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Characterizing the physiological and behavioral roles of proctolin in Drosophila melanogaster

机译:表征果蝇中proctolin的生理和行为作用

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摘要

The neuropeptide proctolin (RYLPT) plays important roles as both a neurohormone and a cotransmitter in arthropod neuromuscular systems. We used third-instar Drosophila larvae as a model system to differentiate synaptic effects of this peptide from its direct effects on muscle contractility and to determine whether proctolin can work in a cell-selective manner on muscle fibers. Proctolin did not appear to alter the amplitude of excitatory junctional potentials but did induce sustained muscle contractions in preparations where the CNS had been removed and no stimuli were applied to the remaining nerves. Proctolin-induced contractions were dose-dependent, were reduced by knocking down expression of the Drosophila proctolin receptor in muscle tissue, and were larger in some muscle cells than others (i.e., larger in fibers 4, 12, and 13 than in 6 and 7). Proctolin also increased the amplitude of nerve-evoked contractions in a dose-dependent manner, and the magnitude of this effect was also larger in some muscle cells than others (again, larger in fibers 4, 12, and 13 than in 6 and 7). Increasing the intraburst impulse frequency and number of impulses per burst increased the magnitude of proctolin's enhancement of nerve-evoked contractions and decreased the threshold and EC50 concentrations for proctolin to enhance nerve-evoked contractions. Reducing proctolin receptor expression decreased the velocity of larval crawling at higher temperatures, and thermal preference in these larvae. Our results suggest that proctolin acts directly on body-wall muscles to elicit slow, sustained contractions and to enhance nerve-evoked contractions, and that proctolin affects muscle fibers in a cell-selective manner.
机译:在节肢动物的神经肌肉系统中,神经肽直肠蛋白(RYLPT)既作为神经激素又是共递质,起着重要的作用。我们使用第三龄果蝇幼虫作为模型系统,以区分该肽的突触效应与其对肌肉收缩性的直接效应,并确定proctolin是否可以以细胞选择性方式作用于肌纤维。 Proctolin似乎并没有改变兴奋性连接电位的幅度,但在中枢神经系统已被移除且未对其余神经施加刺激的制剂中,确实会引起持续的肌肉收缩。脯氨酸环蛋白诱导的收缩是剂量依赖性的,通过敲低果蝇果蝇蛋白环蛋白受体在肌肉组织中的表达而减少,并且在某些肌肉细胞中比在其他肌肉细胞中更大(即,在纤维4、12和13中大于在6和7中) )。直肠泌乳素还以剂量依赖性方式增加神经诱发的收缩的幅度,并且这种作用的强度在某些肌肉细胞中也比其他肌肉细胞大(同样,纤维4、12和13中的纤维比6和7中的大) 。爆发内脉冲频率和每次爆发脉冲数的增加,增加了柏考特林增强神经诱发的收缩的幅度,并降低了阈值和EC50浓度,以促进食管素增强神经诱发的收缩。减少proctolin受体表达降低了在较高温度下幼虫爬行的速度,并降低了这些幼虫的热偏好。我们的研究结果表明,直肠泌乳素直接作用于体壁肌肉以引起缓慢,持续的收缩,并增强神经诱发的收缩,而直肠泌乳素以细胞选择性的方式影响肌肉纤维。

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