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Crystal Structure of the Zorbamycin-Binding Protein ZbmA, the Primary Self-Resistance Element in Streptomyces flavoviridis ATCC21892

机译:佐巴霉素结合蛋白ZbmA的晶体结构,黄链霉菌ATCC21892中的主要自我抗性元件。

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摘要

The bleomycins (BLMs), tallysomycins (TLMs), phleomycin, and zorbamycin (ZBM) are members of the BLM family of glycopeptide-derived antitumor antibiotics. The BLM-producing Streptomyces verticillus ATCC15003 and the TLM-producing Streptoalloteichus hindustanus E465-94 ATCC31158 both possess at least two self-resistance elements, an N-acetyltransferase and a binding protein. The N-acetyltransferase provides resistance by disrupting the metal-binding domain of the antibiotic that is required for activity, while the binding protein confers resistance by sequestering the metal-bound antibiotic and preventing drug activation via molecular oxygen. We recently established that the ZBM producer, Streptomyces flavoviridis ATCC21892, lacks the N-acetyltransferase resistance gene and that the ZBM-binding protein, ZbmA, is sufficient to confer resistance in the producing strain. To investigate the resistance mechanism attributed to ZbmA, we determined the crystal structures of apo and Cu(II)-ZBM-bound ZbmA at high resolutions of 1.90 and 1.65 Å, respectively. A comparison and contrast with other structurally characterized members of the BLM-binding protein family revealed key differences in the protein–ligand binding environment that fine-tunes the ability of ZbmA to sequester metal-bound ZBM and supports drug sequestration as the primary resistance mechanism in the producing organisms of the BLM family of antitumor antibiotics.
机译:博来霉素(BLM),塔利霉素(TLM),静脉霉素和佐巴霉素(ZBM)是糖肽衍生抗肿瘤抗生素BLM家族的成员。产生BLM的网状链霉菌ATCC15003和产生TLM的印度产链球菌E465-94 ATCC31158均具有至少两个自我抗性元件,N-乙酰基转移酶和结合蛋白。 N-乙酰基转移酶通过破坏活性所需的抗生素的金属结合结构域来提供抗药性,而结合蛋白则通过螯合金属结合的抗生素并通过分子氧防止药物活化来赋予抗药性。最近,我们确定ZBM生产者黄链霉菌ATCC21892缺乏N-乙酰基转移酶抗性基因,ZBM结合蛋白ZbmA足以在生产菌株中赋予抗性。为了研究归因于ZbmA的电阻机理,我们分别以1.90和1.65Å的高分辨率确定了载脂蛋白和Cu(II)-ZBM结合的ZbmA的晶体结构。与BLM结合蛋白家族的其他结构特征成员的比较和对比表明,蛋白质-配体结合环境的关键差异可微调ZbmA螯合金属结合的ZBM的能力并支持螯合作为主要抗药性机制BLM抗肿瘤抗生素家族的生产生物。

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