Department of Biology, Bowdoin College, 6500 College Station, Brunswick, Maine 04011, USA.
J Exp Biol. 2009 Dec;212(Pt 24):3961-76. doi: 10.1242/jeb.035741.
pQDLDHVFLRFamide is a highly conserved crustacean neuropeptide with a structure that places it within the myosuppressin subfamily of the FMRFamide-like peptides. Despite its apparent ubiquitous conservation in decapod crustaceans, the paracrine and/or endocrine roles played by pQDLDHVFLRFamide remain largely unknown. We have examined the actions of this peptide on the cardiac neuromuscular system of the American lobster Homarus americanus using four preparations: the intact animal, the heart in vitro, the isolated cardiac ganglion (CG), and a stimulated heart muscle preparation. In the intact animal, injection of myosuppressin caused a decrease in heartbeat frequency. Perfusion of the in vitro heart with pQDLDHVFLRFamide elicited a decrease in the frequency and an increase in the amplitude of heart contractions. In the isolated CG, myosuppressin induced a hyperpolarization of the resting membrane potential of cardiac motor neurons and a decrease in the cycle frequency of their bursting. In the stimulated heart muscle preparation, pQDLDHVFLRFamide increased the amplitude of the induced contractions, suggesting that myosuppressin modulates not only the CG, but also peripheral sites. For at least the in vitro heart and the isolated CG, the effects of myosuppressin were dose-dependent (10(-9) to 10(-6) mol l(-1) tested), with threshold concentrations (10(-8)-10(-7) mol l(-1)) consistent with the peptide serving as a circulating hormone. Although cycle frequency, a parameter directly determined by the CG, consistently decreased when pQDLDHVFLRFamide was applied to all preparation types, the magnitudes of this decrease differed, suggesting the possibility that, because myosuppressin modulates the CG and the periphery, it also alters peripheral feedback to the CG.
pQDLDHVFLRFamide 是一种高度保守的甲壳类神经肽,其结构使其属于 FMRFamide 样肽中的肌抑制素亚家族。尽管它在十足目甲壳动物中明显普遍存在,但 pQDLDHVFLRFamide 所发挥的旁分泌和/或内分泌作用在很大程度上仍不清楚。我们使用四个制剂检查了这种肽对美洲龙虾 Homarus americanus 的心脏神经肌肉系统的作用:完整动物、离体心脏、分离的心脏神经节 (CG) 和受刺激的心肌制剂。在完整动物中,肌抑制素注射导致心跳频率降低。用 pQDLDHVFLRFamide 灌注离体心脏会引起心跳频率降低和收缩幅度增加。在分离的 CG 中,肌抑制素诱导心脏运动神经元的静息膜电位超极化,并降低其爆发的周期频率。在受刺激的心肌制剂中,pQDLDHVFLRFamide 增加了诱导收缩的幅度,表明肌抑制素不仅调节 CG,还调节外周部位。至少对于离体心脏和分离的 CG,肌抑制素的作用具有剂量依赖性(测试浓度为 10(-9) 至 10(-6) mol l(-1)),其阈浓度(10(-8)-10(-7) mol l(-1))与肽作为循环激素一致。尽管当将 pQDLDHVFLRFamide 应用于所有制剂类型时,CG 直接决定的周期频率持续降低,但这种降低的幅度不同,这表明肌抑制素调节 CG 和外周组织的可能性,它还改变了对 CG 的外周反馈。