首页> 外文期刊>Journal of the American Chemical Society >Isolation, Structure, and Antibacterial Activity of Philipimycin, A Thiazolyl Peptide Discovered from Actinoplanes philippinensis MA7347
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Isolation, Structure, and Antibacterial Activity of Philipimycin, A Thiazolyl Peptide Discovered from Actinoplanes philippinensis MA7347

机译:菲律宾放线菌MA7347噻唑基肽Philipimycin的分离,结构及抑菌活性

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Bacterial resistance to antibiotics, particularly to multiple drug resistant antibiotics, is becoming cause for significant concern. The only really viable course of action is to discover new antibiotics with novel mode of actions. Thiazolyl peptides are a class of natural products that are architecturally complex potent antibiotics but generally suffer from poor solubility and pharmaceutical properties. To discover new thiazolyl peptides potentially with better desired properties, we designed a highly specific assay with a pair of thiazomycin sensitive and resistant strains of Staphylococcus aureus, which led to the discovery of philipimycin, a new thiazolyl peptide glycoside. It was isolated along with an acid-catalyzed degradation product by bioassay-guided fractionation. Structure of both compounds was elucidated by extensive application of 2D NMR, 1D TOCSY, and HRESIFT-MS/MS. Both compounds showed strong antibacterial activities against Gram-positive bacteria including MRSA and exhibited MIC values ranging from 0.015 to 1 μg/mL. Philipimycin was significantly more potent than the degradation product. Both compounds showed selective inhibition of protein synthesis, indicating that they targeted the ribosome. Philipimycin was effective in vivo in a mouse model of S. aureus infection exhibiting an ED_(50) value of 8.4 mg/kg. The docking studies of philipimycin suggested that a part of the molecule interacts with the ribosome and another part with Pro_(23), Pro_(22), and Pro_(26) of L11 protein, which helped in explaining the differential of activities between the sensitive and resistant strains. The design and execution of the bioassay, the isolation, structure, in vitro and in vivo antibacterial activity, and docking studies of philipimycin and its degradation product are described.
机译:对抗生素,特别是对多种耐药抗生素的细菌耐药性正引起人们的极大关注。唯一切实可行的行动方案是发现具有新颖作用方式的新抗生素。噻唑基肽是一类天然产物,其在结构上是有效的抗生素,但通常具有较差的溶解度和药物特性。为了发现可能具有更好所需特性的新的噻唑基肽,我们设计了一对高灵敏度的检测方法,该方法使用一对对噻唑霉素敏感且耐药的金黄色葡萄球菌菌株,从而发现了新的噻唑基肽糖苷philipimycin。通过生物测定指导的分馏将其与酸催化的降解产物分离。通过广泛应用2D NMR,1D TOCSY和HRESIFT-MS / MS阐明了这两种化合物的结构。两种化合物均对包括MRSA在内的革兰氏阳性细菌显示出强大的抗菌活性,并且其MIC值范围为0.015至1μg/ mL。 Philipimycin比降解产物更有效。两种化合物均显示出对蛋白质合成的选择性抑制,表明它们靶向核糖体。 Philipimycin在表现出ED_(50)值为8.4 mg / kg的金黄色葡萄球菌感染的小鼠模型中体内有效。 philipimycin的对接研究表明,该分子的一部分与核糖体相互作用,另一部分与L11蛋白的Pro_(23),Pro_(22)和Pro_(26)相互作用,这有助于解释敏感分子之间的活性差异。和抗性菌株。描述了生物测定的设计和执行,分离,结构,体外和体内抗菌活性以及对苯丙霉素及其降解产物的对接研究。

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