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Structure of the glycosyltransferase EryCIII in complex with its activating P450 homologue EryCII

机译:糖基转移酶EryCIII及其激活的P450同源EryCII的结构

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摘要

In the biosynthesis of the clinically important antibiotic erythromycin D, the glycosyltransferase (GT) EryCIII, in concert with its partner EryCII, attaches a nucleotide-activated sugar to the macrolide scaffold with high specificity. To understand the role of EryCII, we have determined the crystal structure of the EryCIII·EryCII complex at 3.1 ? resolution. The structure reveals a heterotetramer with a distinctive, elongated quaternary organization. The EryCIII subunits form an extensive self-complementary dimer interface at the center of the complex, and the EryCII subunits lie on the periphery. EryCII binds in the vicinity of the putative macrolide binding site of EryCIII but does not make direct interactions with this site. Our biophysical and enzymatic data support a model in which EryCII stabilizes EryCIII and also functions as an allosteric activator of the GT.
机译:在临床上重要的抗生素红霉素D的生物合成中,糖基转移酶(GT)EryCIII及其伴侣EryCII将核苷酸活化的糖高度特异性地附着在大环内酯支架上。为了了解EryCII的作用,我们确定了EryCIII·EryCII复合物的晶体结构为3.1?解析度。该结构揭示了具有独特的细长四元结构的异四聚体。 EryCIII亚基在复合物的中心形成广泛的自互补二聚体界面,而EryCII亚基位于外围。 EryCII在EryCIII的假定大环内酯结合位点附近结合,但不与该位点直接相互作用。我们的生物物理和酶学数据支持EryCII稳定EryCIII并充当GT的变构活化剂的模型。

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