Extended q‐Range X‐Ray Scattering Reveals High‐Resolution Structural Details of Biomacromolecules in Aqueous Solutions

Author:

Chen Jiahui1,Borkiewicz Olaf J.1,Grishaev Alexander V.2,Zhang Fan2,Bera Mrinal K.3,Ruett Uta1,Levin Igor2ORCID

Affiliation:

1. X-ray Science Division Argonne National Laboratory 9700 S Cass Ave. Lemont IL, 60439 USA

2. Materials Measurement Laboratory National Institute of Standards and Technology (NIST) 100 Bureau Drive Gaithersburg MD, 20899 USA

3. NSF's ChemMatCARS University of Chicago 9700 S Cass Ave. Lemont IL,60439 USA

Abstract

AbstractWe communicate a feasibility study for high‐resolution structural characterization of biomacromolecules in aqueous solution from X‐ray scattering experiments measured over a range of scattering vectors (q) that is approximately two orders of magnitude wider than used previously for such systems. Scattering data with such an extended q‐range enables the recovery of the underlying real‐space atomic pair distribution function, which facilitates structure determination. We demonstrate the potential of this method for biomacromolecules using several types of cyclodextrins (CD) as model systems. We successfully identified deviations of the tilting angles for the glycosidic units in CDs in aqueous solutions relative to their values in the crystalline forms of these molecules. Such level of structural detail is inaccessible from standard small angle scattering measurements. Our results call for further exploration of ultra‐wide‐angle X‐ray scattering measurements for biomacromolecules.

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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