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Photocage-initiated time-resolved solution X-ray scattering investigation of protein dimerization.


ABSTRACT: This work demonstrates a new method for investigating time-resolved structural changes in protein conformation and oligomerization via photocage-initiated time-resolved X-ray solution scattering by observing the ATP-driven dimerization of the MsbA nucleotide-binding domain. Photocaged small molecules allow the observation of single-turnover reactions of non-naturally photoactivatable proteins. The kinetics of the reaction can be derived from changes in X-ray scattering associated with ATP-binding and subsequent dimerization. This method can be expanded to any small-molecule-driven protein reaction with conformational changes traceable by X-ray scattering where the small molecule can be photocaged.

SUBMITTER: Josts I 

PROVIDER: S-EPMC6211537 | biostudies-literature | 2018 Nov

REPOSITORIES: biostudies-literature

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Photocage-initiated time-resolved solution X-ray scattering investigation of protein dimerization.

Josts Inokentijs I   Niebling Stephan S   Gao Yunyun Y   Levantino Matteo M   Tidow Henning H   Monteiro Diana D  

IUCrJ 20180913 Pt 6


This work demonstrates a new method for investigating time-resolved structural changes in protein conformation and oligomerization <i>via</i> photocage-initiated time-resolved X-ray solution scattering by observing the ATP-driven dimerization of the MsbA nucleotide-binding domain. Photocaged small molecules allow the observation of single-turnover reactions of non-naturally photoactivatable proteins. The kinetics of the reaction can be derived from changes in X-ray scattering associated with ATP  ...[more]

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