Schrag J D, O'Grady S M, DeVries A L
Biochim Biophys Acta. 1982 Aug 6;717(2):322-6. doi: 10.1016/0304-4165(82)90186-6.
Many polar fishes synthesize a group of eight glycopeptides that exhibit a non-colligative lowering of the freezing point of water. These glycopeptides range in molecular weight between 2600 and 33 700. The largest glycopeptides [1-5] lower the freezing point more than the small ones on a weight basis and contain only two amino acids, alanine and threonine, with the disaccharide galactose-N-acetyl-galactosamine attached to threonine. The small glycopeptides, 6, 7, and 8, also lower the freezing point and contain proline, which periodically substitutes for alanine. Glycopeptides with similar antifreeze properties isolated from the saffron cod and the Atlantic tomcod contain an additional amino acid, arginine, which substitutes for threonine in glycopeptide 6. In this study we address the question of whether differences in amino acid composition or molecular weight between large and small glycopeptides are responsible for the reduced freezing point depressing capability of the low molecular weight glycopeptides. The results indicate that the degree of amino acid substitutions that occur in glycopeptides 6-8 do not have a significant effect on the unusual freezing point lowering and that the observed decrease in freezing point depression with smaller glycopeptides can be accounted for on the basis of molecular weight.
许多极地鱼类会合成一组由八种糖肽组成的物质,这些糖肽能够使水的冰点出现非依数性降低。这些糖肽的分子量在2600至33700之间。从重量基础来看,最大的糖肽[1 - 5]比小的糖肽能更有效地降低冰点,并且仅含有两种氨基酸,即丙氨酸和苏氨酸,苏氨酸上连接着二糖半乳糖 - N - 乙酰半乳糖胺。较小的糖肽6、7和8也能降低冰点,并且含有脯氨酸,脯氨酸会周期性地取代丙氨酸。从红大麻哈鱼和大西洋小鳕中分离出的具有类似抗冻特性的糖肽还含有另一种氨基酸精氨酸,精氨酸在糖肽6中取代了苏氨酸。在本研究中,我们探讨了大小糖肽之间氨基酸组成或分子量的差异是否是导致低分子量糖肽降低冰点能力下降的原因。结果表明,糖肽6 - 8中发生的氨基酸取代程度对异常的冰点降低没有显著影响,并且观察到的较小糖肽冰点降低程度的下降可以根据分子量来解释。