| Literature DB >> 27279168 |
Enrico Ravera1, Linda Cerofolini1,2, Tommaso Martelli3, Alexandra Louka1, Marco Fragai1,2, Claudio Luchinat1,2,3.
Abstract
Proton-detection in solid-state NMR, enabled by high magnetic fields (>18 T) and fast magic angle spinning (>50 kHz), allows for the acquisition of traditional (1)H-(15)N experiments on systems that are too big to be observed in solution. Among those, proteins entrapped in a bioinspired silica matrix are an attractive target that is receiving a large share of attention. We demonstrate that (1)H-detected SSNMR provides a novel approach to the rapid assessment of structural integrity in proteins entrapped in bioinspired silica.Entities:
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Year: 2016 PMID: 27279168 PMCID: PMC4899708 DOI: 10.1038/srep27851
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 12D 1H-15N HSQC spectra of catMMP12-R5 (left) and GFP-R5 (right) showing the comparison between the solid-state spectrum (black) and the solution-state spectrum (red).
1H-linewidths are about 240 Hz for catMMP12-R5 and 140 Hz for GFP-R5.
Figure 2(A) The X-ray structure of catMMP12 (1RMZ42, which does not carry the R5 fusion) showing the charged residues in blue (positive) and red (negative). (B) The structure of catMMP12 with the residues showing no signals shown in magenta. Apparently, they tend to cluster close to loops or in proximity of charged residues, which can interact with the biosilica matrix.
Residues with missing NH resonances in the catMMP12-R5 1H-15N solid state NMR experiment.
| 110 | R | Loop | |
| 119 | N | RI | Loop |
| 121 | Y | NN | Loop |
| 122 | T | NY | Loop |
| 124 | D | TP | Loop |
| 147 | L | TP | Loop |
| 157 | A | GM | Loop |
| 166 | G | AR | Loop |
| 168 | H | GA | Loop |
| 172 | H | DF | Loop |
| 176 | G | FD | Loop |
| 185 | F | HA | Loop |
| 186 | G | AF | Loop |
| 188 | G | GP | Loop |
| 189 | S | PG | Loop |
| 190 | G | GS | Loop |
| 201 | F | ED | Loop |
| 206 | H | TT | Loop |
| 207 | S | TH | Loop |
| 208 | G | HS | Loop |
| 209 | G | SG | Loop |
| 211 | N | GT | Loop |
| 213 | F | NL | Helix |
| 228 (active site ligand) | H | LG | Loop |
| 229 | S | GH | Loop |
| 236 | M | AV | Loop |
| 241 | K | TY | Loop |
| 254 | D | AD | Helix |
The resonances assignment reported in the bmrb under the accession code 644442 has been used for the interpretation of the spectra. Also for GFP some resonances could not be observed, again maily in proximity of charged residues and loops (Fig. 3 and Table 2).
Residues with missing NH resonances in the GFP-R5 1H-15N solid state NMR experiment.
| 7 | L | EE | Helix |
| 37 | A | GD | Loop |
| 83 | F | HD | Helix |
| 97 | T | ER | Strand |
| 104 | G | DD | Loop |
| 110 | A | TR | Strand |
| 129 | D | GI | Loop |
| 130 | F | ID | Loop |
| 157 | Q | DK | Helix |
| 167 | I | FK | Strand |
| 173 | D | IE | Loop |
| 175 | S | DG | Loop |
| 185 | N | QQ | Strand |
| 194 | L | GV | Loop |
| 200 | Y | NH | Strand |
The resonances assignment reported in the bmrb under the accession code 566644 has been used for the interpretation of the spectra.