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单个γ-氨基丁酸能躯体运动神经元的质谱分析鉴定出线虫猪蛔虫中的一种新型抑制性肽,即As-NLP-22。

Mass Spectrometry of Single GABAergic Somatic Motorneurons Identifies a Novel Inhibitory Peptide, As-NLP-22, in the Nematode Ascaris suum.

作者信息

Konop Christopher J, Knickelbine Jennifer J, Sygulla Molly S, Wruck Colin D, Vestling Martha M, Stretton Antony O W

机构信息

Department of Zoology, University of Wisconsin-Madison, Madison, WI, 53706, USA.

Parasitology and Vector Biology Training Program, University of Wisconsin-Madison, Madison, WI, 53706, USA.

出版信息

J Am Soc Mass Spectrom. 2015 Dec;26(12):2009-23. doi: 10.1007/s13361-015-1177-z. Epub 2015 Jul 15.

Abstract

Neuromodulators have become an increasingly important component of functional circuits, dramatically changing the properties of both neurons and synapses to affect behavior. To explore the role of neuropeptides in Ascaris suum behavior, we devised an improved method for cleanly dissecting single motorneuronal cell bodies from the many other cell processes and hypodermal tissue in the ventral nerve cord. We determined their peptide content using matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) mass spectrometry (MS). The reduced complexity of the peptide mixture greatly aided the detection of peptides; peptide levels were sufficient to permit sequencing by tandem MS from single cells. Inhibitory motorneurons, known to be GABAergic, contain a novel neuropeptide, As-NLP-22 (SLASGRWGLRPamide). From this sequence and information from the A. suum expressed sequence tag (EST) database, we cloned the transcript (As-nlp-22) and synthesized a riboprobe for in situ hybridization, which labeled the inhibitory motorneurons; this validates the integrity of the dissection method, showing that the peptides detected originate from the cells themselves and not from adhering processes from other cells (e.g., synaptic terminals). Synthetic As-NLP-22 has potent inhibitory activity on acetylcholine-induced muscle contraction as well as on basal muscle tone. Both of these effects are dose-dependent: the inhibitory effect on ACh contraction has an IC50 of 8.3 × 10(-9) M. When injected into whole worms, As-NLP-22 produces a dose-dependent inhibition of locomotory movements and, at higher levels, complete paralysis. These experiments demonstrate the utility of MALDI TOF/TOF MS in identifying novel neuromodulators at the single-cell level. Graphical Abstract ᅟ.

摘要

神经调质已成为功能回路中越来越重要的组成部分,极大地改变了神经元和突触的特性,从而影响行为。为了探究神经肽在猪蛔虫行为中的作用,我们设计了一种改进方法,用于从腹神经索中的许多其他细胞突起和皮下组织中干净利落地分离单个运动神经元细胞体。我们使用基质辅助激光解吸/电离飞行时间(MALDI-TOF)质谱(MS)来确定它们的肽含量。肽混合物复杂性的降低极大地有助于肽的检测;肽水平足以允许通过单细胞串联MS进行测序。已知为GABA能的抑制性运动神经元含有一种新型神经肽,即As-NLP-22(SLASGRWGLRPamide)。根据这个序列以及来自猪蛔虫表达序列标签(EST)数据库的信息,我们克隆了转录本(As-nlp-22)并合成了用于原位杂交的核糖探针,该探针标记了抑制性运动神经元;这验证了解剖方法的完整性,表明检测到的肽源自细胞本身,而非来自其他细胞的附着突起(例如突触末端)。合成的As-NLP-22对乙酰胆碱诱导的肌肉收缩以及基础肌肉张力具有强大的抑制活性。这两种作用均呈剂量依赖性:对乙酰胆碱收缩的抑制作用的IC50为8.3×10^(-9) M。当注射到完整蠕虫中时,As-NLP-22会对运动产生剂量依赖性抑制,并且在较高水平时会导致完全麻痹。这些实验证明了MALDI TOF/TOF MS在单细胞水平鉴定新型神经调质方面的实用性。图形摘要ᅟ。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd42/4654748/712fb6eaf37b/13361_2015_1177_Figa_HTML.jpg

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