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Substrate-assisted Enzymatic Formation of Lysinoalanine in Duramycin

机译:杜拉霉素中赖氨酸丙氨酸的底物辅助酶促形成

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摘要

Duramycin is a heavily post-translationally modified peptide that binds phosphatidylethanolamine. It has been investigated as an antibiotic, inhibitor of viral entry, therapeutic for cystic fibrosis, and tumor and vasculature imaging agent. Duramycin contains a β-hydroxylated Asp (Hya) and four macrocycles, including an essential lysinoalanine (Lal) crosslink. The mechanism of Lal formation is not known. We here show that Lal is installed stereospecifically by DurN via addition of Lys19 to a dehydroalanine. The structure of DurN reveals an unusual dimer with a new fold. Surprisingly, in the structure of duramycin bound to DurN, no residues of the enzyme are near the Lal crosslink. Instead, Hya15 of the substrate makes interactions with Lal, suggesting it acts as a base to deprotonate Lys19 during catalysis. Biochemical data suggest that DurN preorganizes the reactive conformation of the substrate, such that the Hya15 of the substrate can serve as the catalytic base for Lal formation.
机译:Duramycin是结合了磷脂酰乙醇胺的经过大量翻译后修饰的肽。已经研究了它作为抗生素,病毒进入的抑制剂,囊性纤维化的治疗剂以及肿瘤和脉管系统显像剂。杜拉霉素含有一个β-羟基化的Asp(Hya)和四个大环,包括必需的赖氨酸丙氨酸(Lal)交联。 Lal形成的机制尚不清楚。我们在这里表明,DalN通过向脱氢丙氨酸中添加Lys19来立体定向安装Lal。 DurN的结构揭示了一个不寻常的二聚体,并具有新的折叠。令人惊讶地,在与DurN结合的杜拉霉素的结构中,在Lal交联附近没有酶的残基。取而代之的是,底物的Hya15与Lal发生相互作用,表明它是催化过程中Lys19脱质子的基础。生化数据表明,DurN预组织了底物的反应构象,因此底物的Hya15可用作Lal形成的催化基础。

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