Ewart K V, Yang D S, Ananthanarayanan V S, Fletcher G L, Hew C L
Research Institute, Hospital for Sick Children, Toronto, Ontario, Canada M5G 1L5.
J Biol Chem. 1996 Jul 12;271(28):16627-32. doi: 10.1074/jbc.271.28.16627.
The antifreeze proteins (AFPs) are structurally diverse molecules that share an ability to bind to ice crystals and inhibit their growth. The type II fish AFPs of Atlantic herring and smelt are unique among known AFPs in their requirement of a cofactor for antifreeze activity. These AFPs are homologous with the carbohydrate-recognition domains of Ca2+-dependent (C-type) lectins and require Ca2+ for their activity. To investigate the role of metal ions in the structure and function of type II AFPs, the binding of Ca2+ and other divalent cations to herring AFP was investigated. Binding studies using 45Ca2+ demonstrated that the AFP has a single Ca2+-binding site with a Kd of 9 microM. Proteolysis protection studies and measurement of antifreeze activity revealed a conformational change from a protease-sensitive and inactive apoAFP to a protease-resistant active AFP upon Ca2+ binding. Other divalent metal ions including Mn2+, Ba2+, and Zn2+ bind at the Ca2+-binding site and induce a similar change. A saturatable increase in tryptophan emission intensity at 340 nm also occurred upon Ca2+ addition. Whereas antifreeze activity appeared normal when Ca2+ or Mn2+ were bound, it was much lower in the presence of other metal ions. When Ba2+ was bound to the AFP, ice crystals showed a distinct difference in morphology. These studies demonstrate that herring AFP specifically binds Ca2+ and, consequently, adopts a conformation that is essential for its ice-binding activity.
抗冻蛋白(AFPs)是结构多样的分子,它们具有结合冰晶并抑制其生长的能力。大西洋鲱鱼和胡瓜鱼的II型鱼类抗冻蛋白在已知的抗冻蛋白中独一无二,其抗冻活性需要一种辅助因子。这些抗冻蛋白与钙依赖性(C型)凝集素的碳水化合物识别结构域同源,并且其活性需要钙离子。为了研究金属离子在II型抗冻蛋白结构和功能中的作用,研究了钙离子和其他二价阳离子与鲱鱼抗冻蛋白的结合情况。使用45Ca2+进行的结合研究表明,抗冻蛋白有一个单一的钙离子结合位点,解离常数(Kd)为9微摩尔。蛋白水解保护研究和抗冻活性测量表明,钙离子结合后,抗冻蛋白从蛋白酶敏感且无活性的脱辅基抗冻蛋白转变为蛋白酶抗性的活性抗冻蛋白,发生了构象变化。包括锰离子、钡离子和锌离子在内的其他二价金属离子在钙离子结合位点结合并诱导类似的变化。添加钙离子后,340纳米处色氨酸发射强度也出现了可饱和的增加。当钙离子或锰离子结合时,抗冻活性看起来正常,但在其他金属离子存在的情况下,抗冻活性要低得多。当钡离子与抗冻蛋白结合时,冰晶的形态出现明显差异。这些研究表明,鲱鱼抗冻蛋白特异性结合钙离子,因此会采取一种对其冰结合活性至关重要的构象。