微生物和哺乳动物细胞中的蛋白质分泌系统。

D. Moir, J. Mao
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引用次数: 5

摘要

对于需要在分泌途径中进行翻译后修饰的蛋白质来说,分泌是一种有吸引力的生产模式。例如,氨基酸链正确折叠,二硫键正确形成,蛋白质分泌时糖基化准确发生。此外,由于细胞不需要被破坏,并且产物可能是存在于最小合成培养基中的主要物种,因此分泌蛋白的回收被简化。现有技术允许异源细胞生产和分泌蛋白质。虽然未来需要努力提高分泌效率,但目前的方法从大肠杆菌、枯草芽孢杆菌、酿酒酵母、Aspergilli和许多哺乳动物细胞类型中产生了商业上感兴趣的分泌水平。这些系统中的每一个都具有一定的优势,系统的选择取决于要分泌的特定蛋白质。高价值的人类治疗产品,如纤溶酶原激活剂,是从哺乳动物细胞系分泌的合理候选者,而工业蛋白,如小牛前膜菌素,需要更经济的宿主,如面包酵母或曲霉菌。在自然界中观察到的各种各样的翻译后修饰可能会阻止任何单一的分泌系统在未来的许多年里占据主导地位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protein secretion systems in microbial and mammalian cells.
Secretion is an attractive production mode for proteins that require posttranslational modifications carried out in the secretory pathway. For example, amino acid chains fold properly, disulfide bonds form correctly, and glycosylation occurs accurately as the protein is secreted. In addition, recovery of secreted proteins is simplified by the fact that cells need not be broken and the product may be a major species present in a minimal synthetic culture medium. The current state of the art permits the production and secretion of proteins by heterologous cells. While future efforts will be required to improve the efficiency of secretion, current methods yield commercially interesting levels of secretion from E. coli, B. subtilis, S. cerevisiae, Aspergilli, and many mammalian cell types. Each of these systems offers certain advantages, and the choice of system depends on the specific protein to be secreted. High-value human therapeutic products such as plasminogen activators are reasonable candidates for secretion from mammalian cell lines, while industrial proteins such as calf prochymosin require a more economical host, such as baker's yeast or Aspergillus. The wide variety of posttranslational modifications observed in nature may prevent any single secretion system from dominating the field for many years to come.
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