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DNA 探针结合 RNA 靶链的 5'-帽。

A 5'-cap for DNA probes binding RNA target strands.

机构信息

Institut für Organische Chemie, Universität Stuttgart, 70569 Stuttgart, Germany.

出版信息

Chemistry. 2011 Oct 10;17(42):11813-27. doi: 10.1002/chem.201101828. Epub 2011 Sep 20.

Abstract

Detecting short RNA strands with high fidelity at any of the bases of their sequence, including the termini, can be challenging, since fraying, wobbling, and refolding all compete with canonical base pairing. We performed a search for 5'-substituents of oligodeoxynucleotides that increase base pairing fidelity at the terminus of duplexes with RNA target strands. From a total of over 70 caps, differing in stacking moiety and linker, a phosphodiester-linked sequence of the residues of L-prolinol, glycine, and oxolinic acid, dubbed ogOA, was identified as a 5'-cap that stabilizes any of the four canonical base pairs, with ΔT(m) values of up to +13.1 °C for an octamer. At the same time, the cap increases discrimination against any of the 12 possible terminal mismatches, including mismatches that are more stable than their perfectly matched counterparts in the control duplex, such as A:A. A probe with the cap also showed increased selectivity in the detection of two closely related microRNAs, let7c and let7a, with a ΔT(m) value of 9.2 °C. Melting curves also yielded thermodynamic data that shed light on the uniformity of molecular recognition in the sequence space of DNA:DNA and DNA:RNA duplexes. Hybridization probes with fidelity-enhancing caps should find applications in the individual and parallel detection of biologically active RNA species.

摘要

在其序列的任何碱基处(包括末端)以高保真度检测短 RNA 链可能具有挑战性,因为磨损、摆动和重折叠都与标准碱基配对竞争。我们进行了搜索,寻找可以增加与 RNA 靶链形成双链体的末端碱基配对保真度的寡脱氧核苷酸 5'-取代基。在总共超过 70 个帽中,在堆积部分和连接子方面有所不同,一个磷酸二酯键连接的 L-脯氨酸、甘氨酸和氧洛林酸残基的序列,被称为 ogOA,被鉴定为 5'-帽,可稳定任何四个标准碱基对,对于八聚体,ΔT(m) 值高达+13.1°C。同时,该帽增加了对任何 12 种可能的末端错配的区分能力,包括比对照双链体中与其完全匹配的错配更稳定的错配,例如 A:A。带有帽的探针在检测两个密切相关的 microRNA(let7c 和 let7a)时也表现出更高的选择性,ΔT(m) 值为 9.2°C。熔解曲线还提供了热力学数据,这些数据阐明了 DNA:DNA 和 DNA:RNA 双链体中序列空间中分子识别的均匀性。具有保真度增强帽的杂交探针应该在单个和并行检测生物活性 RNA 物种方面找到应用。

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