University of Toronto, Department of Medical Biophysics, Toronto, Ontario, Canada; Princess Margaret Cancer Center, Toronto, Ontario, Canada.
Princess Margaret Cancer Center, Toronto, Ontario, Canada.
Biochem Biophys Res Commun. 2014 Mar 21;445(4):694-701. doi: 10.1016/j.bbrc.2013.12.070. Epub 2014 Jan 14.
Molecular communication between cancer cells and its stromal microenvironment is a key factor for cancer progression. Alongside classic secretory pathways, it has recently been proposed that small membranous vesicles are alternative mediators of intercellular communication. Exosomes carry an effector-rich proteome with the ability to modulate various functional properties of the recipient cell. In this study, exosomes isolated from four epithelial ovarian cancer cell lines (OVCAR3, OVCAR433, OVCAR5 and SKOV3) were characterized using mass spectrometry-based proteomics. Using an optimized workflow consisting of efficient exosome solubilization and the latest generation of proteomic instrumentation, we demonstrate improved detection depth. Systematic comparison of our cancer cell line exosome proteome against public data (Exocarta) and the recently published NCI 60 proteome revealed enrichment of functional categories related to signaling biology and biomarker discovery.
癌细胞与其基质微环境之间的分子通讯是癌症进展的关键因素。除了经典的分泌途径外,最近有人提出小膜囊泡是细胞间通讯的另一种介质。外泌体携带富含效应物的蛋白质组,能够调节受体细胞的各种功能特性。在这项研究中,使用基于质谱的蛋白质组学方法对来自四种上皮性卵巢癌细胞系(OVCAR3、OVCAR433、OVCAR5 和 SKOV3)的外泌体进行了表征。使用包含高效外泌体溶解和最新一代蛋白质组学仪器的优化工作流程,我们证明了检测深度的提高。将我们的癌细胞系外泌体蛋白质组与公共数据(Exocarta)和最近发表的 NCI 60 蛋白质组进行系统比较,揭示了与信号生物学和生物标志物发现相关的功能类别富集。