Valente Maria, Timm Jennifer, Castillo-Acosta Víctor M, Ruiz-Pérez Luis M, Balzarini Tom, Nettleship Joanne E, Bird Louise E, Rada Heather, Wilson Keith S, González-Pacanowska Dolores
Instituto de Parasitología y Biomedicina "López-Neyra", Consejo Superior de Investigaciones Científicas, Granada, Spain.
York Structural Biology Laboratory, Department of Chemistry, University of York, York, YO10 5DD, UK.
Mol Microbiol. 2016 Nov;102(3):365-385. doi: 10.1111/mmi.13467. Epub 2016 Aug 31.
Thymidine kinase (TK) is a key enzyme in the pyrimidine salvage pathway which catalyzes the transfer of the γ-phosphate of ATP to 2'-deoxythymidine (dThd) forming thymidine monophosphate (dTMP). Unlike other type II TKs, the Trypanosoma brucei enzyme (TbTK) is a tandem protein with two TK homolog domains of which only the C-terminal one is active. In this study, we establish that TbTK is essential for parasite viability and cell cycle progression, independently of extracellular pyrimidine concentrations. We show that expression of TbTK is cell cycle regulated and that depletion of TbTK leads to strongly diminished dTTP pools and DNA damage indicating intracellular dThd to be an essential intermediate metabolite for the synthesis of thymine-derived nucleotides. In addition, we report the X-ray structure of the catalytically active domain of TbTK in complex with dThd and dTMP at resolutions up to 2.2 Å. In spite of the high conservation of the active site residues, the structures reveal a widened active site cavity near the nucleobase moiety compared to the human enzyme. Our findings strongly support TbTK as a crucial enzyme in dTTP homeostasis and identify structural differences within the active site that could be exploited in the process of rational drug design.
胸苷激酶(TK)是嘧啶补救途径中的关键酶,它催化将ATP的γ-磷酸基团转移至2'-脱氧胸苷(dThd),形成胸苷一磷酸(dTMP)。与其他II型TK不同,布氏锥虫的该酶(TbTK)是一种串联蛋白,具有两个TK同源结构域,其中只有C末端结构域具有活性。在本研究中,我们证实TbTK对于寄生虫的生存能力和细胞周期进程至关重要,且与细胞外嘧啶浓度无关。我们发现TbTK的表达受细胞周期调控,TbTK的缺失会导致dTTP库大幅减少和DNA损伤,这表明细胞内dThd是胸腺嘧啶衍生核苷酸合成的必需中间代谢物。此外,我们报告了TbTK催化活性结构域与dThd和dTMP复合物的X射线结构,分辨率高达2.2 Å。尽管活性位点残基高度保守,但与人类酶相比,这些结构显示在核碱基部分附近的活性位点腔更宽。我们的研究结果有力地支持了TbTK作为dTTP稳态中的关键酶,并确定了活性位点内的结构差异,这些差异可用于合理药物设计过程。