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Amphipathic -Strand Mimics as Potential Membrane Disruptive Antibiotics

机译:两亲链模拟物作为潜在的膜破坏性抗生素

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In recent years, there have been increasing numbers of bacterial strains emerging that are resistant to the currently available antibiotics. In the search for new antibiotics, attention has been focused on natural antimicrobial peptides that act by selectively disrupting the membranes of bacterial cells, a mechanism that is thought to be nonconducive to the development of resistance. It is desirable to mimic the structures and activities of these peptides while introducing properties such as resistance to proteolytic degradation, which make molecules more ideal for development as drugs. Described here is the design and synthesis of -strand mimetic oligomers based on alternating R-amino acids and azacyclohexenone units that segregate cationic lysine and hydrophobic valine side chains on opposite faces of the -strand. 1H NMR dilution studies demonstrated that despite the incorporation of alternating D- and L-amino acids in order to obtain facial amphiphilicity, these oligomers are capable of dimerizing to -sheet mimics in a manner similar to the oligomers containing all L-amino acids. The ability of the molecules to disrupt phospholipid vesicles mimicking the membranes of both bacterial and mammalian cells was investigated using a fluorescent dye leakage assay. Several of the oligomers were found to exhibit activity and selectivity for the bacterial over mammalian membranes. Overall, these studies demonstrate the promise of this class of molecules for the development of new potential antibiotics and provide information on the structural features that are important for activity.
机译:近年来,出现了对当前可用抗生素具有抗性的越来越多的细菌菌株。在寻找新的抗生素时,注意力集中在天然的抗菌肽上,该肽通过选择性地破坏细菌细胞的膜而起作用,这种机制被认为不利于耐药性的发展。理想的是在引入诸如对蛋白水解降解的抗性之类的特性的同时模拟这些肽的结构和活性,这使得分子更适合作为药物开发。在此描述的是基于交替的R氨基酸和氮杂环己烯酮单元的-链模拟低聚物的设计和合成,这些单元将阳离子赖氨酸和疏水性缬氨酸侧链隔离在-链的相对面上。 1 H NMR稀释研究表明,尽管为了获得面部两亲性而掺入了交替的D-和L-氨基酸,但是这些寡聚物能够以类似于包含所有L-氨基酸的寡聚物的方式二聚成片状模拟物。使用荧光染料渗漏测定法研究了分子破坏模仿细菌和哺乳动物细胞膜的磷脂囊泡的能力。发现几种低聚物对哺乳动物膜表现出对细菌的活性和选择性。总的来说,这些研究证明了这类分子对于开发新的潜在抗生素的前景,并提供了对活性重要的结构特征的信息。

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