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首页> 外文期刊>Journal of Molecular Biology >Crystal structures of the human and fungal cytosolic Leucyl-tRNA synthetase editing domains: A structural basis for the rational design of antifungal benzoxaboroles.
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Crystal structures of the human and fungal cytosolic Leucyl-tRNA synthetase editing domains: A structural basis for the rational design of antifungal benzoxaboroles.

机译:人类和真菌的胞质亮氨酰-tRNA合成酶编辑域的晶体结构:合理设计抗真菌苯并氧杂硼酸的结构基础。

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摘要

Leucyl-tRNA synthetase (LeuRS) specifically links leucine to the 3' end of tRNA(leu) isoacceptors. The overall accuracy of the two-step aminoacylation reaction is enhanced by an editing domain that hydrolyzes mischarged tRNAs, notably ile-tRNA(leu). We present crystal structures of the editing domain from two eukaryotic cytosolic LeuRS: human and fungal pathogen Candida albicans. In comparison with previous structures of the editing domain from bacterial and archeal kingdoms, these structures show that the LeuRS editing domain has a conserved structural core containing the active site for hydrolysis, with distinct bacterial, archeal, or eukaryotic specific peripheral insertions. It was recently shown that the benzoxaborole antifungal compound AN2690 (5-fluoro-1,3-dihydro-1-hydroxy-1,2-benzoxaborole) inhibits LeuRS by forming a covalent adduct with the 3' adenosine of tRNA(leu) at the editing site, thus locking the enzyme in an inactive conformation. To provide a structural basis for enhancing the specificity of these benzoxaborole antifungals, we determined the structure at 2.2 A resolution of the C. albicans editing domain in complex with a related compound, AN3018 (6-(ethylamino)-5-fluorobenzo[c][1,2]oxaborol-1(3H)-ol), using AMP as a surrogate for the 3' adenosine of tRNA(leu). The interactions between the AN3018-AMP adduct and C. albicans LeuRS are similar to those previously observed for bacterial LeuRS with the AN2690 adduct, with an additional hydrogen bond to the extra ethylamine group. However, compared to bacteria, eukaryotic cytosolic LeuRS editing domains contain an extra helix that closes over the active site, largely burying the adduct and providing additional direct and water-mediated contacts. Small differences between the human domain and the fungal domain could be exploited to enhance fungal specificity.
机译:Leucyl-tRNA合成酶(LeuRS)专门将亮氨酸连接到tRNA(leu)异构受体的3'末端。两步氨基酰化反应的整体准确性通过可水解带错电荷的tRNA(尤其是ile-tRNA(leu))的编辑域来增强。我们目前从两个真核细胞质LeuRS:人类和真菌病原体白色念珠菌的编辑域的晶体结构。与来自细菌和古细菌界的编辑结构域的先前结构相比,这些结构表明LeuRS编辑结构域具有保守的结构核心,该结构核心包含用于水解的活性位点,具有独特的细菌,古细菌或真核生物特异性外周插入。最近显示,苯并氧杂硼酸类抗真菌化合物AN2690(5-氟-1,3-二氢-1-羟基-1,2-苯并氧杂硼酸)通过与tRNA(leu)的3'腺苷形成共价加合物来抑制LeuRS。编辑位点,从而将酶锁定在非活性构象中。为提供结构基础,以增强这些苯并xaborole抗真菌剂的特异性,我们在2.2 A分辨率下确定了白色念珠菌编辑结构域与相关化合物AN3018(6-(乙基氨基)-5-氟苯并[c]]的结构。 [1,2] oxaborol-1(3H)-ol),使用AMP作为tRNA(leu)3'腺苷的替代物。 AN3018-AMP加合物与白色念珠菌LeuRS之间的相互作用类似于先前观察到的细菌LeuRS与AN2690加合物之间的相互作用,其中额外的氢键与额外的乙胺基团发生相互作用。但是,与细菌相比,真核细胞质LeuRS编辑域包含一个额外的螺旋,该螺旋在活性位点闭合,大大掩盖了加合物并提供了直接的和水介导的接触。可以利用人结构域和真菌结构域之间的微小差异来增强真菌特异性。

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