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Reversible metal-dependent destabilization and stabilization of a stem-chelate-loop probe binding to an unmodified DNA target

机译:可逆金属依赖性不稳定和稳定茎 - 螯合环探针结合至未经修饰的DNa靶

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摘要

Herein we report the discovery of a novel DNA probe with a stem-chelate-loop structure, wherein the stability of the probe-target duplex can be modulated lower or higher using a narrow concentration range of dilute transition metal-ions (0.1–10 μM). Oligonucleotide probes containing two terpyridine (TPY) ligands separated by 15 bases of single-stranded DNA, with or without a flanking 5 base self-complimentary DNA stem, were tested in thermal transition studies with linear target DNA and varying amounts of ZnCl2. Without the stem, addition of Zn2+ resulted only in reversible destabilization of the probe-target duplex, consistent with assembly (up to 1 equiv. Zn2+) and disassembly (excess Zn2+) of the intramolecular Zn2+-(TPY)2 chelate. Surprisingly, probes including both the intramolecular chelate and the stem gave a probe-target duplex that was reversibly destabilized and stabilized upon addition of Zn2+ by ± 5–7 °C, a phenomenon consistent with assembly and then disassembly of the entire stem-Zn2+-(TPY)2 motif, including the DNA stem. Stem-chelate-loop probes containing dipicolylamine (DPA) ligands exhibited no metal-dependent stabilization or destabilization. The stem-Zn2+-(TPY)2 motif is readily introduced with automated synthesis, and may have broad utility in applications where it is desirable to have both upward and downward, reversible metal-dependent control over probe-target stability involving an unmodified DNA target.
机译:在本文中,我们报告了一种具有茎-螯合物-环结构的新型DNA探针的发现,其中可以使用窄浓度的过渡金属离子(0.1–10μM)来将探针-靶标双链体的稳定性调节得更低或更高。 )。在线性目标DNA和不同量的ZnCl2的热转变研究中,测试了含有两个由15个单链DNA碱基隔开的三联吡啶(TPY)配体的寡核苷酸探针,带有或不带有侧翼5个碱基的自我互补DNA茎。如果没有茎,添加Zn 2 + 只会导致探针-靶标双链体可逆地不稳定,与组装(最多1个当量的Zn 2 + )一致,并且反汇编分子内Zn 2 + -(TPY)2螯合物的(过量的Zn 2 + )。出乎意料的是,包括分子内螯合物和茎在内的探针产生的探针-靶标双链体在添加Zn 2 + ±5–7°C时可逆地不稳定并稳定下来,这种现象与组装和然后分解整个茎-Zn 2 + -(TPY)2基序,包括DNA茎。含有二聚烯丙基胺(DPA)配体的茎螯合物环探针没有金属依赖性的稳定或去稳定作用。茎-Zn 2 + -(TPY)2基序易于通过自动合成方法引入,并且在需要同时具有向上和向下,可逆的金属依赖性控制的应用中可能具有广泛的用途。涉及未修饰DNA靶的探针靶稳定性。

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