Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Sapporo 062-8517, Japan.
Phys Chem Chem Phys. 2018 Oct 10;20(39):25295-25303. doi: 10.1039/c8cp04727h.
Ice-binding proteins (IBPs) produced by cold-tolerant organisms interact with ice and strongly control crystal growth. The molecular basis for the different magnitudes of activity displayed by various IBPs (moderate and hyperactive) has not yet been clarified. Previous studies questioned whether the moderate activity of some IBPs relies on their weaker binding modus to the ice surface, compared to hyperactive IBPs, rather than relying on binding only to selected faces of the ice crystal. We present the structure of one moderate IBP from the sea-ice diatom Fragilariopsis cylindrus (fcIBP) as determined by X-ray crystallography and investigate the protein's binding modes to the growing ice-water interface using molecular dynamics simulations. The structure of fcIBP is the IBP-1 fold, defined by a discontinuous β-solenoid delimitated by three faces (A, B and C-faces) and braced by an α-helix. The fcIBP structure shows capping loops on both N- and C-terminal parts of the solenoid. We show that the protein adsorbs on both the prism and the basal faces of ice crystals, confirming experimental results. The fcIBP binds irreversibly to the prism face using the loop between the B and the C-faces, involving also the B-face in water immobilization despite its irregular structure. The α-helix attaches the protein to the basal face with a partly reversible modus. Our results suggest that fcIBP has a looser attachment to ice and that this weaker binding modus is the basis to explain the moderate activity of fcIBP.
冰结合蛋白(IBPs)由耐冷生物产生,与冰相互作用并强烈控制晶体生长。不同 IBPs(中等活性和高活性)表现出不同活性幅度的分子基础尚未阐明。先前的研究质疑某些中等活性 IBPs 的活性是否依赖于其与冰表面较弱的结合模式,而不是仅依赖于与冰晶的选定面结合。我们通过 X 射线晶体学确定了来自海冰硅藻 Fragilariopsis cylindrus(fcIBP)的一种中等 IBP 的结构,并使用分子动力学模拟研究了该蛋白与生长的冰-水界面的结合模式。fcIBP 的结构是 IBP-1 折叠,由不连续的β-螺线管界定,由三个面(A、B 和 C 面)和一个α-螺旋支撑。fcIBP 结构在螺线管的 N 和 C 末端都显示出盖帽环。我们表明,该蛋白吸附在冰晶的棱柱面和基面,这证实了实验结果。fcIBP 使用 B 面和 C 面之间的环不可逆地结合到棱柱面,尽管其结构不规则,但也涉及 B 面在水中的固定。α-螺旋以部分可逆的模式将蛋白质附着到基面。我们的结果表明,fcIBP 与冰的结合较松散,这种较弱的结合模式是解释 fcIBP 中等活性的基础。