Schmauder Ralf, Schmidt Thomas, Abrahams Jan Pieter, Kuil Maxim E
Biophysics, Leiden University, PO BOX 9504, 2300 RA Leiden, The Netherlands.
Acta Crystallogr D Biol Crystallogr. 2002 Oct;58(Pt 10 Pt 1):1536-41. doi: 10.1107/s0907444902014373. Epub 2002 Sep 26.
We investigate the potential of fluorescence correlation spectroscopy (FCS) in screening for crystallisation conditions. Solutions that nucleate protein crystals must have different interactions than solutions that do not give rise to crystals. Due to these different interactions the average mean squared displacement of the individual proteins changes. By monitoring protein self-diffusion, we can distinguish crystallizing from non-crystallizing solutions. The method introduced can be applied at extremely low concentrations in femtoliter volumes as an early diagnostic for molecular association. Based on our preliminary findings FCS has the potential to become a routine screening method for crystallography.
我们研究了荧光相关光谱法(FCS)在筛选结晶条件方面的潜力。能够使蛋白质结晶的溶液与不能产生晶体的溶液具有不同的相互作用。由于这些不同的相互作用,单个蛋白质的平均均方位移会发生变化。通过监测蛋白质的自扩散,我们可以区分能够结晶的溶液和不能结晶的溶液。所介绍的方法可以在飞升至皮升体积的极低浓度下应用,作为分子缔合的早期诊断方法。基于我们的初步研究结果,FCS有潜力成为晶体学的常规筛选方法。