Ewart K V, Li Z, Yang D S, Fletcher G L, Hew C L
Research Institute, Hospital for Sick Children, Toronto, Ontario, Canada.
Biochemistry. 1998 Mar 24;37(12):4080-5. doi: 10.1021/bi972503w.
The type II antifreeze proteins (AFPs) of smelt and Atlantic herring are homologous to the carbohydrate-recognition domains (CRDs) of Ca2+-dependent (C-type) animal lectins and, like these lectins, acquire a stable and active structure upon binding Ca2+ ions. In the C-type lectin CRD, the carbohydrate-binding site is located at a Ca2+-binding site. Site-directed mutagenesis was used to test the hypothesis that the ice-binding site of the type II AFP corresponds to the carbohydrate-binding site of the lectins. To disrupt this site in the herring AFP without perturbing the Ca2+-dependent protein fold, a double mutant was constructed that changed the Ca2+- and carbohydrate-binding motif from the galactose-type of wild-type AFP containing the sequence Gln-Pro-Asp to a mannose-type that has the sequence Glu-Pro-Asn and is also known to bind Ca2+. The mutant AFP exhibited proper Ca2+ binding, folding, and stability as demonstrated by ruthenium red staining, proteolysis protection assays, and CD spectroscopy. However, it showed no antifreeze activity (thermal hysteresis) and did not alter ice crystal morphology to form bipyramidal crystals as does the active wild-type AFP. These results demonstrate that the ice-binding site of the herring type II AFP corresponds to the carbohydrate-binding site of the C-type lectin CRDs and further suggest that this ice-binding function evolved from the carbohydrate-binding site of a preexisting C-type lectin.
胡瓜鱼和大西洋鲱鱼的II型抗冻蛋白(AFP)与Ca2+依赖性(C型)动物凝集素的碳水化合物识别结构域(CRD)同源,并且与这些凝集素一样,在结合Ca2+离子后获得稳定且有活性的结构。在C型凝集素CRD中,碳水化合物结合位点位于一个Ca2+结合位点处。采用定点诱变来检验II型AFP的冰结合位点与凝集素的碳水化合物结合位点相对应这一假说。为了在不干扰Ca2+依赖性蛋白折叠的情况下破坏鲱鱼AFP中的该位点,构建了一个双突变体,该突变体将野生型AFP中包含Gln-Pro-Asp序列的半乳糖型Ca2+和碳水化合物结合基序改变为具有Glu-Pro-Asn序列且也已知能结合Ca2+的甘露糖型。如钌红染色、蛋白水解保护试验和圆二色光谱所示,突变型AFP表现出适当的Ca2+结合、折叠和稳定性。然而,它没有显示出抗冻活性(热滞),并且不会像有活性的野生型AFP那样改变冰晶形态以形成双锥体晶体。这些结果表明,鲱鱼II型AFP的冰结合位点与C型凝集素CRD的碳水化合物结合位点相对应,并进一步表明这种冰结合功能是从先前存在的C型凝集素的碳水化合物结合位点进化而来的。