]o greater than or equal to 50 microM. 3. The selectivity of the Ca2+ channel for monovalent ions with reference to internal Na+ was evaluated from the reversal potential. The Li+ and Na+ permeabilities were similar. The permeability ratios of K+ and Rb+ were 0.45, and 0.33 for Cs+. 4. Micromolar increases in [Ca2+]o produced small voltage shifts of half-times of activation (less than or equal to +3 mV at 10 microM and +10 mV at 500 microM), but strongly depressed the Na+ current. The Ca2(+)-induced block of Na+ current satisfied a 1:1 stoichiometry with an apparent KD of 1.8 microM at -20 mV. The block was, however, relieved with more positive and negative potentials, with KDs of 55 and 8.5 microM at +90 and -110 mV, respectively. 5. Relaxation time constants of block and unblock of Na+ currents through the LVA Ca2+ channel were measured on step changes to and from membrane potentials at which pronounced Ca2(+)-induced block occurred. 6. At -20 mV, the time constants of block decreased with micromolar increase in [Ca2+]o in line with a blocking rate coefficient of 1.9 x 10(8) M-1 s-1, but settled to values of 0.18 ms at [Ca2+]o beyond 50 microM. The Na+ currents were unblocked with time constant (tau u) of around 0.25 ms at strongly positive and negative membrane potentials at 22 degrees C. 7. Tau u failed to show any obvious dependence on [Ca2+]o up to the millimolar range. This finding contradicts suggestions that removal of the block occurs in a [Ca2+]o-dependent manner as a result of an increased probability of Ca2+ ion mobilization by repulsive forces with increased Ca2+ occupation of the channel. 8. The time course of unblock of Na+ currents was strongly temperature-dependent showing a Q10 of 2.5 for tau u. 9. The voltage dependence of the Na+ current block by Ca2+ ions is best accounted for by a single, centrally located Ca2+ binding site.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.在鸡背根神经节(DRG)细胞中研究了单价阳离子携带的通过低压激活(LVA)Ca2 +通道的全细胞电流。 2.在膜的两面都具有120 mM [Na +]且[Ca2 +] o小于或等于100 microM时,电流在0 mV时反向。它们的活化和失活的半衰期严格依赖电压,在膜电位为正时分别降至0.6-0.85和40 ms的近恒定值。在[Ca2 +] o大于或等于50 microM时观察到更长的激活时间。 3.从反转电位评估Ca2 +通道相对于内部Na +的单价离子选择性。 Li +和Na +的渗透率相似。 K +和Rb +的磁导率比为0.45,而Cs +的磁导率为0.33。 4. [Ca2 +] o的微摩尔增加产生了激活时间的一半的小电压偏移(在10 microM时小于或等于+3 mV,在500 microM时小于或等于+10 mV),但强烈抑制了Na +电流。 Ca2 +诱导的Na +电流阻滞满足1:1的化学计量比,在-20 mV时的表观KD为1.8 microM。但是,通过更多的正电势和负电势可以解除阻滞,分别在+90和-110 mV时具有55和8.5 microM的KD。 5.在进入和流出发生明显的Ca2(+)诱导阻滞的膜电位的阶跃变化中,测量通过LVA Ca2 +通道的Na +电流的阻滞和解阻的弛豫时间常数。 6.在-20 mV时,阻滞时间常数随[Ca2 +] o的微摩尔增加而降低,与阻滞率系数为1.9 x 10(8)M-1 s-1一致,但在1.5毫秒时稳定为0.18 ms [Ca2 +] o超过50 microM。 Na +电流在22°C时在强正膜和负膜电位下具有约0.25 ms的时间常数(tau)不受阻碍。7.在高达毫摩尔范围内,Tau u均未显示出对[Ca2 +] o的任何明显依赖性。这一发现与这样的建议相矛盾,即由于排斥力使Ca2 +离子动员的可能性增加,且通道的Ca2 +占有量增加,因此以[Ca2 +] o依赖的方式发生了阻塞的清除。 8. Na +电流畅通的时间过程与温度密切相关,显示出tau的Q10为2.5。 9. Na +电流受Ca2 +离子的电压依赖性最好通过单个位于中心的Ca2 +结合位点来解释。(摘要截短为400字)

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