Graduate School of Engineering, Osaka University, Suita, Osaka 565-0871, Japan.
J Synchrotron Radiat. 2011 Jan;18(1):16-9. doi: 10.1107/S090904951003445X. Epub 2010 Nov 5.
Three crystallization methods for growing large high-quality protein crystals, i.e. crystallization in the presence of a semi-solid agarose gel, top-seeded solution growth (TSSG) and a large-scale hanging-drop method, have previously been presented. In this study the effectiveness of crystallization in the presence of a semi-solid agarose gel has been further evaluated by crystallizing additional proteins in the presence of 2.0% (w/v) agarose gel, resulting in complete gelification with high mechanical strength. In TSSG the seed crystals are hung by a seed holder protruding from the top of the growth vessel to prevent polycrystallization. In the large-scale hanging-drop method, a cut pipette tip was used to maintain large-scale droplets consisting of protein-precipitant solution. Here a novel crystallization method that combines TSSG and the large-scale hanging-drop method is reported. A large and single crystal of lysozyme was obtained by this method.
先前已经提出了三种用于生长大尺寸高质量蛋白质晶体的结晶方法,即半固体琼脂糖凝胶存在下的结晶、顶部接种溶液生长(TSSG)和大规模悬滴法。在本研究中,通过在 2.0%(w/v)琼脂糖凝胶存在下结晶额外的蛋白质,进一步评估了在半固体琼脂糖凝胶存在下结晶的效果,导致完全胶凝和高机械强度。在 TSSG 中,种子晶体通过从生长容器顶部突出的种子支架悬挂,以防止多晶化。在大规模悬滴法中,使用切割的吸头来维持由蛋白质沉淀剂溶液组成的大规模液滴。这里报道了一种将 TSSG 和大规模悬滴法结合的新结晶方法。通过该方法获得了溶菌酶的大单晶。