Carroll P T
Brain Res. 1984 Oct 29;321(1):55-62. doi: 10.1016/0006-8993(84)90680-2.
The importance of depolarization induced hydrolysis of cytoplasmic acetylcholine (ACh) in providing choline for the veratridine-and high K+-induced release of acetylcholine was studied in mouse forebrain minces. Results indicated that a loss of hydrolyzable cytoplasmic ACh prior to depolarization reduced the amount of ACh released by veratridine but not the amount released by high K+. The reduction in the veratridine-induced release of ACh did not occur during the first 5 min of incubation. Loss of vesicular ACh prior to depolarization reduced both the veratridine- and K+-induced release of ACh during the first 5 min of incubation. Blockade of extra-cellular choline transport by hemicholinium (HC-3) did not affect the veratridine-induced release of ACh during a 10 min incubation period unless the cytoplasmic pool of ACh had first been depleted and was unavailable as a source of choline. In contrast, HC-3 reduced the K+-induced release of ACh from brain tissue with normal stores of cytoplasmic ACh. These results indicate that both depolarizing agents primarily stimulate the release of preformed ACh from a vesicular fraction during the first 5 min of mince incubation. Thereafter, they both stimulate the release of newly synthesized ACh, however, they differ in one important respect. The principal source of choline for the veratridine-induced release of newly synthesized ACh appears to be the cytoplasmic pool of ACh, whereas the major source of choline for the K+-induced release of newly synthesized ACh appears to be extracellular choline.
在小鼠前脑切片中研究了去极化诱导的细胞质乙酰胆碱(ACh)水解在为藜芦碱和高钾诱导的乙酰胆碱释放提供胆碱方面的重要性。结果表明,去极化前可水解的细胞质ACh的损失减少了藜芦碱释放的ACh量,但不影响高钾释放的ACh量。在孵育的前5分钟内,藜芦碱诱导的ACh释放减少并未发生。去极化前囊泡ACh的损失在孵育的前5分钟内减少了藜芦碱和钾诱导的ACh释放。半胱氨酸胆碱(HC-3)阻断细胞外胆碱转运在10分钟的孵育期内不影响藜芦碱诱导的ACh释放,除非细胞质中的ACh池首先被耗尽且无法作为胆碱来源。相反,HC-3减少了来自具有正常细胞质ACh储存的脑组织中钾诱导的ACh释放。这些结果表明,在切片孵育的前5分钟内,两种去极化剂主要刺激预先形成的ACh从囊泡部分释放。此后,它们都刺激新合成的ACh释放,然而,它们在一个重要方面有所不同。藜芦碱诱导的新合成ACh释放的胆碱主要来源似乎是细胞质中的ACh池,而钾诱导的新合成ACh释放的胆碱主要来源似乎是细胞外胆碱。