ID | 112469 |
Author |
Suzuki, Yoshihisa
Tokushima University
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Tsuge, Hideaki
Kyoto Sangyo University
Hondoh, Hironori
Hiroshima University
Uehara, Yuta
Tokushima University
Hosokawa, Kohei
Tokushima University
Ueta, Shoko
Tokushima University
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|
Keywords | precipitant-free
lysozyme
centrifugal concentration
synchrotron x-ray crystallography
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Content Type |
Journal Article
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Description | The three-dimensional (3D) structure of a protein molecule in its crystal need not correspond to that found in vivo in many cases, since we usually crystallize protein molecules using precipitants (salts, organic solvents, polymeric electrolytes, etc.), and the precipitants are often incorporated into crystals along with the protein molecules. Although precipitant-free crystallization methods would solve these problems, such methods had not yet been established. We have achieved a novel precipitant-free crystallization method by liquid-liquid phase separation during the centrifugal concentration of lysozyme in ultra-pure water. In the 3D structure of the precipitant-free crystal, lysozyme loses a sodium cation and changes the position of Ser 72. Deionization of the solution also appears to induce a change in the position of Asp 101 and an increase in the activity of lysozyme.
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Journal Title |
Crystal Growth & Design
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ISSN | 15287483
15287505
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NCID | AA1150352X
AA12478723
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Publisher | ACS Publications
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Volume | 18
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Issue | 8
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Start Page | 4226
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End Page | 4229
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Published Date | 2018-07-13
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Remark | The Supporting Information is available free of charge on the ACS Publications website at DOI: 10.1021/acs.cgd.8b00326.
・Materials and methods, an image of a precipitant-free GI crystal and its oscillation photograph, X-ray data collection statistics, and rough estimate of crystallization conditions (PDF) : cgd_18_8_4226_si.pdf |
Rights | This document is the Accepted Manuscript version of a Published Work that appeared in final form in Crystal Growth & Design, copyright © American Chemical Society after peer review and technical editing by the publisher.
To access the final edited and published work see https://doi.org/10.1021/acs.cgd.8b00326. |
EDB ID | |
DOI (Published Version) | |
URL ( Publisher's Version ) | |
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language |
eng
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TextVersion |
Author
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departments |
Science and Technology
Institute of Advanced Medical Sciences
Technical Support Department
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