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理解和工程甘氨酸分解系统及相关代谢途径,用于基于 C1 的生物合成。

Understanding and Engineering Glycine Cleavage System and Related Metabolic Pathways for C1-Based Biosynthesis.

机构信息

Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, Beijing, China.

State Key Laboratory for Biology of Plant Diseases and Insect Pests/Key Laboratory of Control of Biological Hazard Factors (Plant Origin) for Agriproduct Quality and Safety, Ministry of Agriculture, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Adv Biochem Eng Biotechnol. 2022;180:273-298. doi: 10.1007/10_2021_186.

Abstract

The glycine cleavage system (GCS) is a fundamental component of life, widely existing in microbes, plants, animals, and humans. A better understanding of the functionality and working mechanisms, and the engineering of the GCS have both scientific and practical impacts, which may lead to new knowledge and findings in life sciences, improved biomass production and human/animal health, efficient biosynthesis of chemicals, effective carbon fixation and global climate change mitigation. In this chapter, the GCS is first discussed in the context of the reductive glycine pathway (rGlyP), a recently proposed and appealing assimilation pathway of CO and formate, and its implementation and optimization in microorganisms for formatotrophic growth. Then, the present knowledge about the components, reactions, and working mechanisms of the GCS and related enzymes is reviewed. Particular emphasis is also placed on the conformational and structural features of the GCS proteins, especially the different forms of lipoylated H protein and its lipoylation by lipoate protein ligase (LplA). Subsequently, existing analytic methods for the components and reactions of the GCS and recent advances in quantitatively understanding and purposefully engineering the GCS are presented. Finally, perspectives of current state of the art in the GCS research are given and future research needs are highlighted.

摘要

甘氨酸裂解系统(GCS)是生命的基本组成部分,广泛存在于微生物、植物、动物和人类中。更好地理解其功能和工作机制,并对其进行工程改造,具有科学和实际的影响,可能会为生命科学带来新的知识和发现,提高生物质生产和人类/动物健康水平,促进化学品的有效生物合成,以及实现有效的碳固定和减缓全球气候变化。在本章中,首先在还原性甘氨酸途径(rGlyP)的背景下讨论 GCS,这是最近提出的一种有吸引力的 CO 和甲酸盐同化途径,以及它在微生物中用于格式营养生长的实现和优化。然后,综述了 GCS 及其相关酶的组成、反应和工作机制的现有知识。特别强调了 GCS 蛋白的构象和结构特征,特别是不同形式的脂酰化 H 蛋白及其由脂酰基蛋白连接酶(LplA)进行的脂酰化。随后,介绍了 GCS 成分和反应的现有分析方法,以及定量理解和有目的地工程 GCS 的最新进展。最后,给出了 GCS 研究的现状和未来研究需求的展望。

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