Roux-Dalvai Florence, Gonzalez de Peredo Anne, Simó Carolina, Guerrier Luc, Bouyssié David, Zanella Alberto, Citterio Attilio, Burlet-Schiltz Odile, Boschetti Egisto, Righetti Pier Giorgio, Monsarrat Bernard
Institute of Pharmacology and Structural Biology, CNRS, Université de Toulouse, 31077 Toulouse, France.
Mol Cell Proteomics. 2008 Nov;7(11):2254-69. doi: 10.1074/mcp.M800037-MCP200. Epub 2008 Jul 9.
The erythrocyte cytoplasmic proteome is composed of 98% hemoglobin; the remaining 2% is largely unexplored. Here we used a combinatorial library of hexameric peptides as a capturing agent to lower the signal of hemoglobin and amplify the signal of low to very low abundance proteins in the cytoplasm of human red blood cells (RBCs). Two types of hexapeptide library beads have been adopted: amino-terminal hexapeptide beads and beads in which the peptides have been further derivatized by carboxylation. The amplification of the signal of low abundance and suppression of the signal of high abundance species were fully demonstrated by two-dimensional gel maps and nano-LC-MSMS analysis. The effect of this new methodology on quantitative information also was explored. Moreover using this approach on an LTQ-Orbitrap mass spectrometer, we could identify with high confidence as many as 1578 proteins in the cytoplasmic fraction of a highly purified preparation of RBCs, allowing a deep exploration of the classical RBC pathways as well as the identification of unexpected minor proteins. In addition, we were able to detect the presence of eight different hemoglobin chains including embryonic and newly discovered globin chains. Thus, this extensive study provides a huge data set of proteins that are present in the RBC cytoplasm that may help to better understand the biology of this simplified cell and may open the way to further studies on blood pathologies using targeted approaches.
红细胞胞质蛋白质组由98%的血红蛋白组成;其余2%在很大程度上尚未被探索。在此,我们使用六聚体肽的组合文库作为捕获剂,以降低血红蛋白的信号,并放大人类红细胞(RBC)细胞质中低丰度至极低丰度蛋白质的信号。采用了两种类型的六肽文库磁珠:氨基末端六肽磁珠和肽经羧化进一步衍生化的磁珠。二维凝胶图谱和纳米液相色谱-串联质谱分析充分证明了低丰度信号的放大和高丰度物种信号的抑制。还探索了这种新方法对定量信息的影响。此外,在LTQ-Orbitrap质谱仪上使用这种方法,我们能够高度自信地鉴定出高纯度RBC制剂细胞质部分中的多达1578种蛋白质,从而深入探索经典的RBC途径以及鉴定意外的次要蛋白质。此外,我们能够检测到包括胚胎型和新发现的珠蛋白链在内的八种不同血红蛋白链的存在。因此,这项广泛的研究提供了一个存在于RBC细胞质中的庞大蛋白质数据集,这可能有助于更好地理解这种简化细胞的生物学特性,并可能为使用靶向方法进一步研究血液病理学开辟道路。