Lee Amy, Karcz Adam, Akman Ryan, Zheng Tai, Kwon Sara, Chou Szu-Ting, Sucayan Sarah, Tricoli Lucas J, Hustedt Jason M, Leng Qixin, Kahn Jason D, Mixson A James, Seog Joonil
Fischell Department of Bioengineering, University of Maryland, College Park, MD 20742 (USA).
Angew Chem Int Ed Engl. 2014 Sep 26;53(40):10631-5. doi: 10.1002/anie.201403499. Epub 2014 Aug 21.
Gene delivery is a promising way to treat hereditary diseases and cancer; however, there is little understanding of DNA:carrier complex mechanical properties, which may be critical for the protection and release of nucleic acids. We applied optical tweezers to directly measure single-molecule mechanical properties of DNA condensed using 19-mer poly-L-lysine (PLL) or branched histidine-lysine (HK) peptides. Force-extension profiles indicate that both carriers condense DNA actively, showing force plateaus during stretching and relaxation cycles. As the environment such as carrier concentration, pH, and the presence of zinc ions changes, DNA:HK complexes showed dynamically regulated mechanical properties at multiple force levels. The fundamental knowledge from this study can be applied to design a mechanically tailored complex which may enhance transfection efficiency by controlling the stability of the complex temporally and spatially.
基因递送是治疗遗传性疾病和癌症的一种很有前景的方法;然而,人们对DNA与载体复合物的力学性质了解甚少,而这些性质可能对核酸的保护和释放至关重要。我们应用光镊直接测量了使用19聚左旋赖氨酸(PLL)或支链组氨酸 - 赖氨酸(HK)肽浓缩的DNA的单分子力学性质。力 - 伸长曲线表明,两种载体都能主动浓缩DNA,在拉伸和松弛循环中呈现出力平台。随着载体浓度、pH值和锌离子存在等环境因素的变化,DNA:HK复合物在多个力水平上表现出动态调节的力学性质。这项研究的基础知识可用于设计一种机械定制的复合物,通过在时间和空间上控制复合物的稳定性来提高转染效率。