首页> 外文期刊>Journal of Molecular Biology >Induced-fit upon ligand binding revealed by crystal structures of the hot-dog fold thioesterase in dynemicin biosynthesis.
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Induced-fit upon ligand binding revealed by crystal structures of the hot-dog fold thioesterase in dynemicin biosynthesis.

机译:在达尼霉素生物合成中,热狗折叠硫酯酶的晶体结构揭示了配体结合的诱导拟合。

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摘要

Dynemicins are structurally related 10-membered enediyne natural products isolated from Micromonospora chernisa with potent antitumor and antibiotic activity. The early biosynthetic steps of the enediyne moiety of dynemicins are catalyzed by an iterative polyketide synthase (DynE8) and a thioesterase (DynE7). Recent studies indicate that the function of DynE7 is to off-load the linear biosynthetic intermediate assembled on DynE8. Here, we report crystal structures of DynE7 in its free form at 2.7 A resolution and of DynE7 in complex with the DynE8-produced all-trans pentadecen-2-one at 2.1 A resolution. These crystal structures reveal that upon ligand binding, significant conformational changes throughout the substrate-binding tunnel result in an expanded tunnel that traverses an entire monomer of the tetrameric DynE7 protein. The enlarged inner segment of the channel binds the carbonyl-conjugated polyene mainly through hydrophobic interactions, whereas the putative catalytic residues are located in the outer segment of the channel. The crystallographic information reinforces an unusual catalytic mechanism that involves a strictly conserved arginine residue for this subfamily of hot-dog fold thioesterases, distinct from the typical mechanism for hot-dog fold thioesterases that utilizes an acidic residue for catalysis.
机译:达尼霉素是与结构微结构的十元烯二炔天然产物分离的天然产物,具有很强的抗肿瘤和抗生素活性。地尼霉素的烯二炔部分的早期生物合成步骤被迭代的聚酮化合物合酶(DynE8)和硫酯酶(DynE7)催化。最近的研究表明,DynE7的功能是减轻DynE8上组装的线性生物合成中间体的负荷。在这里,我们以2.7 A的分辨率报告其自由形式的DynE7的晶体结构,并以2.1 A的分辨率与DynE8产生的全反式pentadecen-2-one的晶体结构复合。这些晶体结构表明,在配体结合后,整个底物结合通道中的显着构象变化会导致一个扩展的通道,该通道穿过四聚体DynE7蛋白的整个单体。通道的扩大的内部区段主要通过疏水相互作用与羰基共轭多烯结合,而推定的催化残基位于通道的外部区段。晶体学信息增强了这种不寻常的催化机制,该机制涉及该热狗折叠硫酯酶亚家族的严格保守的精氨酸残基,这与利用酸性残基进行催化的热狗折叠硫酯酶的典型机理不同。

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