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棕榈酰化 anoplin 的肽链截短对其二级结构和生物活性的影响。

Effects of truncation of the peptide chain on the secondary structure and bioactivities of palmitoylated anoplin.

机构信息

Institute of Chemistry, College of Science, University of the Philippines, Diliman, Quezon City, 1101, Philippines.

Institute of Chemistry, College of Science, University of the Philippines, Diliman, Quezon City, 1101, Philippines; Natural Sciences Research Institute, University of the Philippines, Diliman, Quezon City, 1101, Philippines.

出版信息

Peptides. 2018 Jun;104:7-14. doi: 10.1016/j.peptides.2018.03.019. Epub 2018 Mar 31.

Abstract

Anoplin (GLLKRIKTLL-NH) is of current interest due to its short sequence and specificity towards bacteria. Recent studies on anoplin have shown that truncation and acylation compromises its antimicrobial activity and specificity, respectively. In this study, truncated analogues (pal-ano-9 to pal-ano-5) of palmitoylated anoplin (pal-anoplin) were synthesized to determine the effects of C-truncation on its bioactivities. Moreover, secondary structure of each analogue using circular dichroism (CD) spectroscopy was determined to correlate with bioactivities. Interestingly, pal-anoplin, pal-ano-9 and pal-ano-6 were helical in water, unlike anoplin. In contrast, pal-ano-8, pal-ano-7 and pal-ano-5, with polar amino acid residues at the C-terminus, were random coil in water. Nevertheless, all the peptides folded into helical structures in 30% trifluoroethanol/water (TFE/HO) except for the shortest analogue pal-ano-5. Hydrophobicity played a significant role in the enhancement of activity against bacteria E. coli and S. aureus as all lipopeptides including the random coil pal-ano-5 were more active than the parent anoplin. Meanwhile, the greatest improvement in activity against the fungus C. albicans was observed for pal-anoplin analogues (pal-ano-9 and pal-ano-6) that were helical in water. Although, hydrophobicity is a major factor in the secondary structure and antimicrobial activity, it appears that the nature of amino acids at the C-terminus also influence folding of lipopeptides in water and its antifungal activity. Moreover, the hemolytic activity of the analogues was found to correlate with hydrophobicity, except for the least hemolytic, pal-ano-5. Since most of the analogues are more potent and shorter than anoplin, they are promising drug candidates for further development.

摘要

由于其短序列和对细菌的特异性,阿诺平(GLLKRIKTLL-NH)目前受到关注。最近对阿诺平的研究表明,截短和酰化分别损害了其抗菌活性和特异性。在这项研究中,合成了棕榈酰化阿诺平(pal-anoplin)的截断类似物(pal-ano-9 至 pal-ano-5),以确定 C 截断对其生物活性的影响。此外,使用圆二色性(CD)光谱确定了每个类似物的二级结构与其生物活性相关。有趣的是,与阿诺平不同,pal-anoplin、pal-ano-9 和 pal-ano-6 在水中呈螺旋状。相比之下,带有极性氨基酸残基在 C 末端的 pal-ano-8、pal-ano-7 和 pal-ano-5 在水中呈无规卷曲。然而,除了最短的类似物 pal-ano-5 外,所有肽在 30%三氟乙醇/水(TFE/HO)中均折叠成螺旋结构。疏水性在增强对细菌大肠杆菌和金黄色葡萄球菌的活性方面起着重要作用,因为所有包括无规卷曲的 pal-ano-5 在内的脂肽都比亲代阿诺平更活跃。同时,对真菌白色念珠菌的活性提高最大的是在水中呈螺旋状的 pal-anoplin 类似物(pal-ano-9 和 pal-ano-6)。尽管疏水性是二级结构和抗菌活性的主要因素,但似乎 C 末端氨基酸的性质也会影响脂肽在水中的折叠及其抗真菌活性。此外,发现类似物的溶血活性与疏水性相关,除了溶血活性最低的 pal-ano-5 外。由于大多数类似物比阿诺平更有效且更短,因此它们是进一步开发的有前途的候选药物。

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