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Global radiation damage: Temperature dependence, time dependence and how to outrun it

Cornell Affiliated Author(s)

Author

M. Warkentin
J.B. Hopkins
R. Badeau
A.M. Mulichak
L.J. Keefe
R.E. Thorne

Abstract

A series of studies that provide a consistent and illuminating picture of global radiation damage to protein crystals, especially at temperatures above 200 K, are described. The radiation sensitivity shows a transition near 200 K, above which it appears to be limited by solvent-coupled diffusive processes. Consistent with this interpretation, a component of global damage proceeds on timescales of several minutes at 180 K, decreasing to seconds near room temperature. As a result, data collection times of order 1 s allow up to half of global damage to be outrun at 260 K. Much larger damage reductions near room temperature should be feasible using larger dose rates delivered using microfocused beams, enabling a significant expansion of structural studies of proteins under more nearly native conditions. © 2013 International Union of Crystallography Printed in Singapore-all rights reserved.

Date Published

Journal

Journal of Synchrotron Radiation

Volume

20

Issue

1

Number of Pages

7-13,

URL

https://www.scopus.com/inward/record.uri?eid=2-s2.0-84871402223&doi=10.1107%2fS0909049512048303&partnerID=40&md5=404baa8a1576c153a40ef4f3deb4ad8d

DOI

10.1107/S0909049512048303

Group (Lab)

Robert Thorne Group

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