Vetting Matthew W, Al-Obaidi Nawar, Zhao Suwen, San Francisco Brian, Kim Jungwook, Wichelecki Daniel J, Bouvier Jason T, Solbiati Jose O, Vu Hoan, Zhang Xinshuai, Rodionov Dmitry A, Love James D, Hillerich Brandan S, Seidel Ronald D, Quinn Ronald J, Osterman Andrei L, Cronan John E, Jacobson Matthew P, Gerlt John A, Almo Steven C
Department of Biochemistry, Albert Einstein College of Medicine , Bronx, New York 10461, United States.
Biochemistry. 2015 Jan 27;54(3):909-31. doi: 10.1021/bi501388y. Epub 2015 Jan 16.
The rate at which genome sequencing data is accruing demands enhanced methods for functional annotation and metabolism discovery. Solute binding proteins (SBPs) facilitate the transport of the first reactant in a metabolic pathway, thereby constraining the regions of chemical space and the chemistries that must be considered for pathway reconstruction. We describe high-throughput protein production and differential scanning fluorimetry platforms, which enabled the screening of 158 SBPs against a 189 component library specifically tailored for this class of proteins. Like all screening efforts, this approach is limited by the practical constraints imposed by construction of the library, i.e., we can study only those metabolites that are known to exist and which can be made in sufficient quantities for experimentation. To move beyond these inherent limitations, we illustrate the promise of crystallographic- and mass spectrometric-based approaches for the unbiased use of entire metabolomes as screening libraries. Together, our approaches identified 40 new SBP ligands, generated experiment-based annotations for 2084 SBPs in 71 isofunctional clusters, and defined numerous metabolic pathways, including novel catabolic pathways for the utilization of ethanolamine as sole nitrogen source and the use of d-Ala-d-Ala as sole carbon source. These efforts begin to define an integrated strategy for realizing the full value of amassing genome sequence data.
基因组测序数据的积累速度要求改进功能注释和代谢发现的方法。溶质结合蛋白(SBP)促进代谢途径中第一种反应物的运输,从而限制了化学空间区域以及途径重建时必须考虑的化学反应。我们描述了高通量蛋白质生产和差示扫描荧光法平台,这些平台能够针对专门为此类蛋白质量身定制的189种成分的文库筛选158种SBP。与所有筛选工作一样,这种方法受到文库构建所带来的实际限制,即我们只能研究那些已知存在且能够大量制备用于实验的代谢物。为了突破这些固有局限,我们展示了基于晶体学和质谱的方法将整个代谢组作为筛选文库进行无偏差使用的前景。我们的方法共同鉴定出40种新的SBP配体,为71个同功能簇中的2084种SBP生成了基于实验的注释,并定义了众多代谢途径,包括以乙醇胺作为唯一氮源和以d-Ala-d-Ala作为唯一碳源的新型分解代谢途径。这些努力开始为实现积累基因组序列数据的全部价值定义一种综合策略。