Witten J L, O'Shea M
J Comp Neurol. 1985 Dec 1;242(1):93-101. doi: 10.1002/cne.902420106.
Proctolin (Arg-Tyr-Leu-Pro-Thr) is a pentapeptide present in the hindgut or proctodeum of the cockroach Periplaneta americana where it may be a transmitter. Its widespread distribution among peripherally projecting neurons in the CNS (Bishop and O'Shea, '82) suggested that proctolin's motor function is not restricted to the hindgut, but has a variety of peripheral targets. This idea was further supported when proctolin was localized to an identified skeletal motoneuron, the slow coxal depressor, where it acts as a cotransmitter (O'Shea and Bishop, '82; Adams and O'Shea, '83). Our objective was to investigate the proctolinergic innervation of a variety of skeletal muscles of the cockroach Periplaneta americana. We used immunohistochemical and radioimmunochemical methods to map the distribution of proctolin immunoreactivity. This survey revealed that a subpopulation of skeletal muscles are innervated by proctolinergic motoneurons. The anatomical features of the peptidergic innervation and the levels of proctolinlike immunoreactivity of one muscle group, the coxal depressor system, are here described in detail. The source of the proctolin innervation to the metathoracic coxal depressor group is identified as the slow coxal depressor motoneuron. The results of a survey of fast and slow skeletal muscles revealed that proctolin is associated with slow motor function. The functional implications of the association of a peptide with motoneurons are discussed in relationship to the organization of the insect motor pool.
促肠动素(精氨酸 - 酪氨酸 - 亮氨酸 - 脯氨酸 - 苏氨酸)是一种存在于美洲大蠊后肠或直肠中的五肽,在那里它可能是一种递质。它在中枢神经系统中向周围投射的神经元中广泛分布(毕晓普和奥谢,1982年),这表明促肠动素的运动功能并不局限于后肠,而是有多种外周靶点。当促肠动素定位于一个已确定的骨骼肌运动神经元——慢髋屈肌时,它作为一种共递质起作用,这一观点得到了进一步支持(奥谢和毕晓普,1982年;亚当斯和奥谢,1983年)。我们的目的是研究美洲大蠊各种骨骼肌的促肠动素能神经支配。我们使用免疫组织化学和放射免疫化学方法来绘制促肠动素免疫反应性的分布。这项调查显示,一部分骨骼肌由促肠动素能运动神经元支配。本文详细描述了一个肌肉群——髋屈肌系统的肽能神经支配的解剖特征和促肠动素样免疫反应性水平。后胸髋屈肌群的促肠动素神经支配来源被确定为慢髋屈肌运动神经元。对快、慢骨骼肌的调查结果表明,促肠动素与慢运动功能有关。结合昆虫运动神经元池的组织,讨论了一种肽与运动神经元关联的功能意义。