Holmberg Anders, Blomstergren Anna, Nord Olof, Lukacs Morten, Lundeberg Joakim, Uhlén Mathias
Department of Biotechnology, Royal Institute of Technology (KTH), Stockholm, Sweden.
Electrophoresis. 2005 Feb;26(3):501-10. doi: 10.1002/elps.200410070.
The biotin-streptavidin system is the strongest noncovalent biological interaction known, having a dissociation constant, K(d), in the order of 4x10(-14) M. The strength and specificity of the interaction has led it to be one of the most widely used affinity pairs in molecular, immunological, and cellular assays. However, it has previously been impossible to re-use any streptavidin solid support, since the conditions needed to break the interaction with biotin has led to the denaturation of the streptavidin. Here, we show that a short incubation in nonionic aqueous solutions at temperatures above 70 degrees C can efficiently break the interaction without denaturing the streptavidin tetramer. Both biotin and the streptavidin remain active after dissociation and both molecules can therefore be re-used. The efficiency of the regeneration allowed solid supports with streptavidin to be used many times, here exemplified with the multiple re-use of streptavidin beads used for sample preparation prior to automated DNA sequencing. The results suggest that streptavidin regeneration can be introduced as an improvement in existing methods and assays based on the streptavidin system as well as emerging solid phase applications in fields, such as microfluidics and nanotechnology.
生物素-链霉亲和素系统是已知最强的非共价生物相互作用,其解离常数K(d)约为4×10(-14)M。这种相互作用的强度和特异性使其成为分子、免疫和细胞分析中使用最广泛的亲和对之一。然而,以前不可能重复使用任何链霉亲和素固相支持物,因为打破与生物素相互作用所需的条件会导致链霉亲和素变性。在此,我们表明在70℃以上的非离子水溶液中短暂孵育可以有效打破相互作用而不会使链霉亲和素四聚体变性。生物素和链霉亲和素在解离后均保持活性,因此两种分子都可以重复使用。再生效率使得带有链霉亲和素的固相支持物能够多次使用,这里以用于自动DNA测序前样品制备的链霉亲和素磁珠的多次重复使用为例进行说明。结果表明,链霉亲和素再生可作为对基于链霉亲和素系统的现有方法和分析以及微流控和纳米技术等领域中新兴固相应用的一种改进引入。