首页> 外国专利> BRANCHED AMPHIPATHIC OLIGO-PEPTIDES THAT SELF-ASSEMBLE INTO VESICLES

BRANCHED AMPHIPATHIC OLIGO-PEPTIDES THAT SELF-ASSEMBLE INTO VESICLES

机译:可自组装到囊泡中的支链两亲寡肽

摘要

The present invention provides branched amphipathic peptides and vesicles formed thereof. The peptides comprise a polar/positively charged C-terminal segment, a branch point, and two hydrophobic N -terminal segments extending from the branch point. The vesicles are formed using a plurality of first and second peptides, wherein the first peptide has a different chain length from the second peptide. When a plurality of the first and second peptides are mixed together, they self-assemble to form small spheres defined by a membrane consisting of an interlocking peptide network bilayer and having a liquid-receiving interior space (i.e., hollow core). In the bilayer, the respective hydrophobic segments of the peptides form beta-sheet structures having a hydrogen bond-stabilized, anti-parallel orientation in which the opposed sequences interlock to form a zipper-like structure in three dimensions. Thus, the peptide assembly (i.e., vesicle) can be held together at reduced concentrations where lipid vesicles would breakdown.
机译:本发明提供了分支的两亲性肽及其形成的囊泡。所述肽包含极性/带正电的C-末端区段,分支点和从所述分支点延伸的两个疏水性N-末端区段。使用多个第一和第二肽形成囊泡,其中第一肽具有与第二肽不同的链长。当多个第一和第二肽混合在一起时,它们自组装形成小球,该小球由膜构成,该膜由互锁的肽网络双层构成,并具有液体容纳内部空间(即中空核)。在双层中,肽的各个疏水区段形成具有氢键稳定的反平行取向的β-折叠结构,其中相反的序列互锁以形成三维的拉链状结构。因此,肽组装体(即,囊泡)可以以降低的浓度保持在一起,其中脂质囊泡将分解。

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