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首页> 外文期刊>Biochemistry >Intracellular Uptake and Inhibition of Gene Expression by PNAs and PNA-Peptide Conjugates.
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Intracellular Uptake and Inhibition of Gene Expression by PNAs and PNA-Peptide Conjugates.

机译:PNA和PNA肽缀合物的细胞内摄取和基因表达抑制。

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Peptide nucleic acids (PNAs) offer a distinct option for silencing gene expression in mammalian cells. However, the full value of PNAs has not been realized, and the rules governing the recognition of cellular targets by PNAs remain obscure. Here we examine the uptake of PNAs and PNA-peptide conjugates by immortal and primary human cells and compare peptide-mediated and DNA/lipid-mediated delivery strategies. We find that both peptide-mediated and lipid-mediated delivery strategies promote entry of PNA and PNA-peptide conjugates into cells. Confocal microscopy reveals a punctate distribution of PNA and PNA-peptide conjugates regardless of the delivery strategy used. Peptide d(AAKK)(4) and a peptide containing a nuclear localization sequence (NLS) promote the spontaneous delivery of antisense PNAs into cultured cells. The PNA-d(AAKK)(4) conjugate inhibits expression of human caveolin 1 (hCav-1) in both HeLa and primary endothelial cells. DNA/lipid-mediated delivery requires less PNA, while peptide-mediated delivery is simpler and is less toxic to primary cells. The ability of PNA-peptide conjugates to enter primary and immortal human cells and inhibit gene expression supports the use of PNAs as antisense agents for investigating the roles of proteins in cells. Both DNA/lipid-mediated and peptide-mediated delivery strategies are efficient, but the compartmentalized localization of PNAs suggests that improving the cellular distribution may lead to increased efficacy.
机译:肽核酸(PNA)为沉默哺乳动物细胞中的基因表达提供了独特的选择。但是,PNA的全部价值尚未实现,并且控制PNA识别细胞靶标的规则仍然不清楚。在这里,我们研究了永生和原代人类细胞对PNA和PNA肽结合物的摄取,并比较了肽介导的和DNA /脂质介导的递送策略。我们发现,肽介导的和脂质介导的递送策略均能促进PNA和PNA-肽共轭物进入细胞。共聚焦显微镜揭示了PNA和PNA-肽共轭物的点状分布,无论使用何种递送策略。肽d(AAKK)(4)和含有核定位序列(NLS)的肽可促进反义PNA自发传递到培养细胞中。 PNA-d(AAKK)(4)偶联物抑制HeLa和原代内皮细胞中人小窝蛋白1(hCav-1)的表达。 DNA /脂质介导的传递需要较少的PNA,而肽介导的传递更简单并且对原代细胞的毒性较小。 PNA-肽缀合物进入原代和永生人类细胞并抑制基因表达的能力支持使用PNA作为反义剂来研究蛋白质在细胞中的作用。 DNA /脂质介导的和肽介导的递送策略都是有效的,但PNA的局部定位表明改善细胞分布可能导致功效增加。

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