Beranova-Giorgianni Sarka, Zhao Yingxin, Desiderio Dominic M, Giorgianni Francesco
Charles B. Stout Neuroscience Mass Spectrometry Laboratory, The University of Tennessee Health Science Center, Memphis, TN 38163, USA.
Pituitary. 2006;9(2):109-20. doi: 10.1007/s11102-006-8916-x.
The pituitary is the central endocrine gland that regulates the functions of various target organs in the human body. Because of the pivotal regulatory role of the pituitary, it is essential to define on a global scale the components of the pituitary protein machinery, including a comprehensive characterization of the post-translational modifications of the pituitary proteins. Of particular interest is the examination of the phosphorylation status of the pituitary in health and disease. Towards the goal of global profiling of pituitary protein phosphorylation, we report here the application of the in-gel IEF-LC-MS/MS approach to the study of the pituitary phosphoproteome. The analytical strategy combined isoelectric focusing in immobilized pH gradient strips with immobilized metal ion affinity chromatography and mass spectrometry. With this method, a total of 50 phosphorylation sites were characterized in 26 proteins. Because the investigation involved primary tissue, the findings provide a direct glimpse into the phosphoprotein machinery operating within the human pituitary tissue microenvironment.
垂体是调节人体各种靶器官功能的中央内分泌腺。由于垂体具有关键的调节作用,在全球范围内确定垂体蛋白质机制的组成部分至关重要,包括对垂体蛋白翻译后修饰的全面表征。特别值得关注的是对健康和疾病状态下垂体磷酸化状态的检测。为了实现垂体蛋白磷酸化的全球分析这一目标,我们在此报告了凝胶内IEF-LC-MS/MS方法在垂体磷酸蛋白质组研究中的应用。所采用的分析策略是将固定pH梯度条中的等电聚焦与固定金属离子亲和色谱和质谱相结合。通过这种方法,在26种蛋白质中总共鉴定出50个磷酸化位点。由于该研究涉及原发性组织,这些发现使我们能够直接了解在人垂体组织微环境中运作的磷蛋白机制。