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A 2',4'-Bridged Nucleic Acid Containing 2-Pyridone as a Nucleobase: Efficient Recognition of a C⋅G Interruption by Triplex Formation with a Pyrimidine Motif.一种以2-吡啶酮作为碱基的2',4'-桥连核酸:通过与嘧啶基序形成三链体有效识别C⋅G中断。
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Dual Recognition of Double-Stranded DNA by 2'-Aminoethoxy-Modified Oligonucleotides.2'-氨基乙氧基修饰的寡核苷酸对双链DNA的双重识别
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Sequence conversion by single strand oligonucleotide donors via non-homologous end joining in mammalian cells.通过非同源末端连接在哺乳动物细胞中单链寡核苷酸供体的序列转换。
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Recognition of CG interrupting site by W-shaped nucleoside analogs (WNA) having the pyrazole ring in an anti-parallel triplex DNA.W 型核苷类似物(WNA)中环丙嘧啶核苷在反平行三螺旋 DNA 中识别 CG 中断点。
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Repair of DNA lesions associated with triplex-forming oligonucleotides.与三链形成寡核苷酸相关的DNA损伤修复
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6
Selectivity and affinity of DNA triplex forming oligonucleotides containing the nucleoside analogues 2'-O-methyl-5-(3-amino-1-propynyl)uridine and 2'-O-methyl-5-propynyluridine.含有核苷类似物2'-O-甲基-5-(3-氨基-1-丙炔基)尿苷和2'-O-甲基-5-丙炔基尿苷的DNA三链形成寡核苷酸的选择性和亲和力。
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7
Targeted gene knock in and sequence modulation mediated by a psoralen-linked triplex-forming oligonucleotide.由补骨脂素连接的三链形成寡核苷酸介导的靶向基因敲入和序列调控。
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Recognition of T.A interruption by 2',4'-BNAs bearing heteroaromatic nucleobases through parallel motif triplex formation.通过带有杂芳族核碱基的2',4'-BNA形成平行基序三链体来识别T.A中断。
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Extensive sugar modification improves triple helix forming oligonucleotide activity in vitro but reduces activity in vivo.广泛的糖修饰可提高三链螺旋形成寡核苷酸的体外活性,但会降低其体内活性。
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10
Modification of the aromatic ring of the WNA analogues for expansion of the triplex recognition codes.对WNA类似物的芳香环进行修饰以扩展三链体识别密码。
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靶向哺乳动物细胞中含有新型碱基类似物的三聚体形成寡核苷酸的中断多嘧啶:多嘌呤序列。

Targeting of an interrupted polypurine:polypyrimidine sequence in mammalian cells by a triplex-forming oligonucleotide containing a novel base analogue.

机构信息

National Institute on Aging, National Institutes of Health, Baltimore, Maryland 21224, USA.

出版信息

Biochemistry. 2010 Sep 14;49(36):7867-78. doi: 10.1021/bi100797z.

DOI:10.1021/bi100797z
PMID:20701359
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2935506/
Abstract

The DNA triple helix consists of a third strand of nucleic acid lying in the major groove of an intact DNA duplex. The most stable triplexes form on polypurine:polypyrimidine sequences, and pyrimidine interruptions in the purine strand are destabilizing. Sequence stringency is imparted by specific Hoogsteen hydrogen bonds between third strand bases and the purine bases in the duplex. Appropriate base and sugar modifications of triple helix-forming oligonucleotides (TFOs) confer chromosome targeting activity in living cells. However, broad utilization of TFOs as gene targeting reagents in mammalian cells has been limited by the requirement for homopurine target sequences. Although there have been a number of base analogues described that appear to be promising as candidates for triplex target expansion, none has been examined in a biological system. We have employed a postsynthetic strategy to prepare a collection of TFOs with base analogues at a defined position. Following assessment of affinity for a triplex target with a single C:G inversion, TFOs with a second generation of analogues were synthesized. One of these, TFO-5a, with 2'-OMe-guanidinylethyl-5-methylcytosine at the position corresponding to the C:G interruption in the target sequence, was further modified to confer bioactivity. The activity of this TFO, linked to psoralen, was measured in a mammalian cell line that was engineered by directed sequence conversion to carry a triplex target with a single C:G interruption. TFO-5a was active against this target and inactive against the corresponding target with an uninterrupted polypurine:polypyrimidine sequence.

摘要

DNA 三螺旋由第三股核酸链位于完整 DNA 双链的大沟中构成。最稳定的三螺旋形成于多聚嘧啶:多聚嘌呤序列,嘌呤链中的嘧啶中断会导致不稳定。序列严格性是由第三股碱基与双链中嘌呤碱基之间的特定 Hoogsteen 氢键赋予的。适当的三螺旋形成寡核苷酸(TFO)的碱基和糖修饰赋予活细胞中的染色体靶向活性。然而,TFO 作为哺乳动物细胞中的基因靶向试剂的广泛应用受到同源嘌呤靶序列的要求的限制。尽管已经描述了许多碱基类似物,它们似乎有望成为三螺旋靶扩展的候选物,但在生物系统中尚未进行过检查。我们采用了一种后合成策略来制备具有碱基类似物的 TFO 集合,这些类似物位于特定位置。在评估了具有单个 C:G 反转的三螺旋靶的亲和力之后,合成了具有第二代类似物的 TFO。其中一种,TFO-5a,在对应于靶序列中 C:G 中断的位置具有 2'-OMe-胍基乙基-5-甲基胞嘧啶,进一步修饰以赋予生物活性。该 TFO 的活性与补骨脂素相连,在通过定向序列转换工程化的携带单个 C:G 中断的三螺旋靶的哺乳动物细胞系中进行了测量。TFO-5a 对该靶标有效,而对具有未中断的多聚嘧啶:多聚嘌呤序列的相应靶标无效。