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Apo B100 similarities to viral proteins suggest basis for LDL-DNA binding and transfection capacity.

机译:Apo B100与病毒蛋白的相似性为LDL-DNA结合和转染能力奠定了基础。

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LDL mediates transfection with plasmid DNA in a variety of cell types in vitro and in several tissues in vivo in the rat. The transfection capacity of LDL is based on apo B100, as arginine/lysine clusters, suggestive of nucleic acid-binding domains and nuclear localization signal sequences, are present throughout the molecule. Apo E may also contribute to this capacity because of its similarity to the Dengue virus capsid proteins and its ability to bind DNA. Synthetic peptides representing two apo B100 regions with prominent Arg/Lys clusters were shown to bind DNA. Region 1 (0014Lys-Ser0160) shares sequence motifs present in DNA binding domains of Interferon Regulatory Factors and Flaviviridae capsid/core proteins. It also contains a close analog of the B/E receptor ligand of apo E. Region 1 peptides, B1-1 (0014Lys-Glu0054) and B1-2 (0055Leu-Ala0096), mediate transfection of HeLa cells but are cytotoxic. Region 2 (3313Asp-Thr3431), containing the known B/E receptor ligand, shares analog motifs with the human herpesvirus 5 immediate-early transcriptional regulator (UL122) and Flaviviridae NS3 helicases. Region 2 peptides, B2-1 (3313Asp-Glu3355), and B2-2 (3356Gly-Thr3431) are ineffective in cell transfection and are noncytotoxic. These results confirm the role of LDL as a natural transfection vector in vivo, a capacity imparted by the apo B100, and suggest a basis for Flaviviridae cell entry.
机译:LDL在大鼠体内和体内多种组织中介导质粒DNA的转染。 LDL的转染能力基于载脂蛋白B100,因为精氨酸/赖氨酸簇存在于整个分子中,暗示着核酸结合域和核定位信号序列。由于Apo E与登革病毒衣壳蛋白相似,并且具有结合DNA的能力,因此Apo E也可能有助于这种能力。代表两个带有显着Arg / Lys簇的载脂蛋白B100区的合成肽显示与DNA结合。区域1(0014Lys-Ser0160)共享干扰素调节因子和黄病毒衣壳/核心蛋白的DNA结合域中存在的序列基序。它还包含apo E的B / E受体配体的紧密类似物。1区肽B1-1(0014Lys-Glu0054)和B1-2(0055Leu-Ala0096)介导HeLa细胞的转染,但具有细胞毒性。区域2(3313Asp-Thr3431)包含已知的B / E受体配体,与人类疱疹病毒5立即早期转录调节因子(UL122)和黄病毒科NS3解旋酶共享类似的基序。 2区肽B2-1(3313Asp-Glu3355)和B2-2(3356Gly-Thr3431)在细胞转染中无效,并且无细胞毒性。这些结果证实了LDL作为体内天然转染载体的作用,载脂蛋白B100赋予的能力,并为黄病毒科细胞的进入提供了基础。

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