Center for Integrated Protein Science Munich (CIPSM), Department of Chemistry, Technical University of Munich, Garching, Germany.
Department of Biochemistry and Signal Transduction, University Medical Center Hamburg-Eppendorf (UKE), Hamburg, Germany.
Nat Chem. 2020 Aug;12(8):732-739. doi: 10.1038/s41557-020-0484-6. Epub 2020 Jul 6.
Various pathogenic bacteria use post-translational modifications to manipulate the central components of host cell functions. Many of the enzymes released by these bacteria belong to the large Fic family, which modify targets with nucleotide monophosphates. The lack of a generic method for identifying the cellular targets of Fic family enzymes hinders investigation of their role and the effect of the post-translational modification. Here, we establish an approach that uses reactive co-substrate-linked enzymes for proteome profiling. We combine synthetic thiol-reactive nucleotide derivatives with recombinantly produced Fic enzymes containing strategically placed cysteines in their active sites to yield reactive binary probes for covalent substrate capture. The binary complexes capture their targets from cell lysates and permit subsequent identification. Furthermore, we determined the structures of low-affinity ternary enzyme-nucleotide-substrate complexes by applying a covalent-linking strategy. This approach thus allows target identification of the Fic enzymes from both bacteria and eukarya.
各种病原细菌利用翻译后修饰来操纵宿主细胞功能的核心成分。这些细菌释放的许多酶属于大型 Fic 家族,它们用核苷酸单磷酸修饰靶标。缺乏一种通用的方法来识别 Fic 家族酶的细胞靶标,这阻碍了对其作用和翻译后修饰的影响的研究。在这里,我们建立了一种使用反应性共底物连接酶进行蛋白质组分析的方法。我们将合成的巯基反应性核苷酸衍生物与在其活性位点中含有策略性放置的半胱氨酸的重组产生的 Fic 酶结合,得到用于共价底物捕获的反应性二元探针。二元复合物从细胞裂解物中捕获它们的靶标,并允许随后进行鉴定。此外,我们通过应用共价连接策略确定了低亲和力的三元酶-核苷酸-底物复合物的结构。因此,这种方法允许从细菌和真核生物中鉴定 Fic 酶的靶标。