Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences, School of Basic Medicine, Peking Union Medical College, Beijing 100005, China.
J Proteome Res. 2017 Aug 4;16(8):2680-2691. doi: 10.1021/acs.jproteome.6b00914. Epub 2017 Jul 12.
Knowledge about human tissue proteome will provide insights into health organ physiology. To construct a comprehensive data set of human pituitary and thyroid proteins, post-mortem pituitaries and thyroids from 10 normal individuals were used. The pooled samples were prepared using two methods. One part of the sample was processed using 14 high-abundance proteins immunoaffinity column. The other part was directly subjected to digestion. Finally, a total of 7596 proteins in pituitary and 5602 proteins in thyroid with high confidence were identified, with 6623 and 4368 quantified, respectively. A total of 5781 of pituitary and 3178 of thyroid proteins have not been previously reported in the normal pituitary and thyroid proteome. Comparison of pituitary and thyroid proteome indicated that thyroid prefers to be involved in nerve system regeneration and metabolic regulation, while pituitary mainly performs functions of signal transduction and cancer modulation. Our results, for the first time, comprehensively profiled and functionally annotated the largest high-confidence data set of proteome of two important endocrine glands, pituitary and thyroid, which is important for further studies on biomarker identification and molecular mechanisms of pituitary and thyroid disorders. The mapping results can be freely downloaded at http://www.urimarker.com/pituitary/ and http://www.urimarker.com/thyroid/ . The raw data are available via ProteomeXchange with identifier PXD006471.
人类组织蛋白质组学知识将为了解健康器官生理学提供深入的见解。为了构建全面的人类垂体和甲状腺蛋白质数据集,使用了 10 个正常个体的死后垂体和甲状腺。将 pooled samples 用两种方法进行处理。一部分样品使用 14 种高丰度蛋白质免疫亲和柱进行处理。另一部分则直接进行消化。最终,在垂体中鉴定出了 7596 种高可信度的蛋白质,在甲状腺中鉴定出了 5602 种高可信度的蛋白质,分别有 6623 和 4368 种进行了定量分析。共有 5781 种垂体蛋白和 3178 种甲状腺蛋白以前未在正常垂体和甲状腺蛋白质组中报道过。垂体和甲状腺蛋白质组的比较表明,甲状腺更倾向于参与神经系统再生和代谢调节,而垂体主要执行信号转导和癌症调节功能。我们的结果首次全面描述和功能注释了两个重要内分泌腺——垂体和甲状腺的最大高可信度蛋白质组数据集,这对于进一步研究垂体和甲状腺疾病的生物标志物鉴定和分子机制非常重要。映射结果可以在 http://www.urimarker.com/pituitary/ 和 http://www.urimarker.com/thyroid/ 上免费下载。原始数据可通过 ProteomeXchange 标识符 PXD006471 获取。