首页> 美国卫生研究院文献>The Journal of Neuroscience >Costorage and Corelease of Modulatory Peptide Cotransmitters with Partially Antagonistic Actions on the Accessory Radula Closer Muscle ofAplysia californica
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Costorage and Corelease of Modulatory Peptide Cotransmitters with Partially Antagonistic Actions on the Accessory Radula Closer Muscle ofAplysia californica

机译:Costorage和共释放的调制肽共递质与加利福尼亚州鸭Rad附子近端肌肉的部分拮抗作用

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摘要

Many neurons that contain a classical neurotransmitter also contain modulatory peptides, but it has been difficult to establish unequivocally that these peptides are functional cotransmitters. Here, we provide evidence for functional cotransmission in a neuromuscular system of Aplysia. Using immunocytochemical techniques, we localize members of two peptide families, the small cardioactive peptides (SCPs) and the buccalins (BUCs), to a single subset of dense-core vesicles in the terminals of the cholinergic motorneuron B15. We describe a new preparation and method for the direct detection of released peptides and show that the SCPs and BUCs are released when neuron B15 is intracellularly stimulated. Consistent with their subcellular localization, the SCPs and BUCs are released in a stoichiometric ratio that is constant across conditions that change the absolute amount of peptides released. Peptide release is calcium-dependent but does not require muscle contractions. Thus, the release cannot be attributed to a displacement of peptides that may be present in the extracellular space. In previous studies, we characterized the physiological firing patterns of neuron B15. Here, we simulate these firing patterns and show that peptide release occurs. Additionally, we find that significant quantities of material are released under behaviorally relevant conditions. We find that concentrations of released peptides in the muscle are in the concentration range in which exogenously applied peptides exert characterized modulatory actions on muscle contractions. Together, our findings provide strong support for the hypothesis that peptides contained in neuron B15 are functional cotransmitters.
机译:包含经典神经递质的许多神经元也包含调节性肽,但是很难明确地确定这些肽是功能性共递质。在这里,我们提供了Aplysia神经肌肉系统中功能共传递的证据。使用免疫细胞化学技术,我们将胆碱能运动神经元B15末端的两个小的心活性肽(SCP)和布卡林(BUCs)肽家族的成员定位到单个密集核心囊泡的子集中。我们描述了一种直接检测释放的肽的新制剂和方法,并表明当神经元B15被细胞内刺激时,SCP和BUC被释放。与它们的亚细胞定位一致,SCP和BUC以化学计量比释放,该比率在改变释放的肽的绝对量的条件下恒定。肽释放是钙依赖性的,但不需要肌肉收缩。因此,释放不能归因于细胞外空间中可能存在的肽的置换。在以前的研究中,我们表征了神经元B15的生理放电模式。在这里,我们模拟了这些触发模式,并表明发生了肽释放。此外,我们发现在行为相关的条件下会释放大量的材料。我们发现肌肉中释放的肽的浓度在外源施加的肽对肌肉收缩施加特征性调节作用的浓度范围内。在一起,我们的发现为神经元B15中包含的肽是功能性共递质的假说提供了有力的支持。

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