Large-scale screening of hundreds or even thousands of crystallization conditions while with low sample consumption is in urgent need, in current structural biology research. Here we describe a fully-automated droplet robot for nanoliter-scale crystallization screening that combines the advantages of both automated robotics technique for protein crystallization screening and the droplet-based microfluidic technique. A semi-contact dispensing method was developed to achieve flexible, programmable and reliable liquid-handling operations for nanoliter-scale protein crystallization experiments. We applied the droplet robot in large-scale screening of crystallization conditions of five soluble proteins and one membrane protein with 35-96 different crystallization conditions, study of volume effects on protein crystallization, and determination of phase diagrams of two proteins. The volume for each droplet reactor is only ca. 4-8 nL. The protein consumption significantly reduces 50-500 fold compared with current crystallization stations.
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A Three-Dimensional Model of the Myoglobin Molecule Obtained by X-Ray Analysis
J Kendrew, G. Bodo, Howard M. Dintzis et al. · Nature · 1958 · 1.6K citations
Biophysical Modeling, Three-dimensional Model, Biochemistry +9
Surfactants in droplet-based microfluidics
Jean‐Christophe Baret · Lab on a Chip · 2011 · 602 citations · Full text
Carl L. Hansen, Emmanuel Skordalakes, James M. Berger et al. · Proceedings of the National Academy of Sciences · 2002 · 512 citations · Full text