首页> 外文期刊>Acta crystallographica. Section D, Structural biology >Substrate-induced dimerization of elaiophylin glycosyltransferase reveals a novel self-activating form of glycosyltransferase for symmetric glycosylation
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Substrate-induced dimerization of elaiophylin glycosyltransferase reveals a novel self-activating form of glycosyltransferase for symmetric glycosylation

机译:底物诱导的elaiophylin糖基转移酶二聚化揭示了一种用于对称糖基化的糖基转移酶的新型自激活形式

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摘要

Elaiophylin (Ela), a unique 16-membered symmetric macrodiolide antibiotic, displays broad biological activity. Two rare 2-deoxy-L-fucose moieties at the ends of Ela are critical for its activity. Previously, elaiophylin glycosyltransferase (ElaGT) was identified as the enzyme that is responsible for the symmetric glycosylation of Ela, acting as a potential enzymatic tool for enhancing the diversity and activity of Ela. However, a symmetric catalytic mechanism has never been reported for a glycosyltransferase (GT). To explore the catalytic mechanism, the structure of ElaGT was determined in four forms: the apo form and Ela-bound, thymidine diphosphate-bound and uridine diphosphate-bound forms. In the Ela-bound structure, two ElaGTs form a 'face-to-face' C2-symmetric homodimer with a continuous acceptor-binding pocket, allowing a molecule of Ela to shuffle through. Interestingly, this dimer interface resembles that of the activator-dependent GT EryCIII with its activator EryCII. Sequence analysis also indicates that ElaGT belongs to the activator-dependent GT family, but no putative activator has been identified in the Ela gene cluster. It was then found that the ElaGT homodimer may utilize this 'face-to-face' arrangement to stabilize the Ela-binding loops on the interface and to simultaneously allosterically regulate the catalytic center. Therefore, these structures present a novel self-activating model for symmetric sugar transfer in the GT family and a new potential regulation site for substrate specificity.
机译:Elaiophylin (Ela),一个独特的16国对称的macrodiolide抗生素,显示广泛的生物活性。在结束半个便于对其至关重要活动。糖基转移酶(ElaGT)是确定的酶,负责对称的作为一个潜在的糖基化的联盟提高多样性和酶的工具便于活动。从未被报告机制糖基转移酶(GT)。催化机理,ElaGT的结构在四种形式:apo形式和决定的Ela-bound,胸苷diphosphate-bound和尿苷diphosphate-bound形式。结构,两个ElaGTs形成一个“面对面”C2-symmetric为连续acceptor-binding口袋,允许一个分子洗牌通过资格认证。界面很像的activator-dependent GT EryCIII活化剂EryCII。ElaGT属于activator-dependent GT家庭,但是没有公认的活化剂这个联盟中确定基因簇。发现ElaGT为可能利用这一点“面对面”安排稳定在界面和Ela-binding循环同时变构调节催化中心。小说自激活的模型GT的家人和一个对称的糖转移新的潜在监管网站衬底特异性。

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