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海兔B16-ARC神经肌肉接头处肽类共递质肌调节素家族的九个成员。

Nine members of the myomodulin family of peptide cotransmitters at the B16-ARC neuromuscular junction of Aplysia.

作者信息

Brezina V, Bank B, Cropper E C, Rosen S, Vilim F S, Kupfermann I, Weiss K R

机构信息

Department of Physiology and Biophysics, Mount Sinai School of Medicine, New York 10029, USA.

出版信息

J Neurophysiol. 1995 Jul;74(1):54-72. doi: 10.1152/jn.1995.74.1.54.

DOI:10.1152/jn.1995.74.1.54
PMID:7472354
Abstract
  1. Neuromodulation by multiple related peptides with different spectra of physiological effects appears an effective way to integrate complex physiological functions. A good opportunity to examine this issue occurs in the accessory radula closer (ARC) neuromuscular circuit of Aplysia, where, extensive previous work has shown, acetylcholine-induced contractions of the muscle are variously modulated by several families of peptide cotransmitters released under appropriate behavioral circumstances from the muscle's own two motor neurons. 2. In this work we focused on the myomodulins (MMs) released from motor neuron B16. Previous work has characterized MMA (PMSMLRLamide) and MMB (GSYRMMRLamide). We now similarly purified from ARC neuromuscular material and sequenced MMC (GWSMLRLamide), MMD (GLSMLRLamide), MME (GLQMLRLamide), and MMF (SLNMLRLamide). Three additional MMs, MMG (TLSMLRLamide), MMH (GLHMLRLamide), and MMI (SLSMLRLamide), are encoded by a known MM gene. B16 probably synthesizes, and coreleases, all nine MMs. Further MMs have been found in other mollusks. All evidence indicates that the MMs are a major, widely distributed family of molluscan neuropeptides important as neuromuscular modulators and probably also central transmitters or modulators. 3. MM effects on motor neuron B16-elicited ARC muscle contractions were best analyzed as the sum of three distinct actions: potentiation, depression of the amplitude of the contractions, and acceleration of their relaxation rate. We compared the effectiveness of all nine MMs in these respects. We correlated this with their effectiveness in enhancing the L-type Ca current and activating a specific K current in voltage-clamped dissociated ARC muscle fibers, effects we previously proposed to underlie, respectively, the potentiation and the depression of contractions. 4. All nine MMs were similarly effective in enhancing the Ca current and, as far as it was possible to determine, potentiating the amplitude as well as accelerating the relaxation rate of the contractions. 5. In contrast, the MMs' ability to activate the K current and depress the contractions varied greatly. MMB and MMC, in particular, were weak, whereas the other seven MMs were considerably more effective in both respects. 6. Altogether, we were able to explain the potentiating and depressing strengths of the MMs by the magnitude of their modulation of the Ca and K currents, providing further support for our hypothesis that the effects on contraction amplitude are mediated by the effects on the two currents. 7. The net effect on contraction amplitude was determined by the balance between the potentiation and depression. Although most MM concentrations had both potentiating and depressing actions, potentiated contractions predominated at low and depressed contractions (but with accelerated relaxation rate) at high concentrations.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 多种具有不同生理效应谱的相关肽进行神经调节似乎是整合复杂生理功能的有效方式。在海兔的副齿舌缩肌(ARC)神经肌肉回路中出现了研究这一问题的良好契机,此前大量研究表明,在适当行为情境下,从该肌肉自身的两个运动神经元释放的几类肽共递质对乙酰胆碱诱导的肌肉收缩产生了多种调节作用。2. 在这项研究中,我们聚焦于从运动神经元B16释放 的肌调节肽(MMs)。此前的研究已对MMA(PMSMLRLamide)和MMB(GSYRMMRLamide)进行了表征。我们现在同样从ARC神经肌肉物质中进行了纯化,并对MMC(GWSMLRLamide)、MMD(GLSMLRLamide)、MME(GLQMLRLamide)和MMF(SLNMLRLamide)进行了测序。另外三种MMs,MMG(TLSMLRLamide)、MMH(GLHMLRLamide)和MMI(SLSMLRLamide),由一个已知的MM基因编码。B16可能合成并共同释放所有这九种MMs。在其他软体动物中也发现了更多种类的MMs。所有证据表明,MMs是软体动物神经肽中的一个主要且广泛分布的家族,作为神经肌肉调节剂很重要,可能还是中枢递质或调节剂。3. 对运动神经元B16引发的ARC肌肉收缩的MM效应,最好分析为三种不同作用的总和:增强作用、收缩幅度的抑制作用以及舒张速率的加速作用。我们在这些方面比较了所有九种MMs的有效性。我们将此与它们在增强电压钳制的离体ARC肌肉纤维中的L型钙电流和激活特定钾电流方面的有效性相关联,我们此前提出这些效应分别是收缩增强和抑制的基础。4. 所有九种MMs在增强钙电流方面同样有效,并且就所能确定的而言,在增强收缩幅度以及加速收缩舒张速率方面也是如此。5. 相比之下,MMs激活钾电流和抑制收缩的能力差异很大。特别是MMB和MMC较弱,而其他七种MMs在这两方面都更有效。6. 总之,我们能够通过MMs对钙电流和钾电流的调节幅度来解释它们的增强和抑制强度,这进一步支持了我们的假设,即对收缩幅度的影响是由对这两种电流的影响介导的。7. 对收缩幅度的净效应由增强和抑制之间的平衡决定。尽管大多数MM浓度都具有增强和抑制作用,但在低浓度时增强收缩占主导,而在高浓度时抑制收缩(但舒张速率加快)占主导。(摘要截选至400字)

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