4.6 Article

Rastering strategy for screening and centring of microcrystal samples of human membrane proteins with a sub-10 μm size X-ray synchrotron beam

期刊

JOURNAL OF THE ROYAL SOCIETY INTERFACE
卷 6, 期 -, 页码 S587-S597

出版社

ROYAL SOC
DOI: 10.1098/rsif.2009.0142.focus

关键词

lipidic cubic phase; G protein-coupled receptor; minibeam; microcrystallography

资金

  1. NIH [P50 GM073197, GM075915]
  2. Protein Structure Initiative [U54 GM074961]
  3. NSF [IIS0308078]
  4. Science Foundation Ireland [02-IN1-B266]
  5. National Cancer Institute [Y1-CO-1020]
  6. National Institute of General Medical Sciences [Y1-GM-1104]

向作者/读者索取更多资源

Crystallization of human membrane proteins in lipidic cubic phase often results in very small but highly ordered crystals. Advent of the sub-10 mu m minibeam at the APS GM/CA CAT has enabled the collection of high quality diffraction data from such microcrystals. Herein we describe the challenges and solutions related to growing, manipulating and collecting data from optically invisible microcrystals embedded in an opaque frozen in meso material. Of critical importance is the use of the intense and small synchrotron beam to raster through and locate the crystal sample in an efficient and reliable manner. The resulting diffraction patterns have a significant reduction in background, with strong intensity and improvement in diffraction resolution compared with larger beam sizes. Three high-resolution structures of human G protein-coupled receptors serve as evidence of the utility of these techniques that will likely be useful for future structural determination efforts. We anticipate that further innovations of the technologies applied to microcrystallography will enable the solving of structures of ever more challenging targets.

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