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炔烃和二茂铁基多肽核酸生物缀合物的热熔融研究。

Thermal melting studies of alkyne- and ferrocene-containing PNA bioconjugates.

机构信息

Ruhr-University Bochum, Faculty of Chemistry and Biochemistry, Inorganic Chemistry I-Bioinorganic Chemistry, Universitätsstrasse 150, D-44801, Bochum, Germany.

出版信息

Org Biomol Chem. 2009 Dec 7;7(23):4992-5000. doi: 10.1039/b913964h. Epub 2009 Oct 13.

Abstract

The preparation of new metal-containing Peptide Nucleic Acids (PNAs) is currently a field of research intensively studied for various purposes, e.g. DNA biosensors. The role played by the metal centre, notably on the stability of the PNA.DNA hybrid, is obviously crucial, but has not yet been fully investigated. In this work, UV-Vis spectroscopic measurements of solutions of DNA.PNA hybrids, whose 11/12-mer PNA oligomers contained either one or two alkyne- (1) or ferrocene-containing (2) PNA monomers, were carried out to determine the effect of these monomers on the thermal stability of the hybrids (PNA: H-Gly-X-gggtc-Y-agctt-X-Lys-NH2 with X = 1 or and Y = 1 or 2 or blank position). Supplementary CD spectroscopic measurements were performed to gain insight into the structures of the PNA.DNA duplexes formed. The effect of both modified monomers was found to depend on their actual positions within the PNA sequences. Insertions at the N- or C-termini of a PNA oligomer did not change the melting temperatures (T(m) values of about 72 degrees C) of the DNA.PNA hybrids significantly. Insertion of monomers 1 or 2 in the middle of a PNA sequence induced a substantial decrease in the T(m) of the hybrids (by about 23 degrees C) when bound to the same DNA oligomer. Interestingly, it was found that the type of modification, namely alkyne or ferrocene, did not significantly influence the T(m) values in these cases. However, the thermal stability of hybrids with the DNA oligomers containing one to four additional thymines and the PNA oligomers containing the ferrocene moiety in its middle, varied significantly with the number of thymines added compared to its alkyne analogues (DeltaT(m) up to -13 degrees C). The presence of the ferrocene moiety induced a significant decrease in thermal stability of the hybrids, probably due to its bulkiness. In order to assess the effect of PNA backbone rigidity on the stability of DNA.PNA hybrids, PNA oligomers with an internal amino acid, propargylglycine (Pgl) or the dipeptide glycine-propargylglycine (Gly-Pgl), were synthesised. It was assumed that the orientation of the alkyne moiety in the Pgl-containing PNA sequence is not identical to an alkyne-containing PNA sequence, as a significantly higher T(m) value (DeltaT(m) = +10 degrees C) was measured. It is anticipated that the alkyne moiety in Pgl is not facing the DNA base and therefore does not disturb as much the neighbouring nucleobases and base-stacking of the complementary DNA, in contrast to the alkyne moiety of 1. Interestingly, no significant differences in the thermal stability of the hybrids was observed between Pgl-containing and dipeptide-containing PNA oligomers, although the former contracts the PNA backbone by three atoms.

摘要

新型含金属的肽核酸(PNA)的制备目前是一个研究热点,涉及到各种目的,例如 DNA 生物传感器。金属中心在稳定 PNA-DNA 杂交体中的作用显然至关重要,但尚未得到充分研究。在这项工作中,我们对含有一个或两个炔基(1)或二茂铁(2)PNA 单体的 11/12-mer PNA 寡聚物的 DNA-PNA 杂交体溶液进行了紫外可见光谱测量,以确定这些单体对杂交体热稳定性的影响(PNA:H-Gly-X-gggtc-Y-agctt-X-Lys-NH2,其中 X = 1 或 Y = 1 或 2 或空白位置)。还进行了补充的圆二色光谱测量,以深入了解形成的 PNA-DNA 双链体的结构。发现这两种修饰单体的影响取决于它们在 PNA 序列中的实际位置。在 PNA 寡聚物的 N-或 C-末端插入单体 1 或 2 不会显著改变 DNA-PNA 杂交体的熔点(T(m)值约为 72°C)。当与相同的 DNA 寡聚物结合时,在 PNA 序列中间插入单体 1 或 2 会导致杂交体的 T(m)值显著降低(约 23°C)。有趣的是,发现修饰类型(炔基或二茂铁)在这些情况下对 T(m)值没有显著影响。然而,与具有相同 DNA 寡聚物的含有一个到四个额外胸腺嘧啶的杂交体相比,含有二茂铁部分的 PNA 寡聚物的热稳定性变化显著,与添加的胸腺嘧啶数量有关(DeltaT(m)高达-13°C)。二茂铁部分的存在导致杂交体的热稳定性显著降低,可能是由于其体积较大。为了评估 PNA 主链刚性对 DNA-PNA 杂交体稳定性的影响,我们合成了含有内部氨基酸丙炔甘氨酸(Pgl)或二肽甘氨酸-丙炔甘氨酸(Gly-Pgl)的 PNA 寡聚物。假设 Pgl 中炔基的取向与含炔基的 PNA 序列不同,因为测量到的 T(m)值(DeltaT(m) = +10°C)明显更高。可以预期,与 1 中的炔基部分相比,Pgl 中的炔基部分不会朝向 DNA 碱基,因此不会像 1 中的炔基部分那样干扰相邻的碱基和互补 DNA 的碱基堆积。有趣的是,尽管前者使 PNA 主链缩短了三个原子,但含有 Pgl 和二肽的 PNA 寡聚物之间的杂交体热稳定性没有显著差异。

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