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可溶性长效胰岛素衍生物。I. B链末端被取代的胰岛素的延长程度和结晶性。

Soluble, prolonged-acting insulin derivatives. I. Degree of protraction and crystallizability of insulins substituted in the termini of the B-chain.

作者信息

Markussen J, Hougaard P, Ribel U, Sørensen A R, Sørensen E

机构信息

Novo Research Institute, Bagsvaerd, Denmark.

出版信息

Protein Eng. 1987 Jun;1(3):205-13. doi: 10.1093/protein/1.3.205.

Abstract

Hydrophilic insulins, more positively charged than human insulin at neutral pH, have been prepared by substitution with basic amino acids at the termini of the B-chain and by blocking the C-terminal carboxyl group of the B-chain. The isoelectric pH of the insulin is thereby moved from 5.4 towards physiological levels. Slightly acid solutions of derivatives, in which charge has been added in the C-terminus of the B-chain, have a prolonged action in vivo, in particular if the carboxyl group is blocked. It is found that the prolonged-acting hydrophilic insulins crystallize instantly when the pH is adjusted to 7. The prolonged action is ascribed to this readiness to crystallization combined with a low solubility, which may be further decreased by increased concentration of zinc ions. Hydrophobic insulins have a prolonged action independent of the site of substitution even if the derivative is soluble at physiological pH. Some derivatives were prepared from porcine insulin by tryptic transpeptidation. N-terminal B-chain substituted insulins were prepared by alkylation of a biosynthetic single-chain insulin precursor, followed by tryptic transpeptidation rendering the double chain insulin derivative. The observed blood glucose lowering in the rabbits implies that neither N- nor C-terminal B-chain substitution results in substantial deterioration of biological potency. An index for the degree of protraction based on the blood glucose data is used to compare the insulins.

摘要

亲水性胰岛素在中性pH值下比人胰岛素带更多正电荷,它是通过在B链末端用碱性氨基酸取代以及封闭B链的C末端羧基来制备的。胰岛素的等电点由此从5.4向生理水平移动。在B链C末端添加了电荷的衍生物的微酸性溶液在体内具有延长的作用,特别是如果羧基被封闭的话。研究发现,当pH值调至7时,长效亲水性胰岛素会立即结晶。长效作用归因于这种易于结晶以及低溶解度,增加锌离子浓度可能会进一步降低其溶解度。疏水性胰岛素具有延长的作用,即使衍生物在生理pH值下可溶,其作用延长也与取代位点无关。一些衍生物是通过胰蛋白酶转肽作用从猪胰岛素制备的。N末端B链取代的胰岛素是通过对生物合成的单链胰岛素前体进行烷基化,然后进行胰蛋白酶转肽作用得到双链胰岛素衍生物来制备的。在兔子身上观察到的血糖降低表明,N末端或C末端B链取代都不会导致生物活性大幅下降。基于血糖数据的延长程度指数用于比较胰岛素。

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