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Anti-antimicrobial Peptides FOLDING-MEDIATED HOST DEFENSE ANTAGONISTS:FOLDING-MEDIATED HOST DEFENSE ANTAGONISTS

机译:抗菌肽以折叠介导的主机防御拮抗剂:折叠介导的主机防御拮抗剂

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摘要

Antimicrobial or host defense peptides are innate immune regulators found in all multicellular organisms. Many of them fold into membrane-bound α-helices and function by causing cell wall disruption in microorganisms. Herein we probe the possibility and functional implications of antimicrobial antagonism mediated by complementary coiled-coil interactions between antimicrobial peptides and de novo designed antagonists: anti-antimicrobial peptides. Using sequences from native helical families such as cathelicidins, cecropins, and magainins we demonstrate that designed antagonists can co-fold with antimicrobial peptides into functionally inert helical oligomers. The properties and function of the resulting assemblies were studied in solution, membrane environments, and in bacterial culture by a combination of chiroptical and solid-state NMR spectroscopies, microscopy, bioassays, and molecular dynamics simulations. The findings offer a molecular rationale for anti-antimicrobial responses with potential implications for antimicrobial resistance.
机译:抗菌肽或宿主防御肽是在所有多细胞生物中发现的先天免疫调节剂。它们中的许多折叠成膜结合的α螺旋并通过引起微生物细胞壁破坏而起作用。在本文中,我们探讨了抗菌肽与从头设计的拮抗剂:抗菌肽之间的互补卷曲螺旋相互作用介导的抗菌拮抗作用的可能性和功能含义。使用来自天然螺旋家族的序列,例如cathelicidins,cecropins和magainins,我们证明了设计的拮抗剂可以与抗菌肽共折叠为功能惰性的螺旋寡聚物。通过结合手性和固态NMR光谱,显微镜,生物测定和分子动力学模拟,研究了溶液,膜环境和细菌培养中所得组件的特性和功能。这些发现为抗微生物反应提供了分子基础,并可能对抗药性产生影响。

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