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Probing of miniPEG gamma-PNA-DNA Hybrid Duplex Stability with AFM Force Spectroscopy

机译:用AFM力谱仪研究miniPEGγ-PNA-DNA杂交双链体的稳定性

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Peptide nucleic acids (PNA) are synthetic polymers, the neutral peptide backbone of which provides elevated stability to PNA-PNA and PNA-DNA hybrid duplexes. It was demonstrated that incorporation of diethylene glycol (miniPEG) at the gamma position of the peptide backbone increased the thermal stability of the hybrid duplexes (Sahu, B. et al. J. Org. Chem. 2011, 76, 5614-5627 ). Here, we applied atomic force microscopy (AFM) based single molecule force spectroscopy and dynamic force spectroscopy (DFS) to test the strength and stability of the hybrid 10 bp duplex. This hybrid duplex consisted of miniPEG gamma-PNA and DNA of the same length (gamma(MP)PNA-DNA), which we compared to a DNA duplex with a homologous sequence. AFM force spectroscopy data obtained at the same conditions showed that the gamma(MP)PNA-DNA hybrid is more stable than the DNA counterpart, 65 +/- 15 pN vs 47 +/- 15 pN, respectively. The DFS measurements performed in a range of pulling speeds analyzed in the framework of the Bell-Evans approach yielded a dissociation constant, k(off) approximate to 0.030 +/- 0.01 s(-1) for gamma(MP)PNA-DNA hybrid duplex vs 0.375 +/- 0.18 s(-1) for the DNA-DNA duplex suggesting that the hybrid duplex is much more stable. Correlating the high affinity of gamma(MP)PNA-DNA to slow dissociation kinetics is consistent with prior bulk characterization by surface plasmon resonance. Given the growing interest in gamma(MP)PNA as well as other synthetic DNA analogues, the use of single molecule experiments along with computational analysis of force spectroscopy data will provide direct characterization of various modifications as well as higher order structures such as triplexes and quadruplexes.
机译:肽核酸(PNA)是合成聚合物,其中性肽骨架可为PNA-PNA和PNA-DNA杂交双链体提供更高的稳定性。已证明在肽主链的γ位处掺入二甘醇(miniPEG)增加了杂种双链体的热稳定性(Sahu,B。等人,J.Org.Chem.2011,76,5614-5627)。在这里,我们应用了基于原子力显微镜(AFM)的单分子力谱和动态力谱(DFS)来测试杂交10 bp双链体的强度和稳定性。此杂种双链体由miniPEGγ-PNA和相同长度的DNA(γ(MP)PNA-DNA)组成,我们将其与具有同源序列的DNA双链体进行了比较。在相同条件下获得的AFM力谱数据表明,γ(MP)PNA-DNA杂合物比DNA对应物更稳定,分别为65 +/- 15 pN和47 +/- 15 pN。在Bell-Evans方法框架内分析的一系列拉动速度下进行的DFS测量得出γ(MP)PNA-DNA杂化物的解离常数k(off)大约为0.030 +/- 0.01 s(-1)双链与DNA-DNA双链的0.375 +/- 0.18 s(-1)相比,表明杂交双链更为稳定。 γ(MP)PNA-DNA的高亲和力与缓慢的解离动力学相关联,这与先前通过表面等离振子共振进行的大量表征相一致。鉴于对γ(MP)PNA以及其他合成DNA类似物的兴趣日益浓厚,使用单分子实验以及力谱数据的计算分析将可以直接表征各种修饰以及更高阶的结构,例如三链体和四链体。

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