| Literature DB >> 28361898 |
Tetsuya Masuda1,2, Mamoru Suzuki2,3, Shigeyuki Inoue2,4, Changyong Song2,5, Takanori Nakane6, Eriko Nango2, Rie Tanaka2, Kensuke Tono7, Yasumasa Joti7, Takashi Kameshima7, Takaki Hatsui2, Makina Yabashi2, Bunzo Mikami8, Osamu Nureki6, Keiji Numata9, So Iwata2,10, Michihiro Sugahara2.
Abstract
Atomic resolution structures (beyond 1.20 Å) at ambient temperature, which is usually hampered by the radiation damage in synchrotron X-ray crystallography (SRX), will add to our understanding of the structure-function relationships of enzymes. Serial femtosecond crystallography (SFX) has attracted surging interest by providing a route to bypass such challenges. Yet the progress on atomic resolution analysis with SFX has been rather slow. In this report, we describe the 1.20 Å resolution structure of proteinase K using 13 keV photon energy. Hydrogen atoms, water molecules, and a number of alternative side-chain conformations have been resolved. The increase in the value of B-factor in SFX suggests that the residues and water molecules adjacent to active sites were flexible and exhibited dynamic motions at specific substrate-recognition sites.Entities:
Mesh:
Substances:
Year: 2017 PMID: 28361898 PMCID: PMC5374539 DOI: 10.1038/srep45604
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Data collection and refinement statistics.
| SACLA BL3 | SPring-8 BL26B1 | |
|---|---|---|
| Beam energy | ~200 μJ/pulse | 5 × 1010 phs/s |
| Absorbed dose (MGy) | ~6 | 0.015 |
| Detector | octal multiport CCD | RAXIS-V |
| Temperature (K) | 298 (in chamber) | 100–110 |
| Space group | ||
| Cell dimension (Å) | ||
| Unit cell volume (Å3) | 509,578.4 | 489,271.0 |
| X-ray wavelength (Å) | 0.95 | 0.80 |
| Resolution limit (Å) | 27.2 | 50.0 |
| Number of collected images | 362,074 | 180 |
| Number of hits | 158,777 | — |
| Number of indexed lattices | 141,735 | — |
| Number of used lattices (or crystals) | 82,074 | 1 |
| Total reflections | 97,358,594 | 2,364,635 |
| Number of unique reflections | 81,343 | 141,389 |
| Redundancy | 1,196.9 (419.5) | 10.7 (10.3) |
| Completeness (%) | 100 (100) | 99.5 (99.2) |
| <I/σ(I)> | 13.4 (1.26) | 58.41 (6.47) |
| | 4.61 (87.84) | n/a |
| | n/a | 7.6 (48.9) |
| CC1/2 | 0.997 (0.474) | 0.999 (0.923) |
| Number of molecules in ASU | ||
| Protein | 1 | 1 |
| Ca ion | 2 | 2 |
| NO3 ion | 1 | 1 |
| Glycerol | — | 2 |
| H2O | 219 | 468 |
| Resolution (Å) | 27.2 | 16.9 |
| Unique reflections | 81,247 | 141,318 |
| | 11.3/12.9 | 10.0/11.4 |
| Average B factor whole (Å2) | 19.90 | 9.40 |
| Protein main chain | 16.21 | 7.68 |
| Protein side chain | 21.34 | 10.06 |
| Ca ion | 18.94 | 8.76 |
| NO3 ion | 32.97 | 15.95 |
| Glycerol | n/a | 16.15 |
| H2O | 37.76 | 27.09 |
| r.m.s.d bond (Å) | 0.009 | 0.006 |
| r.m.s.d angle (°) | 0.873 | 0.967 |
Values in parenthesis are for the highest resolution shell.
*XFEL beam energy calculated from the reflectivity or the transmittance of the components between the beam monitor and the sample position (attenuator, KB mirrors, Be windows and air path).
#As calculated by Raddose-3D.
‡Note that σ(I) estimation method was different for CrystFEL and HKL2000 and they cannot be compared.
†.
†† where I(hkl) is the ith observation of reflection hkl and is the weighted average intensity for all observations, i, of reflection hkl.
Figure 1Stereo views of hydrogen atoms in secondary elements in SFX structure.
Typical hydrogen atoms are assigned in SFX structure, in (a) α-helix, (b) β-sheet, and (c) turn. The σA-weighted mF–DF maps omitting hydrogen atoms contoured at 2.0σ are shown in pink.
Figure 2Electron density maps around catalytic triad and oxyanion hole in SFX structure.
The σA-weighted 2mF–DF maps contoured at (a) 1.5σ, (b) 4.5σ, are shown in blue meshes. The σA-weighted mF–DF maps contoured at 2.5σ and −2.5σ are shown in green and red meshes, respectively.
Figure 3Comparison of SFX and SRX structures in the active site.
Catalytic residues and water molecules for SFX and cryo-temperature (a), two room temperature SRX structures [PDB codes: 2prk (b) and 4b5l (c)] are indicated in cyan, green and magenta, respectively.
Figure 4Comparison of water molecules in SFX and SRX structures.
(a,b) Water molecules specific for SFX and two room temperature SRX structures [PDB codes: 2prk (a) and 4b5l (b)] are indicated in magenta and cyan, respectively, as sphere models. (c,d) All water molecules found in both SFX and SRX structures [(c) 2prk and (d) 4b5l] which are located in the positions within the distance of 1.00 Å are plotted based on their B factor. Striking increases of B factor of water molecules are indicated in red. (e,f) Substantial higher B factor of water molecules [for (e) 2prk and (f) 4b5l] are indicated in red as sphere model. Catalytic residues are show in pink as stick models.