首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Role of Aromatic Amino Acids in Lipopolysaccharide and Membrane Interactions of Antimicrobial Peptides for Use in Plant Disease Control
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Role of Aromatic Amino Acids in Lipopolysaccharide and Membrane Interactions of Antimicrobial Peptides for Use in Plant Disease Control

机译:芳香氨基酸在脂多糖中的作用以及用于植物病害防治的抗菌肽的膜相互作用

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摘要

KYE28 (KYEITTIHNLFRKLTHRLFRRNFGYT-LR), the representative sequence of helix D of heparin co-factor II, was demonstrated to be potent against agronomically important Gram-negative plant pathogens Xanthomonas vesicatoria and Xanthomonas oryzae, capable of inhibiting disease symptoms in detached tomato leaves. NMR studies in the presence of lipopolysaccharide provided structural insights into the mechanisms underlying this, notably in relationship to outer membrane permeabilization. The three-dimensional solution structure of KYE28 in LPS is characterized by an N-terminal helical segment, an intermediate loop followed by another short helical stretch, and an extended C terminus. The two termini are in close proximity to each other via aromatic packing interactions, whereas the positively charged residues form an exterior polar shell. To further demonstrate the importance of the aromatic residues for this, a mutant peptide KYE28A, with Ala substitutions at Phe11, Phe19, Phe23, and Tyr25 was designed, which showed attenuated antimicrobial activity at high salt concentrations, as well as lower membrane disruption and LPS binding abilities compared with KYE28. In contrast to KYE28, KYE28A adopted an extended helical structure in LPS with extended N and C termini. Aromatic packing interactions were completely lost, although hydrophobic interaction between the side chains of hydrophobic residues were still partly retained, imparting an amphipathic character and explaining its residual antimicrobial activity and LPS binding as observed from ellipsometry and isothermal titration calorimetry. We thus present key structural aspects of KYE28, constituting an aromatic zipper, of potential importance for the development of novel plant protection agents and therapeutic agents.
机译:肝素辅因子II螺旋D的代表序列KYE28(KYEITTIHNLFRKLTHRLFRRNFGYT-LR)被证明对农学上重要的革兰氏阴性植物病原体Xanthomonas vesicatoria和Xanthomonas oryzae具有有效的抑制能力,能够抑制分离番茄叶片的病害症状。在存在脂多糖的情况下进行的NMR研究提供了对其潜在机制的结构见解,尤其是与外膜通透性有关的机制。 LPS中KYE28的三维解决方案结构的特征是N端螺旋段,中间环,随后是另一个短螺旋延伸,以及延伸的C末端。两个末端通过芳族堆积相互作用彼此紧邻,而带正电荷的残基形成外部极性壳。为了进一步证明芳香族残基对此的重要性,突变肽KYE28A在Phe 11 ,Phe 19 ,Phe 23 具有Ala取代,并设计了Tyr 25 ,与KYE28相比,该盐在高盐浓度下显示了减弱的抗菌活性,并降低了膜破坏和LPS的结合能力。与KYE28相比,KYE28A在LPS中采用了延伸的N和C末端的延伸螺旋结构。尽管仍然保留了疏水残基侧链之间的疏水性相互作用,但完全失去了芳香堆积相互作用,从而赋予了两亲性,并解释了其残留的抗菌活性和LPS结合,如通过椭圆光度法和恒温滴定法所观察到的。因此,我们介绍了构成芳香族拉链的KYE28的关键结构方面,它们对于开发新型植物保护剂和治疗剂具有潜在的重要性。

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