首页> 外文期刊>Journal of the American Chemical Society >SYNTHETIC MELITTIN, ITS ENANTIO, RETRO, AND RETROENANTIO ISOMERS, AND SELECTED CHIMERIC ANALOGS - THEIR ANTIBACTERIAL, HEMOLYTIC, AND LIPID BILAYER ACTION
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SYNTHETIC MELITTIN, ITS ENANTIO, RETRO, AND RETROENANTIO ISOMERS, AND SELECTED CHIMERIC ANALOGS - THEIR ANTIBACTERIAL, HEMOLYTIC, AND LIPID BILAYER ACTION

机译:合成蜂毒肽,其对映体,复古和复古对映异构体,以及选定的嵌合类似物-它们的抗菌,溶血和脂类双分子作用

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摘要

Melittin, the principal toxic component of bee venom, is a cationic, amphipathic, linear peptide composed of 26 amino acids, which exhibits unique structural and biological characteristics. It has high antimicrobial activity but also has the very detrimental property of killing eucaryotic cells, as illustrated by the lysis of sheep red cells. Several attempts have been made through synthesis of replacement analogs to advance the molecular understanding of the cause of these effects. We have now synthesized retro melittin, an amphipathic alpha-helical analog with reversal of sequence and therefore of the positions of charged and apolar residues, notably, the cluster of basic residues Lys(21)-Arg-Lys-Arg(24) near the C-terminus which is now located at positions 3-6 near the amino terminus. This peptide retained high antimicrobial activity against a range of test bacteria, but lost much of its hemolytic properties. Modification of the N-terminal positive charge by acetylation did not further alter the antibacterial activity or red cell lysis. The synthetic retroenantio melittin (all-D isomer) and its acetylated derivative both retained full antibacterial activity, but with complete elimination of the hemolytic effect. Therefore, the two effects of melittin have been separated. Melittin and these analogs promote electrical conductivity in lipid bilayers. Circular dichroism measurements showed that all of these peptides-normal, enantio, retro, retroenantio, and their acetylated derivatives-were 80-100% helical in 12-20% hexafluoro-2-propanol, a structure inducing solvent, and they are thought to be helical in lipid bilayers and bacterial membranes, Nonhelical analogs are inactive. It is believed that the helix dipole plays a major part in orienting the peptides in membranes. Active sequences are not unique, but sequence plays a role in peptide conformation and activity. Chirality has virtually no role in the antibacterial activity of normal and retro melittin analogs, which leads to the conclusion that these peptides do not function via a receptor or by enzymatic processing, but by self-aggregation and formation of ion-conducting pores.
机译:蜂毒的主要毒性成分蜂毒肽是由26个氨基酸组成的阳离子,两亲性线性肽,具有独特的结构和生物学特性。它具有很高的抗菌活性,但也具有杀死真核细胞的非常有害的特性,如羊红细胞的裂解所示。通过合成替代类似物已经进行了几次尝试,以提高分子对这些作用原因的理解。现在,我们合成了逆蜂毒肽,这是一种两亲性α-螺旋类似物,具有相反的序列,因此具有相反的电荷和非极性残基,尤其是碱性残基Lys(21)-Arg-Lys-Arg(24)的簇。 C末端现在位于氨基末端附近的3-6位置。该肽保留了对多种测试细菌的高抗菌活性,但丧失了许多溶血特性。通过乙酰化修饰N末端正电荷不会进一步改变抗菌活性或红细胞裂解。合成逆向蜂毒肽(全D异构体)及其乙酰化衍生物均保留了完整的抗菌活性,但完全消除了溶血作用。因此,蜂毒素的两种作用已被分开。蜂毒蛋白和这些类似物促进脂质双层中的电导率。圆二色性测量表明,所有这些肽(正构,对映体,逆向,逆向对映体及其乙酰化衍生物)在12-20%六氟-2-丙醇(一种结构诱导溶剂)中呈80-100%螺旋形,并且被认为是由于脂质双层和细菌膜中呈螺旋状,非螺旋状类似物没有活性。相信螺旋偶极子在使肽在膜中取向中起主要作用。活性序列不是唯一的,但是序列在肽的构象和活性中起作用。手性实际上对正常和逆向蜂毒肽类似物的抗菌活性没有作用,这得出的结论是这些肽不是通过受体或通过酶促加工而起作用,而是通过自聚集和形成离子传导孔而起作用。

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