Gupta Arun A, Chou Ruey-Hwang, Li Hongchun, Yang Lee-Wei, Yu Chin
Department of Chemistry, National Tsing Hua University, Hsinchu, Taiwan.
Biochim Biophys Acta. 2013 Dec;1834(12):2606-19. doi: 10.1016/j.bbapap.2013.09.012. Epub 2013 Sep 22.
S100B is a calcium sensing protein belonging to the S100 protein family with intracellular and extracellular roles. It is one of the EF hand homodimeric proteins, which is known to interact with various protein targets to regulate varied biological functions. Extracellular S100B has been recently reported to interact with FGF2 in a RAGE-independent manner. However, the recognition mechanism of S100B-FGF2 interaction at the molecular level remains unclear. In this study, the critical residues on S100B-FGF2 interface were mapped by combined information derived from NMR spectroscopy and site directed mutagenesis experiments. Utilizing NMR titration data, we generated the structural models of S100B-FGF2 complex from the computational docking program, HADDOCK which were further proved stable during 15ns unrestrained molecular dynamics (MD) simulations. Isothermal titration calorimetry studies indicated S100B interaction with FGF2 is an entropically favored process implying dominant role of hydrophobic contacts at the protein-protein interface. Residue level information of S100B interaction with FGF2 was useful to understand the varied target recognition ability of S100B and further explained its role in effecting extracellular signaling diversity. Mechanistic insights into the S100B-FGF2 complex interface and cell-based assay studies involving mutants led us to conclude the novel role of S100B in FGF2 mediated FGFR1 receptor inactivation.
S100B是一种钙传感蛋白,属于S100蛋白家族,在细胞内和细胞外均发挥作用。它是EF手型同源二聚体蛋白之一,已知能与多种蛋白质靶点相互作用,以调节多种生物学功能。最近有报道称,细胞外的S100B能以不依赖RAGE的方式与FGF2相互作用。然而,S100B与FGF2相互作用在分子水平上的识别机制仍不清楚。在本研究中,通过结合核磁共振光谱和定点诱变实验获得的信息,绘制了S100B - FGF2界面上的关键残基。利用核磁共振滴定数据,我们从计算对接程序HADDOCK生成了S100B - FGF2复合物的结构模型,该模型在15纳秒的无约束分子动力学(MD)模拟中进一步证明是稳定的。等温滴定量热法研究表明,S100B与FGF2的相互作用是一个熵有利的过程,这意味着蛋白质 - 蛋白质界面上疏水接触起主导作用。S100B与FGF2相互作用的残基水平信息有助于理解S100B不同的靶标识别能力,并进一步解释其在影响细胞外信号多样性中的作用。对S100B - FGF2复合物界面的机制性见解以及涉及突变体的基于细胞的测定研究使我们得出结论,S100B在FGF2介导的FGFR1受体失活中具有新作用。