Peng Hong, Liu Miao, Pecka Jason, Beisel Kirk W, Ding Shi-Jian
Department of Pathology and Microbiology, University of Nebraska Medical Center, Omaha, NE 68198, USA.
Department of Environmental, Agricultural & Occupational Health, University of Nebraska Medical Center, Omaha, NE 68198, USA.
Int J Mol Sci. 2012;13(7):8171-8188. doi: 10.3390/ijms13078171. Epub 2012 Jul 2.
The organ of Corti (OC) in the cochlea plays an essential role in auditory signal transduction in the inner ear. For its minute size and trace amount of proteins, the identification of the molecules in pathophysiologic processes in the bone-encapsulated OC requires both delicate separation and a highly sensitive analytical tool. Previously, we reported the development of a high resolution metal-free nanoscale liquid chromatography system for highly sensitive phosphoproteomic analysis. Here this system was coupled with a LTQ-Orbitrap XL mass spectrometer to investigate the OC proteome from normal hearing FVB/N male mice. A total of 628 proteins were identified from six replicates of single LC-MS/MS analysis, with a false discovery rate of 1% using the decoy database approach by the OMSSA search engine. This is currently the largest proteome dataset for the OC. A total of 11 proteins, including cochlin, myosin VI, and myosin IX, were identified that when defective are associated with hearing impairment or loss. This study demonstrated the effectiveness of our nanoLC-MS/MS platform for sensitive identification of hearing loss-associated proteins from minute amount of tissue samples.
耳蜗中的柯蒂氏器(OC)在内耳听觉信号转导中起着至关重要的作用。由于其体积微小且蛋白质含量极少,要鉴定骨包被的OC病理生理过程中的分子,既需要精细的分离,也需要高灵敏度的分析工具。此前,我们报道了一种用于高灵敏度磷酸化蛋白质组分析的高分辨率无金属纳米级液相色谱系统的开发。在此,该系统与LTQ-Orbitrap XL质谱仪联用,以研究正常听力的FVB/N雄性小鼠的OC蛋白质组。通过OMSSA搜索引擎使用诱饵数据库方法进行单次LC-MS/MS分析的六个重复样本中,共鉴定出628种蛋白质,错误发现率为1%。这是目前关于OC的最大蛋白质组数据集。共鉴定出11种蛋白质,包括耳蜗蛋白、肌球蛋白VI和肌球蛋白IX,这些蛋白质发生缺陷时与听力障碍或丧失有关。本研究证明了我们的nanoLC-MS/MS平台从微量组织样本中灵敏鉴定听力损失相关蛋白质的有效性。