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Analysis of Global and Site-Specific Radiation Damage in Cryo-EM.


ABSTRACT: Micro-crystal electron diffraction (MicroED) combines the efficiency of electron scattering with diffraction to allow structure determination from nano-sized crystalline samples in cryoelectron microscopy (cryo-EM). It has been used to solve structures of a diverse set of biomolecules and materials, in some cases to sub-atomic resolution. However, little is known about the damaging effects of the electron beam on samples during such measurements. We assess global and site-specific damage from electron radiation on nanocrystals of proteinase K and of a prion hepta-peptide and find that the dynamics of electron-induced damage follow well-established trends observed in X-ray crystallography. Metal ions are perturbed, disulfide bonds are broken, and acidic side chains are decarboxylated while the diffracted intensities decay exponentially with increasing exposure. A better understanding of radiation damage in MicroED improves our assessment and processing of all types of cryo-EM data.

SUBMITTER: Hattne J 

PROVIDER: S-EPMC6333475 | biostudies-literature | 2018 May

REPOSITORIES: biostudies-literature

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Analysis of Global and Site-Specific Radiation Damage in Cryo-EM.

Hattne Johan J   Shi Dan D   Glynn Calina C   Zee Chih-Te CT   Gallagher-Jones Marcus M   Martynowycz Michael W MW   Rodriguez Jose A JA   Gonen Tamir T  

Structure (London, England : 1993) 20180426 5


Micro-crystal electron diffraction (MicroED) combines the efficiency of electron scattering with diffraction to allow structure determination from nano-sized crystalline samples in cryoelectron microscopy (cryo-EM). It has been used to solve structures of a diverse set of biomolecules and materials, in some cases to sub-atomic resolution. However, little is known about the damaging effects of the electron beam on samples during such measurements. We assess global and site-specific damage from el  ...[more]

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