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甲醇营养型酵母体系中外源蛋白生产的最新进展。

Recent progress on heterologous protein production in methylotrophic yeast systems.

机构信息

Biologics Technology Research Laboratories I, Daiichi Sankyo Co., Ltd., 2716-1 Kurakake, Akaiwa, Chiyoda, Gunma, 370-0503, Japan.

出版信息

World J Microbiol Biotechnol. 2024 May 11;40(7):200. doi: 10.1007/s11274-024-04008-9.

Abstract

Recombinant protein production technology is widely applied to the manufacture of biologics used as drug substances and industrial proteins such as recombinant enzymes and bioactive proteins. Various heterologous protein production systems have been developed using prokaryotic and eukaryotic hosts. Especially methylotrophic yeast in eukaryotic hosts is suggested to be particularly valuable because such systems have the following advantages: protein secretion into culture broth, eukaryotic quality control systems, a post-translational modification system, rapid growth, and established recombinant DNA tools and technologies such as strong promoters, effective selection markers, and gene knock-in and -out systems. Many methylotrophic yeasts such as the genera Candida, Ogataea, and Komagataella have been studied since methylotrophic yeast was first isolated in 1969. The methanol-consumption-related genes in methylotrophic yeast are strongly and strictly regulated under methanol-containing conditions. The well-regulated gene expression systems under the methanol-inducible gene promoter lead to the potential application of heterologous protein production in methylotrophic yeast. In this review, we describe the recent progress of heterologous protein production technology in methylotrophic yeast and introduce Ogataea minuta as an alternative production host as a substitute for K. phaffii and O. polymorpha.

摘要

重组蛋白生产技术广泛应用于生物制品的制造,这些生物制品可用作药物物质和工业蛋白,如重组酶和生物活性蛋白。已经使用原核和真核宿主开发了各种异源蛋白生产系统。特别是真核宿主中的甲醇营养型酵母被认为特别有价值,因为这些系统具有以下优势:蛋白质分泌到培养液中、真核质量控制系统、翻译后修饰系统、快速生长以及建立了重组 DNA 工具和技术,如强启动子、有效的选择标记以及基因敲入和敲除系统。自 1969 年首次分离出甲醇营养型酵母以来,已经对许多甲醇营养型酵母,如 Candida、Ogataea 和 Komagataella 属进行了研究。甲醇营养型酵母中的甲醇代谢相关基因在含有甲醇的条件下受到强烈且严格的调控。在甲醇诱导型基因启动子下的良好调控基因表达系统导致异源蛋白在甲醇营养型酵母中的潜在应用。在这篇综述中,我们描述了甲醇营养型酵母中异源蛋白生产技术的最新进展,并介绍了 Ogataea minuta 作为替代生产宿主,以替代 K. phaffii 和 O. polymorpha。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6326/11087369/e08cb6a0389b/11274_2024_4008_Fig1_HTML.jpg

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