Botelho Hugo M, Koch Michael, Fritz Günter, Gomes Cláudio M
Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Portugal.
FEBS J. 2009 Mar;276(6):1776-86. doi: 10.1111/j.1742-4658.2009.06912.x.
The EF-hand protein S100A2 is a cell cycle regulator involved in tumorigenesis, acting through regulation of the p53 activation state. Metal ion-free S100A2 is homodimeric and contains two Ca(2+)-binding sites and two Zn(2+)-binding sites per subunit, whereby the Zn(2+) ion binding to one of the sites is coordinated by residues from two homodimers. The effect of selective binding of these metal ions was investigated using site-specific mutants which lacked one or both zinc sites. CD analysis of secondary structure changes on metallation showed that Zn(2+) binding was associated with a decrease in the secondary structure content, whereas Ca(2+) had the opposite effect in two of the three S100A2 mutants studied. The energy of unfolding (DeltaG(U)) of the apo wild-type S100A2 was determined to be 89.9 kJ mol(-1), and the apparent midpoint transition temperature (T(m)(app))) was 58.4 degrees C. In addition, a detailed study of the urea and thermal unfolding of the S100A2 mutants in different metallation states (apo, Zn(2+) and Ca(2+)) was performed. Thermal denaturation experiments showed that Zn(2+) acts as a destabilizer and Ca(2+) as a stabilizer of the protein conformation. This suggests a synergistic effect between metal binding, protein stability and S100A2 biological activity, according to which Ca(2+) activates and stabilizes the protein, the opposite being observed on Zn(2+) binding.
EF 手型蛋白 S100A2 是一种参与肿瘤发生的细胞周期调节因子,通过调节 p53 的激活状态发挥作用。无金属离子的 S100A2 是同二聚体,每个亚基包含两个 Ca(2+)结合位点和两个 Zn(2+)结合位点,其中一个位点上的 Zn(2+)离子结合由来自两个同二聚体的残基配位。使用缺少一个或两个锌位点的位点特异性突变体研究了这些金属离子选择性结合的影响。对金属化时二级结构变化的 CD 分析表明,Zn(2+)结合与二级结构含量的降低有关,而在所研究的三个 S100A2 突变体中的两个中,Ca(2+)具有相反的作用。无载脂蛋白野生型 S100A2 的解折叠能(ΔG(U))测定为 89.9 kJ mol(-1),表观中点转变温度(T(m)(app))为 58.4℃。此外,还对处于不同金属化状态(无载脂蛋白、Zn(2+)和 Ca(2+))的 S100A2 突变体的尿素和热解折叠进行了详细研究。热变性实验表明,Zn(2+)作为蛋白质构象的去稳定剂,而 Ca(2+)作为稳定剂。这表明金属结合、蛋白质稳定性和 S100A2 生物活性之间存在协同效应,据此 Ca(2+)激活并稳定蛋白质,而 Zn(2+)结合时则观察到相反的情况。