Tasmanian Institute of Agricultural Research, School of Agricultural Science, University of Tasmania, College Road, Sandy Bay, 7005, Hobart, Tasmania, Australia.
Appl Microbiol Biotechnol. 2011 Apr;90(2):407-16. doi: 10.1007/s00253-011-3172-z. Epub 2011 Feb 25.
This review will examine the current situation with label-free, quantitative, shotgun-oriented proteomics technology and discuss the advantages and limitations associated with its capability in capturing and quantifying large portions of proteomes of microorganisms. Such an approach allows (1) comparisons between physiological or genetic states of organisms at the protein level, (2) 'painting' of proteomic data onto genome data-based metabolic maps, (3) enhancement of the utility of genomic data and finally (4) surveying of non-genome sequenced microorganisms by taking advantage of available inferred protein data in order to gain new insights into strain-dependent metabolic or physiological capacities. The technology essentially is a powerful addition to systems biology with a capacity to be used to ask hypothesis-driven 'top-down' questions or for more empirical 'bottom-up' exploration.
本文将审视无标记、定量、鸟枪法蛋白质组学技术的现状,并讨论其在捕获和定量微生物大量蛋白质组方面的能力的优缺点。这种方法允许:(1) 在蛋白质水平上比较生物体的生理或遗传状态,(2) 将蛋白质组数据“绘制”到基于基因组数据的代谢图谱上,(3) 增强基因组数据的实用性,最后(4) 通过利用现有可推断的蛋白质数据来调查未测序的微生物,从而深入了解与菌株相关的代谢或生理能力。该技术本质上是系统生物学的有力补充,具有用于提出假设驱动的“自上而下”问题的能力,或者用于更具经验性的“自下而上”探索。