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反义 2'-脱氧、2'-氟阿拉伯糖核酸(2'F-ANAs)寡核苷酸:体外基因表达的感应性沉默剂,其效力可被脂肪酸增强。

Antisense 2'-Deoxy, 2'-Fluroarabino Nucleic Acids (2'F-ANAs) Oligonucleotides: In Vitro Gymnotic Silencers of Gene Expression Whose Potency Is Enhanced by Fatty Acids.

机构信息

Department of Medical Oncology, Albert Einstein-Montefiore Cancer Center, Montefiore Medical Center, Bronx, New York, USA.

出版信息

Mol Ther Nucleic Acids. 2012 Sep 18;1(10):e43. doi: 10.1038/mtna.2012.35.

DOI:10.1038/mtna.2012.35
PMID:23344235
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3499694/
Abstract

Gymnosis is the process of the delivery of antisense oligodeoxynucleotides to cells, in the absence of any carriers or conjugation, that produces sequence-specific gene silencing. While gymnosis was originally demonstrated using locked nucleic acid (LNA) gapmers, 2'-deoxy-2'fluroarabinonucleic acid (2'F-ANA) phosphorothioate gapmer oligonucleotides (oligos) when targeted to the Bcl-2 and androgen receptor (AR) mRNAs in multiple cell lines in tissue culture, are approximately as effective at silencing of Bcl-2 expression as the iso-sequential LNA congeners. In LNCaP prostate cancer cells, gymnotic silencing of the AR by a 2'F-ANA phosphorothioate gapmer oligo led to downstream silencing of cellular prostate-specific antigen (PSA) expression even in the presence of the androgenic steroid R1881 (metribolone), which stabilizes cytoplasmic levels of the AR. Furthermore, gymnotic silencing occurs in the absence of serum, and silencing by both LNA and 2'F-ANA oligos is augmented in serum-free (SF) media in some cell lines when they are treated with oleic acid and a variety of ω-6 polyunsaturated fatty acids (ω-6 PUFAs), but not by an aliphatic (palmitic) fatty acid. These results significantly expand our understanding of and ability to successfully manipulate the cellular delivery of single-stranded DNA molecules in vitro.Molecular Therapy - Nucleic Acids (2012) 1, e43; doi:10.1038/mtna.2012.35; advance online publication 18 September 2012.

摘要

无载体无连接物反义寡核苷酸转染细胞的基因沉默方法称为基因电转染,它能特异性地沉默基因。最初,基因电转染是用锁核酸(LNA) Gapmer 来实现的,而在组织培养的多种细胞系中,靶向 Bcl-2 和雄激素受体(AR)mRNA 的 2'-脱氧-2'-氟代阿拉伯糖核酸(2'F-ANA)硫代磷酸 Gapmer 寡核苷酸(oligo)与 LNA 同系物相比,对 Bcl-2 表达的沉默作用几乎相同。在 LNCaP 前列腺癌细胞中,用 2'F-ANA 硫代磷酸 Gapmer 寡核苷酸对 AR 的基因电转染沉默导致下游细胞前列腺特异性抗原(PSA)表达的沉默,即使存在雄激素类固醇 R1881(美替拉酮),它稳定了 AR 的细胞质水平。此外,基因电转染在没有血清的情况下发生,并且在某些细胞系的无血清(SF)培养基中,当用油酸和多种 ω-6 多不饱和脂肪酸(ω-6 PUFAs)处理时,LNA 和 2'F-ANA 寡核苷酸的沉默作用增强,但不是用脂酸(棕榈酸)。这些结果大大扩展了我们对体外单链 DNA 分子成功进行细胞转染的理解和能力。分子治疗-核酸(2012)1,e43;doi:10.1038/mtna.2012.35; 在线提前发布 2012 年 9 月 18 日。

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