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[胰岛素的聚合物修饰对其酶促水解及构象性质的影响]

[Effect of polymer modification of insulin on its enzymatic hydrolysis and conformation properties].

作者信息

Vlasov G P, Izvarina N L, Illarionova N G, Denisov I G, Malyshev D A

出版信息

Prikl Biokhim Mikrobiol. 1988 Jan-Feb;24(1):56-61.

PMID:3285340
Abstract

AI, B29 insulin polymeric derivatives in which the polymeric chains (N-polyvinylimidazole, N-polyvinylpyrrolydone and polyacrylic acid) are bonded to the insulin molecule at one point were synthesized. The hydrolysis of the modified insulin by trypsin is dependent to a great extent on the chemical nature of the modifying polymer and is virtually independent of its molecular weight up to 20 kD. The effect of the modifying polymer manifests itself mainly in a change of the Michaelis constant. Investigation of the conformational properties of the insulin derivatives by the method of optical rotatory dispersion revealed that insulin modification by polymers caused a decrease of the amino acid content in the alpha-helical sequence from 41 to 33-30%. The chemical nature of the modifying polymer and its molecular weight have a profound effect on the conformational stability of the residual spatial structure of the modified insulin in alkaline media.

摘要

合成了AI、B29胰岛素聚合物衍生物,其中聚合物链(N - 聚乙烯基咪唑、N - 聚乙烯基吡咯烷酮和聚丙烯酸)在一个点上与胰岛素分子相连。胰蛋白酶对修饰胰岛素的水解在很大程度上取决于修饰聚合物的化学性质,并且在分子量高达20 kD时实际上与分子量无关。修饰聚合物的作用主要表现为米氏常数的变化。通过旋光色散法对胰岛素衍生物的构象性质进行研究表明,聚合物对胰岛素的修饰导致α - 螺旋序列中的氨基酸含量从41%降至33 - 30%。修饰聚合物的化学性质及其分子量对修饰胰岛素在碱性介质中残余空间结构的构象稳定性有深远影响。

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