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哺乳动物基因调控概念对功能基因组学研究、代谢工程和先进基因疗法的影响。

The impact of mammalian gene regulation concepts on functional genomic research, metabolic engineering, and advanced gene therapies.

作者信息

Fussenegger M

机构信息

Institute of Biotechnology, Swiss Federal Institute of Technology, ETH Zurich, CH-8093 Zurich, Switzerland.

出版信息

Biotechnol Prog. 2001 Jan-Feb;17(1):1-51. doi: 10.1021/bp000129c.

Abstract

Regulation of heterologous gene expression is of prime importance for a wide variety of basic and applied biological research areas including functional genomics, tissue engineering, gene therapy, and biopharmaceutical manufacturing. Initial gene regulation strategies employed endogenous responsive elements, which resulted in pleiotropic interference of transgene expression with host regulatory networks. Current regulation systems are binary and consist of chimeric transactivators and responsive target promoters of heterologous bacterial or insect origin, or they contain artificially designed components. Regulation of generic systems is based on binding of a transactivator to its cognate promoter, which is modulated by specific molecules such as antibiotics or hormones and brings the transactivation domain into contact with a minimal promoter, thereby inducing target gene expression. Binary gene regulation concepts have been significantly refined in recent years with a focus to improve their regulation performance and their compatibility with human-therapeutic use. In this review we present a detailed analysis of currently available mammalian gene regulation systems and document progress that has pioneered the use of such systems in various aspects of human therapy.

摘要

异源基因表达的调控对于包括功能基因组学、组织工程、基因治疗和生物制药制造在内的广泛基础和应用生物学研究领域至关重要。最初的基因调控策略采用内源性响应元件,这导致转基因表达对宿主调控网络产生多效性干扰。当前的调控系统是二元的,由异源细菌或昆虫来源的嵌合反式激活因子和响应性靶启动子组成,或者它们包含人工设计的组件。通用系统的调控基于反式激活因子与其同源启动子的结合,该结合由抗生素或激素等特定分子调节,并使反式激活结构域与最小启动子接触,从而诱导靶基因表达。近年来,二元基因调控概念得到了显著改进,重点是提高其调控性能以及与人类治疗用途的兼容性。在本综述中,我们对目前可用的哺乳动物基因调控系统进行了详细分析,并记录了在人类治疗各个方面率先使用此类系统所取得的进展。

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