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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Conformational and functional studies of gomesin analogues by CD, EPR and fluorescence spectroscopies
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Conformational and functional studies of gomesin analogues by CD, EPR and fluorescence spectroscopies

机译:CD,EPR和荧光光谱法研究果胶类似物的构象和功能研究

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The aim of this work was to examine the bioactivity and the conformational behavior of some gomesin (Gm) analogues in different environments that mimic the biological membrane/water interface. Thus, manual peptide synthesis was performed by the solid-phase method, antimicrobial activity was evaluated by a liquid growth inhibition assay, and conformational studies were performed making use of several spectroscopic techniques: CD, fluorescence and EPR. [TOAC(1)]-Gm; [TOAC(1), Ser(2,6,11,15)]-Gm; [Trp(7)]-Gm; [Ser(2,6,11,15), Trp(7)]-Gm; [Trp(9)]-Gm; and [Ser(2,6,11,15), Trp(9)]-Gm were synthesized and tested. The results indicated that incorporation of TOAC or Trp caused no significant reduction of antimicrobial activity; the cyclic analogues presented a beta-hairpin conformation similar to that of Gm. All analogues interacted with negatively charged SDS both above and below the detergent's critical micellar concentration (cmc). In contrast, while Gm and [TOAC(1)]-Gm required higher LPC concentrations to bind to micelles of this zwitterionic detergent, the cyclic Trp derivatives and the linear derivatives did not seem to interact with this membrane-mimetic system. These data corroborate previous results that suggest that electrostatic interactions with the lipid bilayer of microorganisms play an important role in the mechanism of action of gomesin. Moreover, the results show that hydrophobic interactions also contribute to membrane binding of this antimicrobial peptide. (c) 2006 Elsevier B.V. All rights reserved.
机译:这项工作的目的是在模拟生物膜/水界面的不同环境中研究某些戈麦素(Gm)类似物的生物活性和构象行为。因此,通过固相方法进行手工肽合成,通过液体生长抑制测定法评估抗菌活性,并利用几种光谱技术进行构象研究:CD,荧光和EPR。 [TOAC(1)]-Gm; [TOAC(1),Ser(2,6,11,15)]-Gm; [Trp(7)]-Gm; [Ser(2,6,11,15),Trp(7)]-Gm; [Trp(9)]-Gm;合成并测试了[Ser(2,6,11,15),Trp(9)]-Gm。结果表明,加入TOAC或Trp不会引起抗菌活性的显着降低。环状类似物的β-发夹构象与Gm相似。在洗涤剂的临界胶束浓度(cmc)之上和之下,所有类似物均与带负电的SDS相互作用。相反,尽管Gm和[TOAC(1)]-Gm需要更高的LPC浓度才能与该两性离子去污剂的胶束结合,但环状Trp衍生物和线性衍生物似乎并未与该膜模拟系统相互作用。这些数据证实了先前的结果,这些结果表明与微生物的脂质双层的静电相互作用在戈梅菌素的作用机理中起重要作用。而且,结果表明疏水相互作用也有助于该抗微生物肽的膜结合。 (c)2006 Elsevier B.V.保留所有权利。

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