Centre of Biomedical Magnetic Resonance, SGPGIMS Campus, Raebareli Road, Lucknow 226014, India.
Anal Chem. 2012 May 1;84(9):4063-70. doi: 10.1021/ac300096j. Epub 2012 Apr 11.
We present a method for the qualitative and quantitative study of transient metabolic flux of phage infection at the molecular level. The method is based on statistical total correlation spectroscopy (STOCSY) and partial least squares discriminant analysis (PLS-DA) applied to nuclear magnetic resonance (NMR) metabonomic data sets. An algorithm for this type of study is developed and demonstrated. The method has been implemented on (1)H NMR data sets of growth media in planktonic cultures of Pseudomonas aeruginosa infected with bacteriophage pf1. Transient metabolic flux of various important metabolites, identified by STOCSY and PLS-DA analysis applied to the NMR data set, are estimated at various stages of growth. The opportunistic and nosocomial pathogen P. aeruginosa is one of the best-studied model organism for bacterial biofilms. Complete information regarding metabolic connectivity of this system is not possible by conventional spectroscopic approach. Our study presents temporal comparative (1)H NMR metabonomic analyses of filamentous phage pf1 infection in planktonic cultures of P. aeruginosa K strain (PAK). We exemplify here the potential of STOCSY and PLS-DA tools to gain mechanistic insight into subtle changes and to determine the transient flux associated with metabolites following metabolic perturbations resulting from phage infection. Our study has given new avenues in correlating existing postgenomic data with current metabonomic results in P. aeruginosa biofilms research.
我们提出了一种方法,用于在分子水平上定性和定量研究噬菌体感染的瞬态代谢通量。该方法基于统计全相关谱(STOCSY)和偏最小二乘判别分析(PLS-DA)应用于核磁共振(NMR)代谢组学数据集。开发并演示了这种类型的研究算法。该方法已应用于(1)H NMR 数据集浮游培养的铜绿假单胞菌感染噬菌体 pf1 的生长培养基。通过 STOCSY 和 PLS-DA 分析应用于 NMR 数据集,估计了各种重要代谢物的瞬态代谢通量在不同生长阶段。机会性病原体铜绿假单胞菌是研究最深入的细菌生物膜模型生物之一。通过传统光谱方法不可能获得该系统代谢连接的完整信息。我们的研究对铜绿假单胞菌 K 株(PAK)浮游培养物中丝状噬菌体 pf1 感染的(1)H NMR 代谢组学进行了时间比较分析。我们在这里举例说明了 STOCSY 和 PLS-DA 工具的潜力,以深入了解细微变化,并确定与代谢物相关的瞬态通量,这些变化是由噬菌体感染导致的代谢扰动引起的。我们的研究为将现有的后基因组数据与铜绿假单胞菌生物膜研究中的当前代谢组学结果相关联提供了新途径。