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古菌中醚脂生物合成缺失环节——CDP-古菌醇合酶的鉴定。

Identification of CDP-archaeol synthase, a missing link of ether lipid biosynthesis in Archaea.

作者信息

Jain Samta, Caforio Antonella, Fodran Peter, Lolkema Juke S, Minnaard Adriaan J, Driessen Arnold J M

机构信息

Department of Molecular Microbiology, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, 9747 AG Groningen, the Netherlands; Zernike Institute for Advanced Materials, University of Groningen, 9747 AG Groningen, the Netherlands.

Stratingh Institute for Chemistry, University of Groningen, Nijenborgh 7, 9747 AG Groningen, the Netherlands.

出版信息

Chem Biol. 2014 Oct 23;21(10):1392-1401. doi: 10.1016/j.chembiol.2014.07.022. Epub 2014 Sep 11.

Abstract

Archaeal membrane lipid composition is distinct from Bacteria and Eukarya, consisting of isoprenoid chains etherified to the glycerol carbons. Biosynthesis of these lipids is poorly understood. Here we identify and characterize the archaeal membrane protein CDP-archaeol synthase (CarS) that catalyzes the transfer of the nucleotide to its specific archaeal lipid substrate, leading to the formation of a CDP-activated precursor (CDP-archaeol) to which polar head groups are attached. The discovery of CarS enabled reconstitution of the entire archaeal lipid biosynthesis pathway in vitro, starting from simple isoprenoid building blocks and using a set of five purified enzymes. The cell free synthetic strategy for archaeal lipids we describe opens opportunity for studies of archaeal lipid biochemistry. Additionally, insights into archaeal lipid biosynthesis reported here allow addressing the evolutionary hypothesis of the lipid divide between Archaea and Bacteria.

摘要

古菌的膜脂组成不同于细菌和真核生物,由醚化连接到甘油碳上的类异戊二烯链组成。这些脂质的生物合成目前了解甚少。在这里,我们鉴定并表征了古菌膜蛋白CDP-古菌醇合酶(CarS),它催化核苷酸转移到其特定的古菌脂质底物上,导致形成一个CDP激活的前体(CDP-古菌醇),极性头部基团连接到该前体上。CarS的发现使得从简单的类异戊二烯构建模块开始,利用一组五种纯化的酶,能够在体外重建整个古菌脂质生物合成途径。我们所描述的古菌脂质的无细胞合成策略为古菌脂质生物化学研究提供了机会。此外,本文报道的对古菌脂质生物合成的深入了解有助于探讨古菌和细菌之间脂质差异的进化假说。

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