Berg D K, Hall Z W
J Physiol. 1975 Nov;252(3):771-89. doi: 10.1113/jphysiol.1975.sp011169.
Acetylcholine (ACh) receptors in rat diaphragm muscle were blocked by intrathoracic injection of alpha-bungarotoxin (alpha-BuTx) or [125I]alpha-bungarotoxin ([125I]alpha-BuTx). The stability in vivo of the toxin-receptor complex formed by receptors in normal muscles and receptors in extrajunctional regions of denervated muscles was compared. Toxin was lost from junctional regions of normal muscles with a half-time of approximately 6 days. The loss of toxin was accompanied by a corresponding increase in the number of free toxin-binding sites. In contrast, 65% of the toxin bound to extrajunctional regions of denervated muscle was lost in 24 hr. 2. In a second series of experiments, animals were injected with [125I]alpha-BuTx and the muscle subsequently cultured for 24 hr. Loss of toxin again occurred more rapidly from extrajunctional receptors than from junctional receptors. The loss from extrajunctional receptors was described by a single first-order rate constant whose corresponding half-time was 8-11 hr. Loss was almost completely blocked by sodium cyanide and dinitrophenol and was inhibited by puromycin and cycloheximide. The radioactivity recovered in the medium was largely monoiodotyrosine. These results are consistent with the hypothesis that toxin loss reflects intracellular degradation of toxin-receptor complex. 3. Neonatal rats were injected with [125I]alpha-BuTx and the diaphragms cultured. Radioactive toxin was lost rapidly from extrajunctional regions of muscle and more slowly from regions containing end-plates. 4. These results could be explained by a difference in turnover rates for junctional and extrajunctional receptors.
通过胸腔内注射α-银环蛇毒素(α-BuTx)或[125I]α-银环蛇毒素([125I]α-BuTx)来阻断大鼠膈肌中的乙酰胆碱(ACh)受体。比较了正常肌肉中的受体和失神经肌肉的接头外区域中的受体所形成的毒素-受体复合物在体内的稳定性。毒素从正常肌肉的接头区域丢失,半衰期约为6天。毒素的丢失伴随着游离毒素结合位点数量的相应增加。相比之下,与失神经肌肉的接头外区域结合的毒素在24小时内有65%丢失。2. 在第二系列实验中,给动物注射[125I]α-BuTx,随后将肌肉培养24小时。毒素从接头外受体的丢失再次比从接头受体的丢失更快。接头外受体的丢失由单个一级速率常数描述,其相应的半衰期为8 - 11小时。丢失几乎完全被氰化钠和二硝基苯酚阻断,并被嘌呤霉素和环己酰亚胺抑制。培养基中回收的放射性物质主要是单碘酪氨酸。这些结果与毒素丢失反映毒素-受体复合物的细胞内降解这一假设一致。3. 给新生大鼠注射[125I]α-BuTx并培养膈肌。放射性毒素从肌肉的接头外区域迅速丢失,从含有终板的区域丢失较慢。4. 这些结果可以通过接头和接头外受体的周转率差异来解释。