Suppr超能文献

肽对乙酰胆碱受体脱敏的调节控制鸡交感神经元的神经递质释放。

Peptide modulation of ACh receptor desensitization controls neurotransmitter release from chicken sympathetic neurons.

作者信息

Valenta D C, Downing J E, Role L W

机构信息

Department of Anatomy and Cell Biology, Columbia University College of Physicians and Surgeons, New York, New York 10032.

出版信息

J Neurophysiol. 1993 Mar;69(3):928-42. doi: 10.1152/jn.1993.69.3.928.

Abstract
  1. The distribution and release of substance P (SP) in embryonic chicken lumbar sympathetic ganglia was examined with the use of immunohistochemistry and radioimmunoassay, respectively. SP immunoreactivity was detected in nerve fibers surrounding individual sympathetic neurons and was released by ganglionic depolarization. 2. Effects of SP on nicotinic acetylcholine receptor (AChR) function was assayed in embryonic sympathetic neurons in vitro by whole-cell patch clamp. SP (0.1-20 microM) accelerated the rate of decay (desensitization) of ACh-induced currents. The AChR desensitization time course is biphasic and described by the sum of two exponential functions dependent on agonist concentration (time constant of the faster component, tau f = 1-2 s, and the slower time constant, tau s = 10-25 s). SP selectively decreased tau s and the contribution of the slow component to the overall rate of current decay. The effects of SP on desensitization were concentration dependent and reversible. SP slowed recovery from desensitization by 2.5-fold. 3. SP shifted the dose-response curve for ACh-induced desensitization, reducing the concentration of ACh required to produce half-maximal desensitization by approximately twofold. 4. Preapplication of SP was equivalent to SP applied together with ACh in accelerating AChR desensitization. SP did not alter the time course of currents elicited by nondesensitizing concentrations of ACh, carbamylcholine (CARB), or dimethylphenylpiperazinium (DMPP). These data suggest that AChR activation is neither necessary nor sufficient for the peptide to modulate receptor function. A kinetic model of the effects of SP on specific steps in AChR desensitization is presented. 5. SP enhanced the rate of decay of synaptic currents in sympathetic neurons innervated in vitro, decreasing the synaptic current duration by up to 80%. 6. Effects of SP on neurotransmitter release from sympathetic neurons were evaluated by measuring the release of [3H]-norepinephrine (NE). ACh and CARB stimulated NE release in a concentration- and calcium-dependent manner. SP alone had no effect on NE secretion, but the peptide inhibited NE release induced by ACh or CARB by 40-50%. 7. Although agonists specific for either nicotinic or muscarinic receptors stimulated release of NE, SP selectively inhibited the nicotinic component of transmitter secretion. Thus SP suppressed NE release induced by DMPP by up to 80% but had no effect on muscarine or depolarization-induced NE secretion. 8. Parallel studies of the modulatory effects of SP on whole-cell currents and NE secretion revealed that SP inhibition of transmitter release from sympathetic neurons is directly proportional to the extent of potentiation of AChR desensitization.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 分别运用免疫组织化学和放射免疫分析法检测了P物质(SP)在鸡胚腰交感神经节中的分布与释放。在单个交感神经元周围的神经纤维中检测到了SP免疫反应性,且其可通过神经节去极化而释放。2. 采用全细胞膜片钳技术在体外对胚胎交感神经元中SP对烟碱型乙酰胆碱受体(AChR)功能的影响进行了测定。SP(0.1 - 20微摩尔)加速了ACh诱导电流的衰减速率(脱敏)。AChR脱敏的时间进程呈双相性,由两个依赖于激动剂浓度的指数函数之和来描述(较快成分的时间常数,τf = 1 - 2秒,较慢的时间常数,τs = 10 - 25秒)。SP选择性地降低了τs以及慢成分对电流总体衰减速率的贡献。SP对脱敏的影响具有浓度依赖性且是可逆的。SP使脱敏后的恢复减慢了2.5倍。3. SP使ACh诱导脱敏的剂量 - 反应曲线发生偏移,将产生半数最大脱敏所需的ACh浓度降低了约两倍。4. 预先应用SP与将SP和ACh一起应用在加速AChR脱敏方面效果相当。SP并未改变由非脱敏浓度的ACh、氨甲酰胆碱(CARB)或二甲基苯基哌嗪(DMPP)所引发电流的时间进程。这些数据表明,对于该肽调节受体功能而言,AChR激活既非必要条件也非充分条件。提出了一个关于SP对AChR脱敏特定步骤影响的动力学模型。5. SP增强了体外支配的交感神经元中突触电流的衰减速率,使突触电流持续时间减少了多达80%。6. 通过测量[3H] - 去甲肾上腺素(NE)的释放来评估SP对交感神经元神经递质释放的影响。ACh和CARB以浓度和钙依赖性方式刺激NE释放。单独的SP对NE分泌没有影响,但该肽抑制了由ACh或CARB诱导的NE释放达40 - 50%。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验