Agoston D V, Kosh J W, Lisziewicz J, Whittaker V P
J Neurochem. 1985 Jan;44(1):299-305. doi: 10.1111/j.1471-4159.1985.tb07144.x.
Acetylcholine-rich synaptic vesicles were isolated from myenteric plexus-longitudinal muscle strips derived from the guinea pig ileum by the method of Dowe, Kilbinger, and Whittaker [J. Neurochem. 35, 993-1003 (1980)] using either unstimulated preparations or preparations field-stimulated at 1 Hz for 10 min using pulses of 1 ms duration and 10 V . cm-1 intensity. The organ bath contained either tetradeuterated (d4) choline (50 microM) or [3H]acetate (2 muCi . ml-1); d4 acetylcholine was measured by gas chromatography-mass spectrometry. As with Torpedo electromotor cholinergic vesicle preparations made under similar conditions the distribution of newly synthesized (d4 or [3H]) acetylcholine in the zonal gradient from stimulated preparations was not identical with that of endogenous (d0, [1H]) acetylcholine, but corresponded to a subpopulation of denser vesicles (equivalent to the VP2 fraction from Torpedo) that had preferentially taken up newly synthesized transmitter. The density difference between the reserve (VP1) and recycling (VP2) vesicles was less than that observed in Torpedo but this smaller difference can be accounted for theoretically by the difference in size between the vesicles of the two tissues. At rest, a lesser incorporation of labelled acetylcholine into the vesicle fraction was observed, and the peaks of endogenous and newly synthesized acetylcholine coincided. Stimulation in the absence of label followed by addition of label did not lead to incorporation of labelled acetylcholine, suggesting that the synthesis and storage of acetylcholine in this preparation and its recovery from stimulation is much more rapid than in Torpedo.
采用多伊、基尔宾格和惠特克的方法[《神经化学杂志》35, 993 - 1003 (1980)],从豚鼠回肠的肌间神经丛 - 纵行肌条中分离出富含乙酰胆碱的突触小泡,使用未刺激的标本或使用持续时间为1毫秒、强度为10伏·厘米⁻¹的脉冲以1赫兹频率场刺激10分钟的标本。器官浴中含有四氘代(d4)胆碱(50微摩尔)或[³H]乙酸盐(2微居里·毫升⁻¹);通过气相色谱 - 质谱法测量d4乙酰胆碱。与在类似条件下制备的电鳐电运动胆碱能小泡制剂一样,在刺激标本的区域梯度中新合成的(d4或[³H])乙酰胆碱的分布与内源性(d0,[¹H])乙酰胆碱的分布不同,但对应于优先摄取新合成递质的较密小泡亚群(相当于电鳐的VP2部分)。储备(VP1)小泡和再循环(VP2)小泡之间的密度差异小于在电鳐中观察到的差异,但理论上这种较小的差异可以由两种组织小泡大小的差异来解释。在静止状态下,观察到标记的乙酰胆碱较少掺入小泡部分,并且内源性和新合成的乙酰胆碱的峰重合。在无标记情况下刺激后添加标记不会导致标记的乙酰胆碱掺入,这表明该制剂中乙酰胆碱的合成、储存及其从刺激中的恢复比在电鳐中要快得多。