We study the ultrafast solvation dynamics of protein-precipitant complexes.Protein subtilisin carlsberg(SC)was mixed with several polyethylene glycol(PEG)precipitants for protein crystallization.Picosecond-resolved em...We study the ultrafast solvation dynamics of protein-precipitant complexes.Protein subtilisin carlsberg(SC)was mixed with several polyethylene glycol(PEG)precipitants for protein crystallization.Picosecond-resolved emission spectra from single intrinsic tryptophan residue(Trp-113)are recorded to construct solvation correlation functions.For precipitant concentrations with various crystallization effects,we observe drastically different solvation relaxation processes.These differences in solvation dynamics are correlated with the local protein structural integrity and water-network stability upon interaction with the precipitants.The solvation dynamics at the protein surface is proposed as a new perspective to study precipitant-protein interactions.展开更多
基金by the National Natural Science Foundation of China under Grant Nos 10504001,60878019,10821062,10934001,60677002 and 10828407the National Basic Research Program of China under Grant Nos 2009CB930504 and 2007CB307001.
文摘We study the ultrafast solvation dynamics of protein-precipitant complexes.Protein subtilisin carlsberg(SC)was mixed with several polyethylene glycol(PEG)precipitants for protein crystallization.Picosecond-resolved emission spectra from single intrinsic tryptophan residue(Trp-113)are recorded to construct solvation correlation functions.For precipitant concentrations with various crystallization effects,we observe drastically different solvation relaxation processes.These differences in solvation dynamics are correlated with the local protein structural integrity and water-network stability upon interaction with the precipitants.The solvation dynamics at the protein surface is proposed as a new perspective to study precipitant-protein interactions.