Lewandrowski Urs, Wortelkamp Stefanie, Lohrig Katharina, Zahedi René P, Wolters Dirk A, Walter Ulrich, Sickmann Albert
Institute for Analytical Sciences (ISAS), Dortmund, Germany.
Blood. 2009 Jul 2;114(1):e10-9. doi: 10.1182/blood-2009-02-203828. Epub 2009 May 12.
Being central players in thrombosis and hemostasis, platelets react in manifold and complex ways to extracellular stimuli. Cell-matrix and cell-cell interactions are mandatory for initial adhesion as well as for final development of stable plugs. Primary interfaces for interactions are plasma membrane proteins, of which many have been identified over the past decades in individual studies. However, due to their enucleate structure, platelets are not accessible to large-scale genomic screens and thus a comprehensive inventory of membrane proteins is still missing. For this reason, we here present an advanced proteomic setup for the detailed analysis of enriched platelet plasma membranes and the so far most complete collection of platelet membrane proteins. In summary, 1282 proteins were identified, of which more than half are termed to be of membrane origin. This study provides a brief overview of gene ontology subcellular and functional classification, as well as interaction network analysis. In addition, the mass spectrometric data were used to assemble a first tentative relative quantification of large-scale data on the protein level. We therefore estimate the presented data to be of major interest to the platelet research field and to support rational design of functional studies.
作为血栓形成和止血过程中的核心参与者,血小板对细胞外刺激会产生多种复杂的反应。细胞与基质以及细胞与细胞之间的相互作用对于初始黏附以及稳定血栓的最终形成至关重要。相互作用的主要界面是质膜蛋白,在过去几十年的个别研究中已鉴定出许多此类蛋白。然而,由于血小板无细胞核的结构,无法进行大规模基因组筛选,因此仍缺少膜蛋白的全面清单。出于这个原因,我们在此展示一种先进的蛋白质组学方法,用于详细分析富集的血小板质膜以及迄今为止最完整的血小板膜蛋白集合。总之,共鉴定出1282种蛋白质,其中一半以上被认为是膜来源的。本研究简要概述了基因本体亚细胞和功能分类以及相互作用网络分析。此外,质谱数据被用于初步构建蛋白质水平上大规模数据的相对定量。因此,我们估计所呈现的数据对血小板研究领域具有重要意义,并有助于功能研究的合理设计。