Li Shunyi, Yang Wei, Maniccia Anna W, Barrow Doyle, Tjong Harianto, Zhou Huan-Xiang, Yang Jenny J
Department of Chemistry, Center of Drug Design and Biotechnology, Georgia State University, Atlanta, GA, USA.
FEBS J. 2008 Oct;275(20):5048-61. doi: 10.1111/j.1742-4658.2008.06638.x. Epub 2008 Sep 10.
Ca2+, as a messenger of signal transduction, regulates numerous target molecules via Ca2+-induced conformational changes. Investigation into the determinants for Ca2+-induced conformational change is often impeded by cooperativity between multiple metal-binding sites or protein oligomerization in naturally occurring proteins. To dissect the relative contributions of key determinants for Ca2+-dependent conformational changes, we report the design of a single-site Ca2+-binding protein (CD2.trigger) created by altering charged residues at an electrostatically sensitive location on the surface of the host protein rat Cluster of Differentiation 2 (CD2).CD2.trigger binds to Tb3+ and Ca2+ with dissociation constants of 0.3 +/- 0.1 and 90 +/- 25 microM, respectively. This protein is largely unfolded in the absence of metal ions at physiological pH, but Tb3+ or Ca2+ binding results in folding of the native-like conformation. Neutralization of the charged coordination residues, either by mutation or protonation, similarly induces folding of the protein. The control of a major conformational change by a single Ca2+ ion, achieved on a protein designed without reliance on sequence similarity to known Ca2+-dependent proteins and coupled metal-binding sites, represents an important step in the design of trigger proteins.
钙离子作为信号转导的信使,通过钙离子诱导的构象变化来调节众多靶分子。对钙离子诱导构象变化的决定因素的研究常常受到天然蛋白质中多个金属结合位点之间的协同作用或蛋白质寡聚化的阻碍。为了剖析钙离子依赖性构象变化关键决定因素的相对贡献,我们报告了一种单位点钙离子结合蛋白(CD2.trigger)的设计,该蛋白是通过改变宿主蛋白大鼠分化簇2(CD2)表面静电敏感位置的带电残基而创建的。CD2.trigger分别以0.3±0.1和90±25微摩尔的解离常数与铽离子(Tb3+)和钙离子(Ca2+)结合。在生理pH值下,该蛋白在没有金属离子时基本处于未折叠状态,但Tb3+或Ca2+结合会导致类似天然构象的折叠。通过突变或质子化使带电配位残基中和,同样会诱导蛋白质折叠。在不依赖于与已知钙离子依赖性蛋白的序列相似性和耦合金属结合位点而设计的蛋白质上,实现了由单个钙离子控制主要构象变化,这代表了触发蛋白设计中的重要一步。