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果蝇神经肽对肌肉收缩进行突触后调节的证据。

Evidence for postsynaptic modulation of muscle contraction by a Drosophila neuropeptide.

作者信息

Clark Julie, Milakovic Maja, Cull Amanda, Klose Markus K, Mercier A Joffre

机构信息

Department of Biological Sciences, Brock University, 500 Glenridge Avenue, St. Catharines, ON, L2S 3A1, Canada.

出版信息

Peptides. 2008 Jul;29(7):1140-9. doi: 10.1016/j.peptides.2008.02.013. Epub 2008 Mar 4.

Abstract

DPKQDFMRFamide, the most abundant FMRFamide-like peptide in Drosophila melanogaster, has been shown previously to enhance contractions of larval body wall muscles elicited by nerve stimulation and to increase excitatory junction potentials (EJPs). The present work investigated the possibility that this peptide can also stimulate muscle contraction by a direct action on muscle fibers. DPKQDFMRFamide induced slow contractions and increased tonus in body wall muscles of Drosophila larvae from which the central nervous system had been removed. The threshold for this effect was approximately 10(-8)M. The increase in tonus persisted in the presence of 7x10(-3)M glutamate, which desensitized postsynaptic glutamate receptors. Thus, the effect on tonus could not be explained by enhanced release of glutamate from synaptic terminals and, thus, may represent a postsynaptic effect. The effect on tonus was abolished in calcium-free saline and by treatment with L-type calcium channel blockers, nifedipine and nicardipine, but not by T-type blockers, amiloride and flunarizine. The present results provide evidence that this Drosophila peptide can act postsynaptically in addition to its apparent presynaptic effects, and that the postsynaptic effect requires influx through L-type calcium channels.

摘要

DPKQDFMRFamide是黑腹果蝇中最丰富的类FMRFamide肽,先前已表明它能增强神经刺激引起的幼虫体壁肌肉收缩,并增加兴奋性接头电位(EJPs)。目前的研究探讨了这种肽是否也能通过直接作用于肌纤维来刺激肌肉收缩。DPKQDFMRFamide在去除中枢神经系统的果蝇幼虫体壁肌肉中诱导缓慢收缩并增加紧张度。这种效应的阈值约为10^(-8)M。在存在7×10^(-3)M谷氨酸的情况下,紧张度的增加持续存在,谷氨酸使突触后谷氨酸受体脱敏。因此,对紧张度的影响不能用突触末端谷氨酸释放增加来解释,因此可能代表突触后效应。在无钙盐溶液中以及用L型钙通道阻滞剂硝苯地平和尼卡地平处理后,对紧张度的影响被消除,但T型阻滞剂阿米洛利和氟桂利嗪则没有这种作用。目前的结果提供了证据,表明这种果蝇肽除了其明显的突触前效应外,还能在突触后起作用,并且突触后效应需要通过L型钙通道的钙内流。

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