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Powerful workhorses for antimicrobial peptide expression and characterization

机译:抗菌肽表达和表征的强大工具

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摘要

Discovery of antimicrobial peptides (AMP) is to a large extent based on screening of fractions of natural samples in bacterial growth inhibition assays. However, the use of bacteria is not limited to screening for antimicrobial substances. In later steps, bioengineered “bugs” can be applied to both production and characterization of AMPs. Here we describe the idea to use genetically modified Escherichia coli strains for both these purposes. This approach allowed us to investigate SpStrongylocins 1 and 2 from the purple sea urchin Strongylocentrotus purpuratus only based on sequence information from a cDNA library and without previous direct isolation or chemical synthesis of these peptides. The recombinant peptides are proved active against all bacterial strains tested. An assay based on a recombinant E. coli sensor strain expressing insect luciferase, revealed that SpStrongylocins are not interfering with membrane integrity and are therefore likely to have intracellular targets.
机译:抗菌肽(AMP)的发现很大程度上是基于细菌生长抑制测定中天然样品组分的筛选。然而,细菌的使用不限于筛选抗微生物物质。在随后的步骤中,可以将生物工程“虫子”应用于AMP的生产和表征。在这里,我们描述了将遗传修饰的大肠杆菌菌株用于这两个目的的想法。这种方法使我们仅基于cDNA文库中的序列信息即可研究紫色海胆紫斑病菌(Strytylocentrotus purpuratus)中的SpStrongylocins 1和2,而无需事先直接分离或化学合成这些肽。重组肽对所有测试的细菌菌株均具有活性。基于表达昆虫荧光素酶的重组大肠杆菌传感器菌株的测定表明,SpStrongylocins不干扰膜完整性,因此可能具有细胞内靶标。

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