Control of strain in subgrains of protein crystals by the introduction of grown-in dislocations

Acta Crystallogr D Struct Biol. 2021 May 1;77(Pt 5):599-605. doi: 10.1107/S2059798321001820. Epub 2021 Apr 14.

Abstract

It is important to reveal the exact cause of poor diffractivity in protein crystals in order to determine the accurate structure of protein molecules. It is shown that there is a large amount of local strain in subgrains of glucose isomerase crystals even though the overall crystal quality is rather high, as shown by clear equal-thickness fringes in X-ray topography. Thus, a large stress is exerted on the subgrains of protein crystals, which could significantly lower the resistance of the crystals to radiation damage. It is also demonstrated that this local strain can be reduced through the introduction of dislocations in the crystal. This suggests that the introduction of dislocations in protein crystals can be effective in enhancing the crystal quality of subgrains of protein crystals. By exploiting this effect, the radiation damage in subgrains could be decreased, leading to the collection of X-ray diffraction data sets with high diffractivity.

Keywords: crystal quality; local strain; protein crystals; rocking curves; subgrains.

MeSH terms

  • Aldose-Ketose Isomerases / chemistry*
  • Protein Conformation
  • X-Ray Diffraction / methods*

Substances

  • Aldose-Ketose Isomerases
  • xylose isomerase