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Photosensitive Peptidomimetic for Light-Controlled, Reversible DNA Compaction

机译:光敏肽模拟物,用于光控制,可逆的DNA压缩

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摘要

Light-induced DNA compaction as part of nonviral gene delivery was investigated intensively in the past years, although the bridging between the artificial light switchable compacting.agents and biodompatible light insensitive compacting agents was not achieved until now. In this paper, we report on light-induced compaction and decompaction of DNA molecules in the presence of a new typeof agent, a multivalent cationic peptidomimetic molecule containing a photosensitive Azo-group as a branch (Azo-PM). Az-o-PM is synthesized using a solid-phase procedure during Which anrazoberizene unit is attached as a side chain to an Oligo(arnidoamine) backbone. We shoW, that within a-certain Tange,of concentrations and under illumination with light of appropriate-wavelengths, these cationic Molecules induce reversible DNA compaction/decompaction by photo-isomerization of the incorporated azobenzene unit between a hydrophobic trans- and 4 hydrophilic cis-conformation, as characterized by dynamic light scattering and AFM measurements. In contrast to other molecular Species used for invasive DNA compaction, such as-widely used azobenzene containing cationic surfactant (Azo-TAR, C-4-Azo-OCX-TMAB), the presented peptidomimetic agent appears to lead to different compleication/compaction mechanisms., An investigation of Ato-PM in close proximity to a DNA segment by means of a molecular dynamics simulation sustains a picture in which Azo-PM acts as a multivalent counterion, with its rather large cationic oligo(amidoamine) backbone dominating the interaction with the double helix, fine-tuned or assisted by the presence" andisomerization state of the Azo-moiety. However, due to its peptidomimetic backbone, Azo-PM should be far less toxic than photosensitive surfactants and might represent a starting point for a conscious design of photoswitchable, biocompatible vectors for gene delivery.
机译:近年来,作为非病毒基因递送的一部分,光诱导的DNA紧缩研究得到了深入的研究,尽管到目前为止,人造光可切换压紧剂和生物相容性光不敏感压紧剂之间的桥梁尚未实现。在本文中,我们报道了在一种新型试剂的存在下光诱导的DNA分子的致密化和分解,该试剂是一​​种含有光敏偶氮基团作为分支的多价阳离子拟肽分子(Azo-PM)。 Az-o-PM是使用固相程序合成的,在此过程中,raz杂苯并二氮杂单元作为侧链连接到Oligo(阿糖胺)主链上。我们显示,在一定浓度的Tange中,并且在适当波长的光照射下,这些阳离子分子通过在疏水性反式和4个亲水性顺式-之间引入的偶氮苯单元进行光异构化,诱导可逆的DNA压缩/分解。构象,以动态光散射和AFM测量为特征。与其他用于侵入性DNA紧缩的分子物种相反,例如广泛使用的含偶氮苯的阳离子表面活性剂(Azo-TAR,C-4-Azo-OCX-TMAB),提出的拟肽剂似乎导致不同的完全/紧实机制。,通过分子动力学模拟对Ato-PM接近DNA片段的研究,得到了一张图片,其中Azo-PM充当了多价抗衡离子,其相当大的阳离子寡聚(酰胺基)骨架主导了与通过偶氮部分的存在和异构化状态进行微调或辅助的双螺旋。但是,由于其拟肽骨架,Azo-PM的毒性应远低于光敏性表面活性剂,并且可能代表有意识设计的起点用于基因递送的可光切换,生物相容性载体的制备。

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