| Literature DB >> 35254323 |
Max Nanao1, Shibom Basu2, Ulrich Zander2, Thierry Giraud1, John Surr1, Matias Guijarro1, Mario Lentini1, Franck Felisaz2, Jeremy Sinoir2, Christian Morawe1, Amparo Vivo1, Antonia Beteva1, Marcus Oscarsson1, Hugo Caserotto1, Fabien Dobias1, David Flot1, Didier Nurizzo1, Jonathan Gigmes1, Nicolas Foos1, Ralf Siebrecht3, Thomas Roth1, Pascal Theveneau1, Olof Svensson1, Gergely Papp1, Bernard Lavault3, Florent Cipriani2, Ray Barrett1, Carole Clavel1, Gordon Leonard1.
Abstract
ID23-2 is a fixed-energy (14.2 keV) microfocus beamline at the European Synchrotron Radiation Facility (ESRF) dedicated to macromolecular crystallography. The optics and sample environment have recently been redesigned and rebuilt to take full advantage of the upgrade of the ESRF to the fourth generation Extremely Brilliant Source (ESRF-EBS). The upgraded beamline now makes use of two sets of compound refractive lenses and multilayer mirrors to obtain a highly intense (>1013 photons s-1) focused microbeam (minimum size 1.5 µm × 3 µm full width at half-maximum). The sample environment now includes a FLEX-HCD sample changer/storage system, as well as a state-of-the-art MD3Up high-precision multi-axis diffractometer. Automatic data reduction and analysis are also provided for more advanced protocols such as synchrotron serial crystallographic experiments. open access.Entities:
Keywords: MD3Up high-precision multi-axis diffractometer; macromolecular crystallography; microcrystallography
Mesh:
Substances:
Year: 2022 PMID: 35254323 PMCID: PMC8900849 DOI: 10.1107/S1600577522000984
Source DB: PubMed Journal: J Synchrotron Radiat ISSN: 0909-0495 Impact factor: 2.616
Figure 1Optical layout of ID23-2. Distances from the source are shown in parentheses. ID23-2 shares a common optical hutch with ID23-1. In the optics hutch (rectangle on the left), energy selection and beam deflection are achieved by the monochromator (green) and vertical focusing is performed by sets of CRLs in transfocators. In the experimental hutch (shown in the rectangle on the right), the beam is then horizontally focused by one of the two multilayer mirrors.
Figure 2(a) Transfocator CAD-drawing. Pneumatic axes (blue) actuate the insertion of lens pack holders into the beam path and onto a high-precision V-rail for mutual lens pack alignment. Alignment (rotation and translation) of the transfocator is achieved through a Q-Sys motion platform (cyan). (b) Large-beam and (c) small-beam HFM assembly. The mirrors are shown in gray, with the illuminated region in yellow. Dimensions are given in millimetres.
Summary of the beamline parameters, including source, optical configuration, X-ray beam characteristics and the experimental setup for ID23-2 at the ESRF
| Beamline name | ID23-2 | |
| Source type | 1 × 1.6 m 20.2 mm-period undulator | |
| Horizontal emittance (pm rad) | 132 | |
| Vertical emittance (pm rad) | 5 | |
| Monochromator | Si(111) | |
| Energy (keV) | 14.2 | |
| Horizontal photon source size (µm RMS) | 30.3 | |
| Vertical photon source size (µm RMS) | 4.5 | |
| Horizontal photon divergence (µrad RMS) | 6.9 | |
| Vertical photon divergence (µrad RMS) | 5.6 | |
| Vertical focusing | ||
| Focusing elements | 1D CRLs in two transfocators | |
| Lens material | Be | |
| Transfocator | Large beam | Small beam |
| Axis 1 (mm) | 2 mm alignment pinhole | 2 mm alignment pinhole |
| Axis 2 [No. of lenses × radius (µm)] | 1 × 200 | 1 × 200 |
| Axis 3 (µm) | 5 × 200 | 12 × 200 |
