Centre for Motor Neuron Disease Research, Macquarie Medical School, Faculty of Medicine, Health and Human Sciences, Macquarie University, Level 1, 75 Talavera Road, Sydney, NSW 2109, Australia.
Centre for Health Informatics, Faculty of Medicine, Health and Human Sciences, Macquarie University, 75 Talavera Road, Sydney, NSW 2109, Australia.
Int J Mol Sci. 2023 Feb 21;24(5):4283. doi: 10.3390/ijms24054283.
Proteomics offers vast potential for studying the molecular regulation of the human brain. Formalin fixation is a common method for preserving human tissue; however, it presents challenges for proteomic analysis. In this study, we compared the efficiency of two different protein-extraction buffers on three post-mortem, formalin-fixed human brains. Equal amounts of extracted proteins were subjected to in-gel tryptic digestion and LC-MS/MS. Protein, peptide sequence, and peptide group identifications; protein abundance; and gene ontology pathways were analyzed. Protein extraction was superior using lysis buffer containing tris(hydroxymethyl)aminomethane hydrochloride, sodium dodecyl sulfate, sodium deoxycholate, and Triton X-100 (TrisHCl, SDS, SDC, Triton X-100), which was then used for inter-regional analysis. Pre-frontal, motor, temporal, and occipital cortex tissues were analyzed by label free quantification (LFQ) proteomics, Ingenuity Pathway Analysis and PANTHERdb. Inter-regional analysis revealed differential enrichment of proteins. We found similarly activated cellular signaling pathways in different brain regions, suggesting commonalities in the molecular regulation of neuroanatomically-linked brain functions. Overall, we developed an optimized, robust, and efficient method for protein extraction from formalin-fixed human brain tissue for in-depth LFQ proteomics. We also demonstrate herein that this method is suitable for rapid and routine analysis to uncover molecular signaling pathways in the human brain.
蛋白质组学为研究人类大脑的分子调控提供了巨大的潜力。福尔马林固定是保存人体组织的常用方法;然而,它对蛋白质组学分析提出了挑战。在这项研究中,我们比较了两种不同的蛋白质提取缓冲液在三个福尔马林固定的死后人类大脑中的效率。等量的提取蛋白进行胶内胰蛋白酶消化和 LC-MS/MS 分析。分析了蛋白质、肽序列和肽组的鉴定、蛋白质丰度和基因本体论途径。使用含有三羟甲基氨基甲烷盐酸盐、十二烷基硫酸钠、脱氧胆酸钠和 Triton X-100 的裂解缓冲液(TrisHCl、SDS、SDC、Triton X-100)进行蛋白质提取效果更好,然后用于区域间分析。通过无标记定量 (LFQ) 蛋白质组学、Ingenuity 通路分析和 PANTHERdb 分析前额叶、运动、颞叶和枕叶皮质组织。区域间分析显示蛋白质的差异富集。我们发现不同脑区的细胞信号通路相似激活,这表明神经解剖学相关脑功能的分子调控具有共同性。总的来说,我们开发了一种从福尔马林固定的人脑组织中提取蛋白质的优化、稳健和高效的方法,用于深入的 LFQ 蛋白质组学。我们还证明了这种方法适用于快速和常规分析,以揭示人类大脑中的分子信号通路。