Zhao Songyin, Wu Lunjie, Xu Yan, Nie Yao
Laboratory of Brewing Microbiology and Applied Enzymology, School of Biotechnology and Key Laboratory of Industrial Biotechnology, Ministry of Education, Jiangnan University, Wuxi, China.
Nat Prod Rep. 2025 Jan 22;42(1):67-92. doi: 10.1039/d4np00030g.
Covering: up to 2024Fe(II) and 2-oxoglutarate-dependent dioxygenases (Fe/2OG DOs) are a superfamily of enzymes that play important roles in a variety of catalytic reactions, including hydroxylation, ring formation, ring reconstruction, desaturation, and demethylation. Each member of this family has similarities in their overall structure, but they have varying specific differences, making Fe/2OG DOs attractive for catalytic diversity. With the advancement of current research, more Fe/2OG DOs have been discovered, and their catalytic scope has been further broadened; however, apart from hydroxylation, many reaction mechanisms have not been accurately demonstrated, and there is a lack of a systematic understanding of their molecular basis. Recently, an increasing number of X-ray structures of Fe/2OG DOs have provided new insights into the structural basis of their function and substrate-binding properties. This structural information is essential for understanding catalytic mechanisms and mining potential catalytic reactions. In this review, we summarize most of the Fe/2OG DOs whose structures have been resolved in recent years, focus on their structural features, and explore the relationships between various structural elements and unique catalytic mechanisms and their associated reaction type classification.
截至2024年
铁(II)和2-氧代戊二酸依赖性双加氧酶(Fe/2OG DOs)是一类酶超家族,在多种催化反应中发挥重要作用,包括羟基化、环形成、环重构、去饱和作用和去甲基化。该家族的每个成员在整体结构上都有相似之处,但也存在不同的特定差异,这使得Fe/2OG DOs因其催化多样性而备受关注。随着当前研究的进展,更多的Fe/2OG DOs被发现,其催化范围也进一步扩大;然而,除了羟基化反应外,许多反应机制尚未得到准确证明,并且对其分子基础缺乏系统的了解。最近,越来越多的Fe/2OG DOs的X射线结构为其功能和底物结合特性的结构基础提供了新的见解。这些结构信息对于理解催化机制和挖掘潜在的催化反应至关重要。在本综述中,我们总结了近年来其结构已被解析的大多数Fe/2OG DOs,重点关注它们的结构特征,并探讨各种结构元件与独特催化机制及其相关反应类型分类之间的关系。