School of Pharmacy, Sungkyunkwan University, Suwon, 16419, Korea.
Department of Molecular Science and Technology, Ajou University, Suwon, Gyeonggi-do, 16499, Korea.
Exp Mol Med. 2018 Sep 5;50(9):1-14. doi: 10.1038/s12276-018-0141-y.
Streptococcus pneumoniae is a polysaccharide-encapsulated bacterium. The capsule thickens during blood invasion compared with the thinner capsules observed in asymptomatic nasopharyngeal colonization. However, the underlying mechanism regulating differential CPS expression remains unclear. CPS synthesis requires energy that is supplied by ATP. Previously, we demonstrated a correlation between ATP levels and adenylate kinase in S. pneumoniae (SpAdK). A dose-dependent induction of SpAdK in serum was also reported. To meet medical needs, this study aimed to elucidate the role of SpAdK in the regulation of CPS production. CPS levels in S. pneumoniae type 2 (D39) increased proportionally with SpAdK levels, but they were not related to pneumococcal autolysis. Moreover, increased SpAdK levels resulted in increased total tyrosine kinase Cps2D levels and phosphorylated Cps2D, which is a regulator of CPS synthesis in the D39 strain. Our results also indicated that the SpAdK and Cps2D proteins interact in the presence of Mg-ATP. In addition, in silico analysis uncovered the mechanism behind this protein-protein interaction, suggesting that SpAdK binds with the Cps2D dimer. This established the importance of the ATP-binding domain of Cps2D. Taken together, the biophysical interaction between SpAdK and Cps2D plays an important role in enhancing Cps2D phosphorylation, which results in increased CPS synthesis.
肺炎链球菌是一种多糖包裹的细菌。与无症状鼻咽定植时观察到的较薄荚膜相比,荚膜在血液入侵时会增厚。然而,调节差异 CPS 表达的潜在机制仍不清楚。CPS 的合成需要由 ATP 提供的能量。以前,我们证明了肺炎链球菌(SpAdK)中的 ATP 水平与腺苷酸激酶之间存在相关性。也有报道称血清中 SpAdK 呈剂量依赖性诱导。为满足医疗需求,本研究旨在阐明 SpAdK 在 CPS 生产调节中的作用。血清型 2 肺炎链球菌(D39)的 CPS 水平与 SpAdK 水平成正比增加,但与肺炎球菌自溶无关。此外,SpAdK 水平的增加导致总酪氨酸激酶 Cps2D 水平和磷酸化 Cps2D 的增加,Cps2D 是 D39 菌株中 CPS 合成的调节剂。我们的结果还表明,在存在 Mg-ATP 的情况下,SpAdK 和 Cps2D 蛋白相互作用。此外,计算机分析揭示了这种蛋白质-蛋白质相互作用背后的机制,表明 SpAdK 与 Cps2D 二聚体结合。这确立了 Cps2D 的 ATP 结合域的重要性。总之,SpAdK 和 Cps2D 之间的生物物理相互作用在增强 Cps2D 磷酸化方面起着重要作用,从而导致 CPS 合成增加。