Shumaker-Parry Jennifer S, Zareie M Hadi, Aebersold Ruedi, Campbell Charles T
Department of Chemistry, University of Washington, Seattle, WA 98195-1700, USA.
Anal Chem. 2004 Feb 15;76(4):918-29. doi: 10.1021/ac034964v.
We present two strategies for microspotting 10 x 12 arrays of double-stranded DNAs (dsDNAs) onto a gold-coated glass slide for high-throughput studies of protein-DNA interactions by surface plasmon resonance (SPR) microscopy. Both methods use streptavidin (SA) as a linker layer between a biotin-containing mixed self-assembled monolayer (SAM) and biotinylated dsDNAs to produce arrays with high packing density. The primary mixed SAM is produced from biotin- and oligo(ethylene glycol)-terminated thiols bonded as thiolates onto the gold surface. In the first method, a robotic microspotter is used to deliver nanoliter droplets of dsDNA solution onto a uniform layer of this SA ( approximately 2 x 10(12) SA/cm(2)). SPR microscopy shows a density of (5-6) x 10(11) dsDNA/cm(2) (0.2-0.3 dsDNA/SA) in the array elements. The second method uses instead a microspotted array of this SA linker layer, onto which the microspots of dsDNA are added with spatial registry. SPR microscopy before addition of the dsDNA shows a SA coverage of 2 x 10(12) SA/cm(2) within the spots and a dsDNA density of 8.5 +/- 3.5 x 10(11) dsDNA/cm(2) (0.3-0.7 dsDNA/SA, depending on the length of dsDNA) after dsDNA spotting. We demonstrate the ability to simultaneously monitor protein binding with the SPR microscope in many 200-microm spots with 1-s time resolution and sensitivity to <1 pg of protein.
我们提出了两种将10×12双链DNA(dsDNA)阵列微点样到镀金玻璃载玻片上的策略,用于通过表面等离子体共振(SPR)显微镜对蛋白质-DNA相互作用进行高通量研究。两种方法都使用链霉亲和素(SA)作为含生物素的混合自组装单层(SAM)与生物素化dsDNA之间的连接层,以产生具有高堆积密度的阵列。主要的混合SAM由生物素和寡聚(乙二醇)封端的硫醇作为硫醇盐键合到金表面制成。在第一种方法中,使用机器人微点样仪将dsDNA溶液的纳升级液滴递送到这种SA的均匀层上(约2×10¹² SA/cm²)。SPR显微镜显示阵列元件中dsDNA的密度为(5 - 6)×10¹¹ dsDNA/cm²(0.2 - 0.3 dsDNA/SA)。第二种方法则使用这种SA连接层的微点样阵列,并在空间对齐的情况下添加dsDNA微点。在添加dsDNA之前,SPR显微镜显示斑点内SA的覆盖率为2×10¹² SA/cm²,dsDNA点样后dsDNA密度为8.5±3.5×10¹¹ dsDNA/cm²(0.3 - 0.7 dsDNA/SA,取决于dsDNA的长度)。我们展示了使用SPR显微镜以1秒的时间分辨率和对<1 pg蛋白质的灵敏度在许多200微米的斑点中同时监测蛋白质结合的能力。