Senzel Lisa, Gnatenko Dmitri V, Bahou Wadie F
Department of Pathology, State University of New York, Stony Brook, New York, USA.
Semin Thromb Hemost. 2008 Sep;34(6):532-8. doi: 10.1055/s-0028-1103364. Epub 2008 Nov 28.
The transcriptome is the mRNA pool found within a cell. Transcriptomic discovery approaches include microarray-based technologies as well as sequencing-based technologies. Transcriptomic experiments provide dynamic information about gene expression at the tissue level. The proteome is the pool of proteins expressed at a given time and circumstance. The word PROTEOMICS summarizes several technologies for visualization, quantitation, and identification of these proteins. Protein separation can be accomplished by two-dimensional electrophoresis, use of protein chips with an affinity matrix, or by a variety of advanced chromatographic methods. Mass spectrometry is used to identify the proteins in conjunction with protein sequence databases. Recent proteomic experiments in resting and activated platelets have identified novel signaling pathways and secreted proteins. Platelet transcriptomic studies in essential thrombocythemia, atherosclerotic disease, sickle cell disease, and an inherited platelet defect are reviewed. Transcript profiling has the potential to distinguish molecular signatures in normal and diseased platelets and to classify prothrombotic patient phenotypes to tailor their therapy.
转录组是细胞内的信使核糖核酸(mRNA)库。转录组发现方法包括基于微阵列的技术以及基于测序的技术。转录组实验提供了组织水平上基因表达的动态信息。蛋白质组是在给定时间和环境下表达的蛋白质库。“蛋白质组学”一词概括了用于这些蛋白质可视化、定量和鉴定的多种技术。蛋白质分离可通过二维电泳、使用带有亲和基质的蛋白质芯片或多种先进的色谱方法来完成。质谱法与蛋白质序列数据库结合用于鉴定蛋白质。最近在静息和活化血小板中的蛋白质组学实验已经鉴定出了新的信号通路和分泌蛋白。本文综述了原发性血小板增多症、动脉粥样硬化疾病、镰状细胞病和遗传性血小板缺陷中的血小板转录组研究。转录谱分析有潜力区分正常和患病血小板中的分子特征,并对血栓前状态患者的表型进行分类,以便为其量身定制治疗方案。