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Sodium and calcium fluxes in a clonal nerve cell line.

机译:克隆神经细胞系中的钠和钙通量。

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摘要

1. 22Na+ and 45Ca2+ fluxes were studied in the clonal nerve cell line PC12. Three distinct types of ion channels were found: (a) voltage-dependent Na+ channels, (b) voltage-dependent Ca2+ channels, and (c) acetylcholine-activated channels permeable to both ions. 2. 22Na+ uptake through voltage-dependent Na+ channels is induced by veratridine and scorpion venom, and is inhibited 50% by 5 X 10(-7) M-tetrodotoxin and greater than 98% by 5 X 10(-6) M-tetrodotoxin. 3. 45Ca2+ uptake through voltage-dependent Ca2+ channels is induced by depolarizing the cells in 50 mM-KCl. This flux is not dependent on the presence of Na+ in the medium and is insensitive to 5 X 10(-6) M-tetrodotoxin. However, 1 mM-Mn2+ causes a 95% inhibition of K+-induced 45Ca2+ uptake. 4. Veratridine and scorpion venom also induce voltage-dependent 45Ca2+ uptake which can be blocked by 1mM-Mn2+. In contrast to KCl-induced 45Ca2+ uptake, this flux is completely blocked by 5 X 10(-6) M-tetrodotoxin and is abolished by removal of Na+ from the medium. Thus the depolarizing stimulus for Ca2+ uptake in this case is Na+ from the medium. Thus the depolarizing stimulus for Ca2+ uptake in this case is Na+ influx through voltage-dependent Na+ channels. 5. Carbamylcholine induces both 22Na+ and 45Ca2+ fluxes which are blocked by nicotinic cholinergic antagonists with the exception of alpha-bungarotoxin. The 22Na+ flux occurs exclusively via acetylcholine receptor channels, as evidenced by the lack of effect of 5 X 10(-6) M-tetrodotoxin. In the presence of Na+, almost all of the 45Ca2+ uptake can be blocked by 1 mM-Mn2+ and thus occurs via voltage-dependent Ca2+ channels which are activated by the depolarizing Na+ influx. 6--8% of the total 45Ca2+ flux, however, is insensitive to 1 mM-Mn2+, suggesting that this portion of the uptake occurs via the acetylcholine receptor channels. In Na+-free medium, the Mn2+-resistant 45Ca2+ component increases to 40% of the total uptake, apparently due to lack of competition from Na+ for the acetylcholine receptor channels. This receptor-linked flux still causes sufficient depolarization to induce the additional 60% of the Ca2+ flux through voltage-dependent, Mn2+ sensitive Ca2+ channels. 6. Mn2+ inhibits Ca2+ flux through voltage-dependent Ca2+ channels by competing for entry through these channels. 50 mM-KCl induces 54Mn2+ fluxes in PC12 cells that are comparable in magnitude to 45Ca2+ fluxes. 7. In normal saline 45Ca2+ efflux from PC12 cells is several times more rapid than in Na+-free medium, indicating the presence of a Ca2+-Na+ exchange mechanism.
机译:1.在克隆神经细胞系PC12中研究了22Na +和45Ca2 +的通量。发现了三种不同类型的离子通道:(a)电压依赖性Na +通道,(b)电压依赖性Ca2 +通道和(c)两种离子都可渗透的乙酰胆碱激活的通道。 2. Vertraridine和蝎毒通过电压依赖性Na +通道吸收22Na +,并被5 X 10(-7)M-河豚毒素抑制50%,而被5 X 10(-6)M-河豚毒素抑制大于98%。 。 3.通过在50 mM-KCl中使细胞去极化,诱导通过电压依赖性Ca2 +通道吸收45Ca2 +。此通量不依赖于培养基中Na +的存在,并且对5 X 10(-6)M-河豚毒素不敏感。但是,1 mM-Mn2 +导致K +诱导的45Ca2 +摄取受到95%的抑制。 4. Vertridine和蝎毒也诱导了电压依赖性45Ca2 +吸收,可被1mM-Mn2 +阻断。与KCl诱导的45Ca2 +吸收相反,该通量被5 X 10(-6)M-河豚毒素完全阻断,并通过从培养基中除去Na +而被废除。因此,在这种情况下,用于吸收Ca2 +的去极化刺激是来自培养基的Na +。因此,在这种情况下,吸收Ca2 +的去极化刺激是通过依赖电压的Na +通道的Na +流入。 5.甲酰胆碱可诱导22Na +和45Ca2 +通量,这些通量被烟碱胆碱能拮抗剂阻断,α-真菌毒素除外。 22Na +通量仅通过乙酰胆碱受体通道发生,如缺乏5 X 10(-6)M-河豚毒素的作用所证明。在存在Na +的情况下,几乎所有的45Ca2 +吸收都可以被1 mM-Mn2 +阻断,因此通过依赖电压的Ca2 +通道发生,该通道由去极化的Na +流入激活。但是,总45Ca2 +通量的6--8%对1 mM-Mn2 +不敏感,这表明摄取的这一部分是通过乙酰胆碱受体通道发生的。在不含Na +的培养基中,抗Mn2 +的45Ca2 +组分增加至总吸收量的40%,这显然是由于缺乏Na +对乙酰胆碱受体通道的竞争。这种与受体相关的通量仍会引起足够的去极化,以通过依赖电压的Mn2 +敏感的Ca2 +通道感应出另外60%的Ca2 +通量。 6. Mn2 +通过竞争通过这些通道的进入来抑制通过依赖电压的Ca2 +通道的Ca2 +通量。 50 mM-KCl在PC12细胞中诱导出54Mn2 +通量,其大小与45Ca2 +通量相当。 7.在生理盐水中,PC12细胞的45Ca2 +外排速度比不含Na +的培养基快几倍,表明存在Ca2 + -Na +交换机制。

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