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Temporin-SHf a New Type of Phe-rich and Hydrophobic Ultrashort Antimicrobial Peptide

机译:Temporin-SHf一种新型的富含Phe的疏水性超短抗菌肽

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摘要

Because issues of cost and bioavailability have hampered the development of gene-encoded antimicrobial peptides to combat infectious diseases, short linear peptides with high microbial cell selectivity have been recently considered as antibiotic substitutes. A new type of short antimicrobial peptide, designated temporin-SHf, was isolated and cloned from the skin of the frog Pelophylax saharica. Temporin-SHf has a highly hydrophobic sequence (FFFLSRIFa) and possesses the highest percentage of Phe residues of any known peptide or protein. Moreover, it is the smallest natural linear antimicrobial peptide found to date, with only eight residues. Despite its small size and hydrophobicity, temporin-SHf has broad-spectrum microbicidal activity against Gram-positive and Gram-negative bacteria and yeasts, with no hemolytic activity. CD and NMR spectroscopy combined with restrained molecular dynamics calculations showed that the peptide adopts a well defined non-amphipathic α-helical structure from residue 3 to 8, when bound to zwitterionic dodecyl phosphocholine or anionic SDS micelles. Relaxation enhancement caused by paramagnetic probes showed that the peptide adopts nearly parallel orientations to the micelle surface and that the helical structure is stabilized by a compact hydrophobic core on one face that penetrates into the micelle interior. Differential scanning calorimetry on multilamellar vesicles combined with membrane permeabilization assays on bacterial cells indicated that temporin-SHf disrupts the acyl chain packing of anionic lipid bilayers, thereby triggering local cracks and microbial membrane disintegration through a detergent-like effect probably via the carpet mechanism. The short length, compositional simplicity, and broad-spectrum activity of temporin-SHf make it an attractive candidate to develop new antibiotic agents.
机译:因为成本和生物利用度的问题已经阻碍了基因编码的抗微生物肽抗击传染病的发展,所以近来具有高微生物细胞选择性的线性短肽被认为是抗生素的替代品。从青蛙Pelophylax saharica的皮肤中分离并克隆了一种新型的短抗微生物肽,称为temporin-SHf。 Temporin-SHf具有高度疏水的序列(FFFLSRIFa),并具有任何已知肽或蛋白质中Phe残基的最高百分比。此外,它是迄今为止发现的最小的天然线性抗菌肽,只有八个残基。尽管其体积小且疏水性强,但temporin-SHf具有针对革兰氏阳性和革兰氏阴性细菌和酵母的广谱杀微生物活性,没有溶血活性。 CD和NMR光谱结合受限的分子动力学计算表明,该肽在与两性离子十二烷基磷酸胆碱或阴离子SDS胶束结合时,从残基3至8采用良好定义的非两亲性α螺旋结构。由顺磁性探针引起的弛豫增强表明,肽采取与胶束表面几乎平行的方向,并且螺旋结构由渗透到胶束内部的一个面上的紧密疏水核稳定。多层囊泡的差示扫描量热法结合细菌细胞的膜通透分析表明,temporin-SHf破坏了阴离子脂质双层的酰基链堆积,从而通过类似洗涤剂的作用触发了局部裂缝和微生物膜的分解,可能是通过地毯机制。 temporin-SHf的短长度,组成简单和广谱活性使其成为开发新型抗生素的诱人候选。

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