| Axis 4 (µm) | 1 × 500 | 1 × 500 |
| Axis 5 (µm) | 1 × 300 | 1 × 300 |
| Axes 6–7 (µm) | Unused | Unused |
| Axis 8 (µm) | 2 mm alignment pinhole | 2 mm alignment pinhole |
| Transfocator efficiency (%) | 93 | 88 |
| Vertical demagnification ratio | 2.4× | 8× |
| Horizontal focusing | ||
| Mirror assembly | Large beam | Small beam |
| Horizontal focusing mirror (HFM) | Bendable tangential mirror | Bendable tangential mirror |
| Incident angle on HFM (mrad) | 18 | 18 |
| Slope error of HFM (µrad RMS) | 0.50 | 0.57 |
| Horizontal demagnification ratio | 21× | 91× |
| Sample position | ||
| Beam size (H × V, FWHM) (µm) | 4.7 × 6.0 | 1.5 × 3.0 |
| Flux (photons s–1) | 1.8 × 1013 | 1.5 × 1013 |
| Diffractometer | MD3Up | |
| Sample mounting | FLEX HCD with rapid-exchange single and double grippers | |
| Detector type | CMOS Hybrid Pixel-Array | |
| Detector model | Dectris PILATUS3 X 2M (450 µm Si sensor) | |
Figure 3Beam sizes in FWHM, measured by a knife-edge scan of a 5 µm tungsten wire through the X-ray beam (a) and (c) horizontally or (b) and (d) vertically with readout from a downstream calibrated PIN diode. Fitting was performed in PyMCA (https://github.com/vasole/pymca).
Figure 4ID23-2 sample environment. (a) Photograph of the sample environment (Stef Cande, ESRF), (b) MD3Up, detector and FLEX-HCD, (c) close-up of MD3Up.
Figure 5(a) Kernel densities of overall 〈I/σ(I)〉 for the six months of operation preceding the EBS upgrade (red) and six months of operation post-EBS upgrade (green). (b) Overall CC 1/2 values.
Data collection and refinement statistics
Statistics for the highest-resolution shell are shown in parentheses. For the mesh and collect data, the average cell edge and range are provided. A refinement was not performed for these data.
| Cubic insulin helical | Cubic insulin | |
|---|---|---|
| Wavelength (Å) | 0.873 | 0.873 |
| No. of crystals | 1 | 142 |
| Resolution range (Å) | 39.28–1.203 (1.246–1.203) | 32.07–1.750 (1.80–1.75) |
| Space group |
|
|
| Unit cell |
|
|
| α = β = γ = 90 | α = β = γ = 90 | |
| Total reflections | 2269388 (146102) | 1257717 (95649) |
| Unique reflections | 25126 (2395) | 15814 (1184) |
| Multiplicity | 90.3 (58.7) | 79.53 (80.78) |
| Completeness (%) | 99.45 (95.30) | 100 (99.7) |
| 〈 | 30.66 (1.26) | 25.48 (1.36) |
| Wilson | 17.03 | 13.18 |
|
| 0.106 (2.697) | 0.155 (4.143) |
|
| 1 (0.565) | 1 (0.685) |
| Anomalous correlation (inner) | 2 | 3 |
| SigAno | 0.816 | 0.842 |
| Reflections used in refinement | 25010 (2395) | – |
| Reflections used for | 1264 (129) | – |
|
| 0.0468 (0.0768) | – |
|
| 0.0442 (0.0755) | – |
|
| 0.951 (0.736) | – |
|
| 0.959 (0.706) | – |
| No. of non-hydrogen atoms | 459 | – |
| Macromolecules | 396 | – |
| Solvent | 63 | – |
| Protein residues | 50 | – |
| RMS (bonds) | 0.016 | – |
| RMS (angles) | 1.66 | – |
| Ramachandran favored (%) | 100.00 | – |
| Ramachandran allowed (%) | 0.00 | – |
| Ramachandran outliers (%) | 0.00 | – |
| Rotamer outliers (%) | 0.00 | – |
| Clashscore | 3.90 | – |
| Average | 22.63 | – |
| Macromolecules | 19.55 | – |
| Solvent | 42.04 | – |
Figure 6Experimental electron density (blue) from native sulfur anomalous phasing of cubic insulin on data collected at E = 14.2 keV/0.873 Å. Density is contoured at 1.5σ above the mean electron density value. Model-phased anomalous difference density is shown in green, contoured at 10σ above the mean electron density value. This figure was generated in PyMOL (Schroedinger).