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一种用于黑腹果蝇差异神经肽组学的快速 MALDI-TOF 质谱工作流程。

A rapid MALDI-TOF mass spectrometry workflow for Drosophila melanogaster differential neuropeptidomics.

机构信息

Depts of Chemistry and Chemical Biology and Pharmaceutical Sciences and Barnett Institute of Chemical and Biological Analysis, Northeastern University, 140 The Fenway, Boston, MA 02115, USA.

出版信息

Mol Brain. 2013 Dec 27;6:60. doi: 10.1186/1756-6606-6-60.

Abstract

BACKGROUND

Neuropeptides are a diverse category of signaling molecules in the nervous system regulating a variety of processes including food intake, social behavior, circadian rhythms, learning, and memory. Both the identification and functional characterization of specific neuropeptides are ongoing fields of research. Matrix-assisted laser desorption/ionization-time of flight mass spectrometry (MALDI-TOF MS) analysis of nervous tissues from a variety of organisms allows direct detection and identification of neuropeptides. Here, we demonstrate an analysis workflow that allows for the detection of differences in specific neuropeptides amongst a variety of neuropeptides being simultaneously measured. For sample preparation, we describe a straight-forward and rapid (minutes) method where individual adult Drosophila melanogaster brains are analyzed. Using a MATLAB-based data analysis workflow, also compatible with MALDI-TOF mass spectra obtained from other sample preparations and instrumentation, we demonstrate how changes in neuropeptides levels can be detected with this method.

RESULTS

Over fifty isotopically resolved ion signals in the peptide mass range are reproducibly observed across experiments. MALDI-TOF MS profile spectra were used to statistically identify distinct relative differences in organ-wide endogenous levels of detected neuropeptides between biological conditions. In particular, three distinct levels of a particular neuropeptide, pigment dispersing factor, were detected by comparing groups of preprocessed spectra obtained from individual brains across three different D. melanogaster strains, each of which express different amounts of this neuropeptide. Using the same sample preparation, MALDI-TOF/TOF tandem mass spectrometry confirmed that at least 14 ion signals observed across experiments are indeed neuropeptides. Among the identified neuropeptides were three products of the neuropeptide-like precursor 1 gene previously not identified in the literature.

CONCLUSIONS

Using MALDI-TOF MS and preprocessing/statistical analysis, changes in relative levels of a particular neuropeptide in D. melanogaster tissue can be statistically detected amongst a variety of neuropeptides. While the data analysis methods should be compatible with other sample preparations, the presented sample preparation method was sufficient to identify previously unconfirmed D. melanogaster neuropeptides.

摘要

背景

神经肽是神经系统中一类多样化的信号分子,调节包括食物摄入、社会行为、昼夜节律、学习和记忆在内的多种过程。特定神经肽的鉴定和功能特征分析是当前研究的热点领域。基质辅助激光解吸/电离-飞行时间质谱(MALDI-TOF MS)分析来自各种生物体的神经组织,可以直接检测和鉴定神经肽。在这里,我们展示了一种分析工作流程,该流程允许在同时测量的各种神经肽中检测特定神经肽的差异。对于样品制备,我们描述了一种简单、快速(几分钟内)的方法,可用于分析单个成年果蝇大脑。使用基于 MATLAB 的数据分析工作流程,该工作流程也与来自其他样品制备和仪器的 MALDI-TOF 质谱兼容,我们展示了如何使用这种方法检测神经肽水平的变化。

结果

在肽质量范围内可重复性地观察到超过五十个同位素分辨的离子信号。MALDI-TOF MS 图谱谱被用于统计识别生物条件下器官范围内检测到的内源性神经肽的相对差异。特别是,通过比较来自三个不同 D. melanogaster 品系的单个大脑的预处理谱获得的组,在三个不同的 D. melanogaster 品系之间检测到一种特定神经肽,色素分散因子的三个不同水平,每个品系都表达不同量的这种神经肽。使用相同的样品制备方法,MALDI-TOF/TOF 串联质谱证实,在实验中观察到的至少 14 个离子信号确实是神经肽。在鉴定的神经肽中,有三种是神经肽样前体 1 基因的产物,此前在文献中尚未鉴定。

结论

使用 MALDI-TOF MS 和预处理/统计分析,可以在果蝇组织中特定神经肽的相对水平变化进行统计检测。虽然数据分析方法应该与其他样品制备兼容,但所提出的样品制备方法足以鉴定以前未确认的 D. melanogaster 神经肽。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3c4/4022047/5551fee218af/1756-6606-6-60-1.jpg

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