Hansen G I, Bentin T, Larsen H J, Nielsen P E
Center for Biomolecular Recognition, IMBG, Department B, The Panum Institute, University of Copenhagen, Blegdamsvej 3c, 2200 Copenhagen N, Denmark.
J Mol Biol. 2001 Mar 16;307(1):67-74. doi: 10.1006/jmbi.2000.4487.
Upon binding of a decamer bis-PNA (H-Lys-TTCCTCTCTT-(eg1)(3)-TTCTCTCCTT-LysNH(2)) to a complementary target in a double-stranded DNA fragment, three distinct complexes were detected by gel mobility shift analysis. Using in situ chemical probing techniques (KMnO(4) and DMS) it was found that all three complexes represent bona fide sequence-specific PNA binding to the designated target, but the complexes were structurally different. One complex that preferentially formed at higher PNA concentrations contains two bis-PNA molecules per DNA target, whereas the other two complexes are genuine triplex invasion clamped structures. However, these two latter complexes differ by the path relative to the DNA target of the flexible ethylene-glycol linker connecting the two PNA oligomers that comprise a bis-PNA. We distinguish between one in which the linker wraps around the non-target DNA strand, thus making this strand part of the triplex invasion complex and another complex that encompass the target strand only. The implications of these results are discussed in terms of DNA targeting by synthetic ligands.
当一个十聚体双肽核酸(H-Lys-TTCCTCTCTT-(eg1)(3)-TTCTCTCCTT-LysNH(2))与双链DNA片段中的互补靶序列结合时,通过凝胶迁移率变动分析检测到三种不同的复合物。使用原位化学探测技术(高锰酸钾和二甲基亚砜)发现,所有三种复合物均代表双肽核酸与指定靶序列的真正序列特异性结合,但这些复合物在结构上有所不同。一种在较高双肽核酸浓度下优先形成的复合物,每个DNA靶序列含有两个双肽核酸分子,而另外两种复合物是真正的三链侵入钳夹结构。然而,后两种复合物的区别在于连接两个构成双肽核酸的肽核酸寡聚物的柔性乙二醇接头相对于DNA靶序列的路径。我们区分了一种接头围绕非靶DNA链缠绕的复合物,从而使该链成为三链侵入复合物的一部分,以及另一种仅包含靶链的复合物。这些结果的意义将根据合成配体对DNA的靶向作用进行讨论。