Do Thanh D, Ellis Joseph F, Neumann Elizabeth K, Comi Troy J, Tillmaand Emily G, Lenhart Ashley E, Rubakhin Stanislav S, Sweedler Jonathan V
Department of Chemistry and the Beckman Institute for Advanced Science and Technology, University of Illinois at Urbana-Champaign, Urbana, Illinois, 61801, United States.
Chemphyschem. 2018 May 22;19(10):1180-1191. doi: 10.1002/cphc.201701364. Epub 2018 Apr 17.
The mammalian dorsal root ganglia (DRG) are located on the dorsal roots of the spinal nerves and contain cell bodies of primary sensory neurons. DRG cells have been classified into subpopulations based on their size, morphology, intracellular markers, response to stimuli, and neuropeptides. To understand the connections between DRG chemical heterogeneity and cellular function, we performed optically guided, high-throughput single cell profiling using sequential matrix-assisted laser desorption/ionization mass spectrometry (MS) to detect lipids, peptides, and several proteins in individual DRG cells. Statistical analysis of the resulting mass spectra allows stratification of the DRG population according to cellular morphology and, presumably, major cell types. A subpopulation of small cells contained myelin proteins, which are abundant in Schwann cells, and mass spectra of several larger cells contained peaks matching neurofilament, vimentin, myelin basic protein S, and thymosin beta proteins. Of the over 1000 cells analyzed, approximately 78 % produced putative peptide-rich spectra, allowing the population to be classified into three distinct cell types. Two signals with m/z 4404 and 5487 were exclusively observed in a cell type, but could not be matched to results of our previous liquid chromatography-MS analyses.
哺乳动物的背根神经节(DRG)位于脊神经的背根上,包含初级感觉神经元的细胞体。DRG细胞已根据其大小、形态、细胞内标志物、对刺激的反应和神经肽被分类为不同的亚群。为了了解DRG化学异质性与细胞功能之间的联系,我们使用顺序基质辅助激光解吸/电离质谱(MS)对单个DRG细胞进行光学引导的高通量单细胞分析,以检测脂质、肽和几种蛋白质。对所得质谱的统计分析允许根据细胞形态以及推测的主要细胞类型对DRG群体进行分层。一个小细胞亚群含有在施万细胞中丰富的髓磷脂蛋白,几个较大细胞的质谱含有与神经丝、波形蛋白、髓磷脂碱性蛋白S和胸腺素β蛋白匹配的峰。在所分析的1000多个细胞中,约78%产生了富含假定肽的光谱,从而可将该群体分为三种不同的细胞类型。在一种细胞类型中仅观察到m/z为4404和5487的两个信号,但无法与我们之前的液相色谱-MS分析结果相匹配。