Azadeh Eskandari, Nima Ghahremani Nezhad, Thean Chor Leow, Mohd Basyaruddin Abdul Rahman, Siti Nurbaya Oslan
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The advantages of utilizing the <i>P. pastoris</i> system for protein production encompass the proper folding process occurring within the endoplasmic reticulum (ER), as well as the subsequent secretion mediated by Kex2 as a signal peptidase, ultimately leading to the release of recombinant proteins into the extracellular environment of the cell. In addition, within the <i>P. pastoris</i> expression system, the ease of purifying recombinant protein arises from its restricted synthesis of endogenous secretory proteins. Despite its achievements, scientists often encounter persistent challenges when attempting to utilize yeast for the production of recombinant proteins. This review is dedicated to discussing the current achievements in the usage of <i>P. pastoris</i> as an expression host. Furthermore, it sheds light on the strategies employed in the expression system and the optimization and development of the fermentative process of this yeast. Finally, the impediments (such as identifying high expression strains, improving secretion efficiency, and decreasing hyperglycosylation) and successful resolution of certain difficulties are put forth and deliberated upon in order to assist and promote the expression of complex proteins in this prevalent recombinant host.</p>","PeriodicalId":23744,"journal":{"name":"World Journal of Microbiology and Biotechnology","volume":"11 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2023-12-08","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Current achievements, strategies, obstacles, and overcoming the challenges of the protein engineering in Pichia pastoris expression system\",\"authors\":\"Azadeh Eskandari, Nima Ghahremani Nezhad, Thean Chor Leow, Mohd Basyaruddin Abdul Rahman, Siti Nurbaya Oslan\",\"doi\":\"10.1007/s11274-023-03851-6\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>Yeasts serve as exceptional hosts in the manufacturing of functional protein engineering and possess industrial or medical utilities. 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引用次数: 0
摘要
酵母是制造功能蛋白质工程的特殊宿主,具有工业或医学用途。由于酵母固有的优点以及这种特殊细胞宿主的最新进展,酵母受到了广泛关注。Pichia pastoris 表达系统被公认为是分子生物学中用于生成重组蛋白的一种重要且广为接受的工具。利用 P. pastoris 系统生产蛋白质的优势包括在内质网(ER)内发生的适当折叠过程,以及随后由作为信号肽酶的 Kex2 介导的分泌,最终导致重组蛋白质释放到细胞外环境中。此外,在 P. pastoris 表达系统中,由于内源性分泌蛋白的合成受到限制,因此很容易纯化重组蛋白。尽管酵母取得了巨大的成就,但科学家们在尝试利用酵母生产重组蛋白时仍经常会遇到各种挑战。本综述将专门讨论目前在使用 P. pastoris 作为表达宿主方面所取得的成就。此外,它还揭示了表达系统中采用的策略以及该酵母发酵过程的优化和发展。最后,还提出并讨论了一些障碍(如确定高表达菌株、提高分泌效率和减少高糖基化)和某些困难的成功解决方法,以帮助和促进复杂蛋白质在这种常用重组宿主中的表达。
Current achievements, strategies, obstacles, and overcoming the challenges of the protein engineering in Pichia pastoris expression system
Yeasts serve as exceptional hosts in the manufacturing of functional protein engineering and possess industrial or medical utilities. Considerable focus has been directed towards yeast owing to its inherent benefits and recent advancements in this particular cellular host. The Pichia pastoris expression system is widely recognized as a prominent and widely accepted instrument in molecular biology for the purpose of generating recombinant proteins. The advantages of utilizing the P. pastoris system for protein production encompass the proper folding process occurring within the endoplasmic reticulum (ER), as well as the subsequent secretion mediated by Kex2 as a signal peptidase, ultimately leading to the release of recombinant proteins into the extracellular environment of the cell. In addition, within the P. pastoris expression system, the ease of purifying recombinant protein arises from its restricted synthesis of endogenous secretory proteins. Despite its achievements, scientists often encounter persistent challenges when attempting to utilize yeast for the production of recombinant proteins. This review is dedicated to discussing the current achievements in the usage of P. pastoris as an expression host. Furthermore, it sheds light on the strategies employed in the expression system and the optimization and development of the fermentative process of this yeast. Finally, the impediments (such as identifying high expression strains, improving secretion efficiency, and decreasing hyperglycosylation) and successful resolution of certain difficulties are put forth and deliberated upon in order to assist and promote the expression of complex proteins in this prevalent recombinant host.