Volen Center and Department of Biology, Brandeis University, Waltham, Massachusetts 02454, USA.
J Comp Neurol. 2011 Sep 1;519(13):2658-76. doi: 10.1002/cne.22654.
The crustacean stomatogastric ganglion (STG) is modulated by a large number of amines and neuropeptides that are found in descending pathways from anterior ganglia or reach the STG via the hemolymph. Among these are the allatostatin (AST) B types, also known as myoinhibitory peptides (MIPs). We used mass spectrometry to determine the sequences of nine members of the AST-B family of peptides that were found in the stomatogastric nervous system of the crab Cancer borealis. We raised an antibody against Cancer borealis allatostatin-B1 (CbAST-B1; VPNDWAHFRGSWa) and used it to map the distribution of CbAST-B1-like immunoreactivity (-LI) in the stomatogastric nervous system. CbAST-B1-LI was found in neurons and neuropil in the commissural ganglia (CoGs), in somata in the esophageal ganglion (OG), in fibers in the stomatogastric nerve (stn), and in neuropilar processes in the STG. CbAST-B1-LI was blocked by preincubation with 10(-6) M CbAST-B1 and was partially blocked by lower concentrations. Electrophysiological recordings of the effects of CbAST-B1, CbAST-B2, and CbAST-B3 on the pyloric rhythm of the STG showed that all three peptides inhibited the pyloric rhythm in a state-dependent manner. Specifically, all three peptides at 10(-8) M significantly decreased the frequency of the pyloric rhythm when the initial frequency of the pyloric rhythm was below 0.6 Hz. These data suggest important neuromodulatory roles for the CbAST-B family in the stomatogastric nervous system.
甲壳类动物的口胃神经节(STG)受到大量胺类和神经肽的调制,这些物质存在于从前神经节下降的途径中,或者通过血淋巴到达 STG。其中包括被称为肌抑制肽(MIPs)的食欲抑制素(AST)B 型。我们使用质谱法确定了在螃蟹 Cancer borealis 的 STG 神经系统中发现的九种 AST-B 家族肽的序列。我们制备了针对 Cancer borealis 食欲抑制素-B1(CbAST-B1;VPNDWAHFRGSWa)的抗体,并使用该抗体来绘制 CbAST-B1 样免疫反应性(-LI)在 STG 中的分布图谱。CbAST-B1-LI 存在于 CoGs 的神经节(CoGs)、食管神经节(OG)的神经元和神经丛中、STN 的纤维中和 STG 的神经丛中的神经丛过程中。CbAST-B1-LI 被 10(-6) M CbAST-B1 预孵育阻断,并被较低浓度部分阻断。对 CbAST-B1、CbAST-B2 和 CbAST-B3 对 STG 幽门节律的电生理记录显示,这三种肽均以状态依赖的方式抑制幽门节律。具体来说,当幽门节律的初始频率低于 0.6 Hz 时,三种肽在 10(-8) M 时均显著降低了幽门节律的频率。这些数据表明 CbAST-B 家族在 STG 神经系统中具有重要的神经调制作用。