Elias Dwayne A, Monroe Matthew E, Marshall Matthew J, Romine Margaret F, Belieav Alexander S, Fredrickson James K, Anderson Gordon A, Smith Richard D, Lipton Mary S
Biological Sciences Division, Pacific Northwest National Laboratory, Richland, WA 99352, USA.
Proteomics. 2005 Aug;5(12):3120-30. doi: 10.1002/pmic.200401140.
The availability of whole genome sequences has enabled the application of powerful tools for assaying global expression patterns in environmentally relevant bacteria such as Shewanella oneidensis MR-1. A large number of genes in prokaryote genomes, including MR-1, have been annotated as hypothetical, indicating that no similar protein has yet been identified in other organisms. Using high-sensitivity MS coupled with accurate mass and time (AMT) tag methodology, 1078 tryptic peptides were collectively detected in MR-1 cultures, 671 of which were unique to their parent protein. Using only these unique tryptic peptides and a minimum of two peptides per protein, we identified, with high confidence, the expression of 258 hypothetical proteins. These proteins ranged from 3.5 to 139 kDa, with 47 being 100 amino acid residues or less. Using a combination of information including detection in cells grown under specific culture conditions, presence within a specific cell fraction, and predictive algorithms such as PSORT and PSORT-B, possible/plausible functions are proposed for some hypothetical proteins. Further, by applying this approach a number of proteins were found not only to be expressed, but only expressed under certain culturing conditions, thereby suggesting function while at the same time isolating several proteins to distinct locales of the cell. These results demonstrate the utility of the AMT tag methodology for comprehensive profiling of the microbial proteome while confirming the expression of a large number of hypothetical genes.
全基因组序列的可得性使得在诸如嗜冷栖热袍菌MR-1等与环境相关的细菌中应用强大的工具来测定全局表达模式成为可能。包括MR-1在内的原核生物基因组中的大量基因已被注释为假设性基因,这表明在其他生物体中尚未鉴定出类似的蛋白质。使用高灵敏度质谱联用精确质量和时间(AMT)标签方法,在MR-1培养物中总共检测到1078个胰蛋白酶肽段,其中671个是其亲本蛋白质所特有的。仅使用这些独特的胰蛋白酶肽段且每个蛋白质至少使用两个肽段,我们高置信度地鉴定出258个假设性蛋白质的表达。这些蛋白质的分子量范围为3.5至139 kDa,其中47个蛋白质的氨基酸残基为100个或更少。结合包括在特定培养条件下生长的细胞中的检测、特定细胞组分中的存在以及诸如PSORT和PSORT-B等预测算法等信息,为一些假设性蛋白质提出了可能/合理的功能。此外,通过应用这种方法发现许多蛋白质不仅被表达,而且仅在某些培养条件下被表达,从而暗示了其功能,同时将几种蛋白质分离到细胞的不同区域。这些结果证明了AMT标签方法在微生物蛋白质组全面分析中的实用性,同时证实了大量假设性基因的表达。