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首页> 外文期刊>Journal of Molecular Biology >Structural and Biochemical Study of the Mono-ADP-Ribosyltransferase Domain of SdeA, a Ubiquitylating/Deubiquitylating Enzyme from Legionella pneumophila
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Structural and Biochemical Study of the Mono-ADP-Ribosyltransferase Domain of SdeA, a Ubiquitylating/Deubiquitylating Enzyme from Legionella pneumophila

机译:SDEA的单氮杂核糖结构酶结构域的结构和生化研究,来自军团菌肺炎的泛素酸盐/脱韧性酶

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Conventional ubiquitylation occurs through an ATP-dependent three-enzyme cascade (E1, E2, and E3) that mediates the covalent conjugation of the C-terminus of ubiquitin to a lysine on the substrate. SdeA, which belongs to the SidE effector family ofLegionella pneumophila, can transfer ubiquitin to endoplasmic reticulum-associated Rab-family GTPases in a manner independent of E1 and E2 enzymes. The novel ubiquitin-modifying enzyme SdeA utilizes NAD+as a cofactor to attach ubiquitin to a serine residue of the substrate. Here, to elucidate the coupled enzymatic reaction of NAD+ hydrolysis and ADP-ribosylation of ubiquitin in SdeA, we characterized the mono-ADP-ribosyltransferase domain of SdeA and show that it consists of two sub-domains termed mART-N and mART-C. The crystal structure of the mART-C domain of SdeA was also determined in free form and in complex with NAD+at high resolution. Furthermore, the spatial orientations of the N-terminal deubiquitylase, phosphodiesterase, mono-ADP-ribosyltransferase, and C-terminal coiled-coil domains within the 180-kDa full-length SdeA were determined. These results provide insight into the unusual ubiquitylation mechanism of SdeA and expand our knowledge on the structure–function of mono-ADP-ribosyltransferases.
机译:通过ATP依赖性三酶级联(E1,E2和E3)介导遍Quitin的C-末端与赖氨酸的共价缀合的常规的泛醌级联发生。 SDEA属于侧髁氏肺炎氏菌属的侧疗子系列,可以以与E1和E2酶无关的方式将泛素转移到内质网相关的Rab-Family GTP酶。该新型泛素改性酶SDEA利用NAD +作为辅因子,以将遍在蛋白与基材的丝氨酸残基附接。这里,为了在SDEA中阐明NAD +水解和Adp-核糖基化的偶联酶促反应,其特征在于SDEA的单腺癌 - 核糖基转移酶结构域,表明它由两个称为MART-N和MART-C的子结构域组成。 SDEA的MART-C结构域的晶体结构也以自由形式和高分辨率与NAD +复合物测定。此外,确定了N-末端耐脂肪酶,磷酸二酯酶,单氮杂核糖基亚烷基转移酶和180-KDA全长SDEA内的C末端卷轴线圈域的空间取向。这些结果提供了对SDEA的不寻常的泛素质机制的洞察力,并扩大了我们对单氮杂核糖基转移酶的结构功能的知识。

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