Geerts Nienke, Schmatko Tatiana, Eiser Erika
FOM Institute AMOLF, Kruislaan 407, 1098 SJ Amsterdam, The Netherlands.
Langmuir. 2008 May 6;24(9):5118-23. doi: 10.1021/la7036789. Epub 2008 Mar 21.
We report an experimental study in which we compare the self-assembly of 1 mum colloids bridged through hybridization of complementary single-stranded DNA (ssDNA) strands (12 bp) attached to variable-length double-stranded DNA spacers that are grafted to the colloids. We considered three different spacer lengths: long spacers (48 500 bp), intermediate length spacers (7500 bp), and no spacers (in which case the ssDNA strands were directly grafted to the colloids). In all three cases, the same ssDNA pairs were used. However, confocal microscopy revealed that the aggregation behavior is very different. Upon cooling, the colloids coated with short and intermediate length DNAs undergo a phase transition to a dense amorphous phase that undergoes structural arrest shortly after percolation. In contrast, the colloids coated with the longest DNA systematically form finite-sized clusters. We speculate that the difference is due to the fact that very long DNA can easily be stretched by the amount needed to make only intracluster bonds, and in contrast, colloids coated with shorter DNA always contain free binding sites on the outside of a cluster. The grafting density of the DNA decreases strongly with increasing spacer length. This is reflected in a difference in the temperature dependence of the aggregates: for the two systems coated with long DNA, the resulting aggregates were stable against heating, whereas the colloids coated with ssDNA alone would dissociate upon heating.
我们报告了一项实验研究,其中我们比较了通过附着在嫁接到胶体上的可变长度双链DNA间隔物上的互补单链DNA(ssDNA)链(12个碱基对)杂交而桥接的1微米胶体的自组装。我们考虑了三种不同的间隔物长度:长间隔物(48500个碱基对)、中等长度间隔物(7500个碱基对)和无间隔物(在这种情况下,ssDNA链直接嫁接到胶体上)。在所有三种情况下,使用的是相同的ssDNA对。然而,共聚焦显微镜显示聚集行为非常不同。冷却时,涂有短和中等长度DNA的胶体经历相变,转变为致密的无定形相,在渗流后不久发生结构停滞。相比之下,涂有最长DNA的胶体系统地形成有限大小的簇。我们推测差异的原因是,非常长的DNA很容易被拉伸到仅形成簇内键所需的量,相反,涂有较短DNA的胶体在簇的外部总是包含自由结合位点。DNA的嫁接密度随着间隔物长度的增加而强烈降低。这反映在聚集体的温度依赖性差异上:对于涂有长DNA的两个系统,形成的聚集体对加热稳定,而仅涂有ssDNA的胶体在加热时会解离。