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来自厚壁菌门细菌的Tam41胞苷二磷酸二酰基甘油合酶的晶体结构。

Crystal structure of Tam41 cytidine diphosphate diacylglycerol synthase from a Firmicutes bacterium.

作者信息

Kimura Keisuke, Kawai Fumihiro, Kubota-Kawai Hisako, Watanabe Yasunori, Tomii Kentaro, Kojima Rieko, Hirata Kunio, Yamamori Yu, Endo Toshiya, Tamura Yasushi

机构信息

Graduate School of Global Symbiotic Sciences, Yamagata University, 1-4-12 Kojirakawa-machi, Yamagata 990-8560, Japan.

Faculty of Science, Yamagata University, 1-4-12 Kojirakawa-machi, Yamagata 990-8560, Japan.

出版信息

J Biochem. 2022 Mar 31;171(4):429-441. doi: 10.1093/jb/mvab154.

Abstract

Translocator assembly and maintenance 41 (Tam41) catalyses the synthesis of cytidine diphosphate diacylglycerol (CDP-DAG), which is a high-energy intermediate phospholipid critical for generating cardiolipin in mitochondria. Although Tam41 is present almost exclusively in eukaryotic cells, a Firmicutes bacterium contains the gene encoding Tam41-type CDP-DAG synthase (FbTam41). FbTam41 converted phosphatidic acid (PA) to CDP-DAG using a ternary complex mechanism in vitro. Additionally, FbTam41 functionally substituted yeast Tam41 in vivo. These results demonstrate that Tam41-type CDP-DAG synthase functions in some prokaryotic cells. We determined the crystal structure of FbTam41 lacking the C-terminal 18 residues in the cytidine triphosphate (CTP)-Mg2+ bound form at a resolution of 2.6 Å. The crystal structure showed that FbTam41 contained a positively charged pocket that specifically accommodated CTP-Mg2+ and PA in close proximity. By using this structure, we constructed a model for the full-length structure of FbTam41 containing the last a-helix, which was missing in the crystal structure. Based on this model, we propose a molecular mechanism for CDP-DAG synthesis in bacterial cells and mitochondria.

摘要

转位酶组装与维护蛋白41(Tam41)催化二磷酸胞苷二酰甘油(CDP-DAG)的合成,CDP-DAG是一种高能中间磷脂,对线粒体中心磷脂的生成至关重要。尽管Tam41几乎仅存在于真核细胞中,但一种厚壁菌含有编码Tam41型CDP-DAG合酶(FbTam41)的基因。FbTam41在体外利用三元复合物机制将磷脂酸(PA)转化为CDP-DAG。此外,FbTam41在体内功能上替代了酵母Tam41。这些结果表明Tam41型CDP-DAG合酶在一些原核细胞中发挥作用。我们确定了FbTam41在结合三磷酸胞苷(CTP)-Mg2+形式下缺少C末端18个残基的晶体结构,分辨率为2.6 Å。晶体结构表明,FbTam41包含一个带正电荷的口袋,该口袋特异性地容纳紧密相邻的CTP-Mg2+和PA。利用该结构,我们构建了包含晶体结构中缺失的最后一个α螺旋的FbTam41全长结构模型。基于该模型,我们提出了细菌细胞和线粒体中CDP-DAG合成的分子机制。

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