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Pharmaceutically Important Pre- and Posttranslational Modifications on Human Serum Albumin

机译:对人血清白蛋白的药学上重要的翻译前和翻译后修饰

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摘要

Recombinant technology allows engineering and production of proteins with desirable properties. Human serum albumin has been developed with recombinant technology, and thus plays an increasing role as a drug carrier in the clinical setting. Genetic variations usually occur on the surface of the protein, and do not impose significant effects on the conformation of albumin. However, binding of fatty acids by genetic variants is affected according to the location of the mutation. Albumin undergoes three major posttranslational modifications, namely, oxidation, glycation, and S-nitrosylation. This review gives an account of the different posttranslational modifications that should be taken into consideration when designing albumin mutant analogues with desirable pharmaceutical properties.
机译:重组技术可以改造和生产具有所需特性的蛋白质。人血清白蛋白已通过重组技术开发,因此在临床环境中作为药物载体的作用日益增强。遗传变异通常发生在蛋白质表面,对白蛋白构象没有明显影响。然而,遗传变异对脂肪酸的结合根据突变的位置而受到影响。白蛋白经历三个主要的翻译后修饰,即氧化,糖基化和S-亚硝基化。这篇综述介绍了在设计具有所需药物特性的白蛋白突变体类似物时应考虑的不同翻译后修饰。

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