Graduate School of Genome Science & Technology, University of Tennessee, Knoxville, Tennessee 37830, USA.
J Proteome Res. 2010 May 7;9(5):2148-59. doi: 10.1021/pr900877a.
An integrated computational/experimental approach was used to predict and identify signal peptide cleavages among microbial proteins of environmental biofilm communities growing in acid mine drainage (AMD). SignalP-3.0 was employed to computationally query the AMD protein database of >16,000 proteins, which resulted in 1,480 predicted signal peptide cleaved proteins. LC-MS/MS analyses of extracellular (secretome) microbial preparations from different locations and developmental states empirically confirmed 531 of these signal peptide cleaved proteins. The majority of signal-cleavage proteins (58.4%) are annotated to have unknown functions; however, Pfam domain analysis revealed that many may be involved in extracellular functions expected within the AMD system. Examination of the abundances of signal-cleaved proteins across 28 proteomes from biofilms collected over a 4-year period demonstrated a strong correlation with the developmental state of the biofilm. For example, class I cytochromes are abundant in early growth states, whereas cytochrome oxidases from the same organism increase in abundance later in development. These results likely reflect shifts in metabolism that occur as biofilms thicken and communities diversify. In total, these results provide experimental confirmation of proteins that are designed to function in the extreme acidic extracellular environment and will serve as targets for future biochemical analysis.
采用集成的计算/实验方法来预测和识别在酸性矿山排水(AMD)中生长的环境生物膜群落中微生物蛋白质的信号肽切割。使用 SignalP-3.0 对超过 16000 种蛋白质的 AMD 蛋白质数据库进行了计算查询,结果预测出 1480 种预测的信号肽切割蛋白。对来自不同位置和发育状态的细胞外(分泌组)微生物制剂的 LC-MS/MS 分析从经验上证实了其中的 531 种信号肽切割蛋白。大多数信号切割蛋白(58.4%)被注释为具有未知功能;但是,Pfam 结构域分析表明,许多可能参与 AMD 系统中预期的细胞外功能。对 4 年来收集的生物膜中 28 个蛋白质组中信号切割蛋白的丰度进行的检查表明,与生物膜的发育状态之间存在很强的相关性。例如,I 类细胞色素在早期生长状态下丰富,而同一生物体的细胞色素氧化酶在发育后期的丰度增加。这些结果可能反映了随着生物膜变厚和群落多样化而发生的代谢变化。总的来说,这些结果为旨在在极端酸性细胞外环境中发挥作用的蛋白质提供了实验证实,并将成为未来生化分析的目标。