McCarthy Fiona M, Cooksey Amanda M, Wang Nan, Bridges Susan M, Pharr G Todd, Burgess Shane C
Department of Basic Science, College of Veterinary Medicine, Mississippi State University, Mississippi State, MS 39762-6100, USA.
Proteomics. 2006 May;6(9):2759-71. doi: 10.1002/pmic.200500648.
While advances in proteomics have improved proteome coverage and enhanced biological modeling, modeling function in multicellular organisms requires understanding how cells interact. Here we used the chicken bursa of Fabricius, a common experimental system for B cell function, to model organ function from proteomics data. The bursa has two major functional cell types: B cells and the supporting stromal cells. We used differential detergent fractionation-multidimensional protein identification technology (DDF-MudPIT) to identify 5198 proteins from all cellular compartments. Of these, 1753 were B cell specific, 1972 were stroma specific and 1473 were shared between the two. By modeling programmed cell death (PCD), cell differentiation and proliferation, and transcriptional activation, we have improved functional annotation of chicken proteins and placed chicken-specific death receptors into the PCD process using phylogenetics. We have identified 114 transcription factors (TFs); 42 of the bursal B cell TFs have not been reported before in any B cells. We have also improved the structural annotation of a newly sequenced genome by confirming the in vivo expression of 4006 "predicted", and 6623 ab initio, ORFs. Finally, we have developed a novel method for facilitating structural annotation, "expressed peptide sequence tags" (ePSTs) and demonstrate its utility by identifying 521 potential novel proteins from the chicken "unassigned chromosome".
虽然蛋白质组学的进展提高了蛋白质组覆盖率并增强了生物学建模,但对多细胞生物中的功能进行建模需要了解细胞间如何相互作用。在此,我们利用法氏囊这一常用于B细胞功能研究的实验系统,根据蛋白质组学数据对器官功能进行建模。法氏囊有两种主要功能细胞类型:B细胞和支持性基质细胞。我们采用差异去污剂分级分离-多维蛋白质鉴定技术(DDF-MudPIT)从所有细胞区室中鉴定出5198种蛋白质。其中,1753种是B细胞特异性的,1972种是基质特异性的,1473种是两者共有的。通过对程序性细胞死亡(PCD)、细胞分化与增殖以及转录激活进行建模,我们改进了鸡蛋白质的功能注释,并利用系统发育学将鸡特异性死亡受体纳入PCD过程。我们鉴定出114种转录因子(TFs);其中42种法氏囊B细胞TFs此前在任何B细胞中均未被报道过。我们还通过确认4006个“预测的”和6623个从头预测的开放阅读框(ORFs)的体内表达,改进了新测序基因组的结构注释。最后,我们开发了一种促进结构注释的新方法——“表达肽序列标签”(ePSTs),并通过从鸡“未分配染色体”中鉴定出521种潜在的新蛋白质来证明其效用。