ATP合酶
计算生物学
生物
生物化学
化学
细胞生物学
酶
作者
Sixue Ren,Niels A. W. de Kok,Yijun Gu,Weizhu Yan,Qiu Sun,Yunying Chen,Jun He,Lejin Tian,Ruben L. H. Andringa,Xiaofeng Zhu,Mei Tang,Shiqian Qi,Heng Xu,Haiyan Ren,Xianghui Fu,Adriaan J. Minnaard,Shengyong Yang,Wanjiang Zhang,Weimin Li,Yuquan Wei
出处
期刊:Cell Reports
[Cell Press]
日期:2020-10-01
卷期号:33 (3): 108294-108294
被引量:17
标识
DOI:10.1016/j.celrep.2020.108294
摘要
The UbiA superfamily of intramembrane prenyltransferases catalyzes an isoprenyl transfer reaction in the biosynthesis of lipophilic compounds involved in cellular physiological processes. Digeranylgeranylglyceryl phosphate (DGGGP) synthase (DGGGPase) generates unique membrane core lipids for the formation of the ether bond between the glycerol moiety and the alkyl chains in archaea and has been confirmed to be a member of the UbiA superfamily. Here, the crystal structure is reported to exhibit nine transmembrane helices along with a large lateral opening covered by a cytosolic cap domain and a unique substrate-binding central cavity. Notably, the lipid-bound states of this enzyme demonstrate that the putative substrate-binding pocket is occupied by the lipidic molecules used for crystallization, indicating the binding mode of hydrophobic substrates. Collectively, these structural and functional studies provide not only an understanding of lipid biosynthesis by substrate-specific lipid-modifying enzymes but also insights into the mechanisms of lipid membrane remodeling and adaptation.
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