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肌调节素对水蛭Retzius细胞兴奋性和膜电流的调节作用。

Modulatory effects of myomodulin on the excitability and membrane currents in Retzius cells of the leech.

作者信息

Wang Y, Strong J A, Sahley C L

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

J Neurophysiol. 1999 Jul;82(1):216-25. doi: 10.1152/jn.1999.82.1.216.

Abstract

Ion channel modulation by the peptide myomodulin (MM) has been demonstrated in a wide variety of organisms including Aplysia, Lymnaea, and Pleurobranchaea. This neural and muscular modulation has been shown to be important for shaping and modifying behavior. In this paper, we report that MM modulates several distinct ionic channels in another species, the medicinal leech Hirudo medicinalis. Experiments have focused on the Retzius cell (R) because the R cell is a multifunction neuron that has been implicated in a number of behaviors including feeding, swimming, secretion, thermal sensing, and the touch elicited shortening reflex and its plasticity. Previous work had identified a MM-like peptide in the leech and demonstrated that this peptide modulated the excitability of the R cell. Using combined current- and voltage-clamp techniques to examine the effects of MM on the R cell, we found that in response to a step pulse, MM increased the excitability of the R cell such that the cell fires more action potentials with a shorter latency to the first action potential. We found that this effect was mediated by the activation of a Na+-mediated inward current near the cell resting membrane potential. Second, we found that MM differentially modulated the potassium currents IA and IK. No effect of MM was found on IA, whereas MM significantly reduced both the peak and steady-state amplitudes of IK by 49 +/- 2.9% and 43 +/- 7.2%, respectively (means +/- SE). Finally we found that MM reduced the amplitude of the Ca2+ current by approximately 20%. The ionic currents modulated by MM are consistent with the overall effect of MM on the cellular activity of the R cell. An understanding of the cellular mechanisms by which MM modulates the activity of the R cell should help us to better understand the roles of both MM and the R cell in a variety of behaviors in the leech.

摘要

肽类肌动蛋白调节素(MM)对离子通道的调节作用已在包括海兔、椎实螺和侧鳃海牛在内的多种生物中得到证实。这种神经和肌肉调节作用已被证明对塑造和改变行为很重要。在本文中,我们报告MM可调节另一种生物——药用蛭(医蛭)中的几种不同离子通道。实验主要集中在Retzius细胞(R细胞)上,因为R细胞是一种多功能神经元,与包括进食、游泳、分泌、热感测以及触摸诱发的缩短反射及其可塑性在内的多种行为有关。先前的研究已经在水蛭中鉴定出一种类似MM的肽,并证明这种肽可调节R细胞的兴奋性。利用电流钳和电压钳技术相结合来研究MM对R细胞的影响,我们发现,响应阶跃脉冲时,MM会增加R细胞的兴奋性,使得细胞能产生更多动作电位,且第一个动作电位的潜伏期更短。我们发现这种效应是由细胞静息膜电位附近的钠介导内向电流的激活介导的。其次,我们发现MM对钾电流IA和IK有不同的调节作用。未发现MM对IA有影响,而MM分别使IK的峰值和稳态幅度显著降低了49±2.9%和43±7.2%(平均值±标准误)。最后,我们发现MM使钙电流幅度降低了约20%。MM调节的离子电流与MM对R细胞细胞活性的总体影响一致。了解MM调节R细胞活性的细胞机制应有助于我们更好地理解MM和R细胞在水蛭各种行为中的作用。

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