Li Fenglei, Robinson Howard, Yeung Edward S
Ames Laboratory-USDOE and Department of Chemistry, Iowa State University, Ames, IA 50011, USA.
Anal Bioanal Chem. 2005 Dec;383(7-8):1034-41. doi: 10.1007/s00216-005-0165-8. Epub 2005 Nov 9.
A highly efficient method is developed for automated high-throughput screening of nanoliter-scale protein crystallization. The system integrates liquid dispensing, crystallization and detection. The automated liquid dispensing system handles nanoliters of protein and various combinations of precipitants in parallel to access diverse regions of the phase diagram. A new detection scheme, native fluorescence, with complementary visible-light detection is employed for monitoring the progress of crystallization. This detection mode can distinguish protein crystals from inorganic crystals in a nondestructive manner. A gas-permeable membrane covering the microwells simplifies evaporation rate control and probes extended conditions in the phase diagram. The system was successfully demonstrated for the screening of lysozyme crystallization under 81 different conditions.
开发了一种用于纳升规模蛋白质结晶自动化高通量筛选的高效方法。该系统集成了液体分配、结晶和检测功能。自动化液体分配系统可并行处理纳升量的蛋白质和各种沉淀剂组合,以探索相图的不同区域。采用一种新的检测方案——天然荧光,并辅以可见光检测,来监测结晶过程。这种检测模式能够以无损方式区分蛋白质晶体和无机晶体。覆盖微孔的透气膜简化了蒸发速率控制,并探索了相图中的扩展条件。该系统已成功用于在81种不同条件下筛选溶菌酶结晶。