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Design, preparation and directional insertion of peptides into lipid bilayer membrane and their application for the preparation of liposome of which surface could be coated by externally added antibody

机译:肽的设计,制备和定向插入脂质双层膜的制备脂质体的施用,其可以通过外部添加的抗体涂覆表面

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Pf3 coat protein, a protein coded by bacteriophage Pf3, is a short membrane spanning protein consisting from 44 amino acid residues. Its mutant protein Pf3-3L, having three additional Leu residues in its transmembrane region, was demonstrated to be spontaneously inserted into large unilamellar vesicle (LUV), even in the absence of protein machineries or membrane potential. However, detailed interaction manner of peptide with LUV are not yet fully understood. In the present study, we designed two Pf3 derivatives of 3L-DR and 3L-RD in which His, T7 or Myc tags are incorporated. These mutants were expressed in bacteria and homogeneously purified by Ni Sepharose column chromatography. When they were incubated with preformed LUV, their spontaneous insertion into LUV was observed. Because both N- and C-terminal of newly designed peptides contain either T7 or Myc tag, even when one of N-or C-terminus was digested with trypsin, resulting truncated peptide could be detected using antibody against the tags present in the opposite C-or N-terminal. Using this property of the peptides, topologies of newly designed peptides embedded into LUV were clearly determined. Furthermore, we applied the membrane anchoring property of 3L-DR for development of a protein A derivative which could be spontaneously inserted into liposomal membrane. When parental small IgG binding unit of protein A was mixed with liposome, its binding to the liposome was not observed, however, its fusion peptide with 3L-DR was spontaneously incorporated into liposomal membrane.
机译:PF3涂层蛋白,由噬菌体PF3编码的蛋白质是由44个氨基酸残基组成的短膜跨越蛋白质。其突变蛋白PF3-31在其跨膜区域中具有三个额外的Leu残基,证明即使在没有蛋白质机械或膜电位的情况下,也可以自发地插入大的Unilamellar囊泡(Luv)中。然而,尚未完全理解具有LUV的肽的详细相互作用方式。在本研究中,我们设计了两个PF3衍生物的3L-DR和3L-RD,其中他的T7或MYC标签都被融合。这些突变体在细菌中表达并通过Ni Sepharose柱色谱法均匀纯化。当它们与预制LUV孵育时,观察到它们的自发插入LUV。因为新设计的肽的N-和C末端含有T7或MyC标签,所以即使用胰蛋白酶消化N-或C-末端之一,可以使用抗体对相对的标签的标签来检测所得到的截短肽 - n末端。使用肽的这种性质,清楚地确定了嵌入Luv中的新设计肽的拓扑。此外,我们施加了3L-DR的膜锚固性能,用于蛋白质的蛋白质A衍生物,其可以自发地插入脂质体膜中。当蛋白质A的亲本小IgG结合单元与脂质体混合时,未观察到其与脂质体的结合,然而,其与3L-DR的融合肽自发地掺入脂质体膜中。

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