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首页> 外文期刊>Bulletin of the Korean Chemical Society >Structural and Functional Characterization of CRAMP-18 Derived from a Cathelicidin-Related Antimicrobial Peptide CRAMP
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Structural and Functional Characterization of CRAMP-18 Derived from a Cathelicidin-Related Antimicrobial Peptide CRAMP

机译:从Cathelicidin相关的抗菌肽CRAMP衍生的CRAMP-18的结构和功能表征

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摘要

CRAMP was identified from a cDNA clone derived from a mouse femoral marrow cells as a member of cathelicidin-derived antimicrobial peptide. Tertiary structure of CRAMP in TFE/H2O (1 : 1, v/v) solution has been determined by NMR spectroscopy previously and consists of two amphipathic メ-helices from Leu4 to Lys10 and from Gly16 to Leu33. These two helices are connected by a flexible region from Gly11 to Gly16. Analysis of series of fragments composed of various portion of CRAMP revealed that an 18-residue fragment with the sequence from Gly16 to Leu33 (CRAMP-18) was found to retain antibacterial activity without cytotoxicity. The effects of two Phe residues at positions 14 and 15 of CRAMP-18 on structure, antibacterial activity, and interaction with lipid membranes were investigated by Phe14,15 ℃ Ala substitution (CRAMP-18-A) in the present study. Substitution of Phe with Ala in CRAMP-18 caused a significant reduction on antibacterial and membrane-disrupting activities. Tertiary structures of CRAMP-18 in 50% TFE/H2O (1 : 1, v : v) solution shows amphipathic メ-helix, from Glu2 to Leu18, while CRAMP-18-A has relatively short amphipathic メ-helix from Leu4 to Ala15. These results suggest that the hydrophobic property of Phe14 and Phe15 in CRAMP-18 is essential for its antibacterial activity, メ-helical structure, and interactions with phospholipid membranes.
机译:从来源于小鼠股骨髓细胞的cDNA克隆中鉴定出CRAMP,其是由cathelicidin衍生的抗菌肽的成员。先前已通过NMR光谱法确定了TFE / H2O(1:1,v / v)溶液中CRAMP的三级结构,它由Leu4至Lys10和Gly16至Leu33两个两亲性α-螺旋组成。这两个螺旋通过从Gly11到Gly16的柔性区域连接。对由CRAMP的不同部分组成的一系列片段的分析表明,发现一个具有18个残基的片段,其序列从Gly16至Leu33(CRAMP-18)保留了抗菌活性,而没有细胞毒性。在本研究中,通过Phe14,15℃Ala取代(CRAMP-18-A)研究了CRAMP-18的第14和15位的两个Phe残基对结构,抗菌活性以及与脂质膜的相互作用的影响。在CRAMP-18中用Ala取代Phe导致抗菌和破坏膜的活性大大降低。 CRAMP-18的三级结构在50%TFE / H2O(1:1,v:v)溶液中显示出两亲性メ螺旋,从Glu2到Leu18,而CRAMP-18-A具有相对短的两亲性メ螺旋,从Leu4到Ala15。 。这些结果表明CRAMP-18中Phe14和Phe15的疏水性对于其抗菌活性,α-螺旋结构以及与磷脂膜的相互作用至关重要。

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