Institute of Biostructure and Bioimaging, CNR, Naples, Italy.
Biopolymers. 2010 May;93(5):434-41. doi: 10.1002/bip.21357.
The article describes the use of a PNA duplex (PNA zipper) as a tool to dimerize or bring in close proximity two polypeptides or protein domains. The amino acid sequence to be dimerized is covalently bound to complementary PNA sequences. Annealing of the PNA strands results in dimer formation. To test the ability of the "PNA-zipper" as a dimerization tool, we designed a GCN4 mimetic, where the leucine-zipper dimerization domain was replaced by the PNA zipper, whereas the basic DNA-binding domain was covalently attached to the PNA. The molecule was assembled by chemical ligation of the peptide corresponding to the DNA-binding domain of GCN4 modified with a succinyl thioester with two complementary PNAs harboring a cysteine residue. Electromobility-shift experiments show the ability of the PNA zipper-GCN4 to bind selected DNA duplexes. The PNA zipper-GCN4 binds both the TRE and CRE DNA sites, but it does not bind TRE and CRE mutants containing even a single base mutation, as the native GCN4. The ability to fold upon complexation with DNA was investigated by CD. A good correlation between the ability of the PNA zipper-GCN4 to fold into alpha helices and the ability to bind DNA was found.
本文描述了使用 PNA 二聚体(PNA 拉链)将两个多肽或蛋白质结构域二聚化或使其紧密接近。要二聚化的氨基酸序列通过共价键与互补的 PNA 序列结合。PNA 链的退火导致二聚体形成。为了测试“PNA-zipper”作为二聚化工具的能力,我们设计了一种 GCN4 模拟物,其中亮氨酸拉链二聚化结构域被 PNA 拉链取代,而基本的 DNA 结合结构域则通过化学连接与 PNA 共价连接。该分子是通过化学连接 GCN4 的 DNA 结合结构域的肽,该肽用琥珀酰硫酯修饰,并带有一个半胱氨酸残基,与两个带有半胱氨酸残基的互补 PNA 进行连接而组装的。电泳迁移率变动实验表明 PNA 拉链-GCN4 能够结合选定的 DNA 双链。PNA 拉链-GCN4 结合 TRE 和 CRE DNA 位点,但与天然 GCN4 一样,它不能结合含有单个碱基突变的 TRE 和 CRE 突变体。通过 CD 研究了与 DNA 复合时折叠的能力。发现 PNA 拉链-GCN4 折叠成 α 螺旋的能力与结合 DNA 的能力之间存在很好的相关性。