| Literature DB >> 33949973 |
Linda Juniar1, Vida Adlfar2, Michael Hippler2, Hideaki Tanaka1, Genji Kurisu1.
Abstract
As an essential component of protein cofactors, iron is important for all photosynthetic organisms. In Chlamydomonas reinhardtii, iron levels are strictly controlled by proteins such as iron-assimilating protein 1 (FEA1). This periplasmic protein is expressed under conditions of iron deficiency, but its mechanisms of function remain unknown. Because FEA1 has no amino-acid similarity to protein structures in the Protein Data Bank, its crystal structure cannot be solved by molecular replacement. Here, recombinant FEA1 protein lacking the N-terminal signal sequence was successfully purified and crystals of apo FEA1 were obtained by hanging-drop vapor diffusion. Neither selenomethionine substitution nor heavy-atom derivatization was successful; therefore, the phase problem of FEA1 crystals was solved by the native sulfur SAD method using long-wavelength X-rays (2.7 Å). Laser-cutting technology was used to increase the signal-to-noise ratio and derive an initial structure. This study will lead to further structural studies of FEA1 to understand its function and its links to the iron-assimilation pathway. open access.Entities:
Keywords: Chlamydomonas reinhardtii; FEA1; SAD; iron transport
Year: 2021 PMID: 33949973 PMCID: PMC8098128 DOI: 10.1107/S2053230X21003952
Source DB: PubMed Journal: Acta Crystallogr F Struct Biol Commun ISSN: 2053-230X Impact factor: 1.056
Information on the recombinant expression of FEA1
| Source organism |
|
| DNA source | DNA fragment generated by synthesis |
| Expression vector | pASK-IBA2 |
| Expression host |
|
| Complete amino-acid sequence of the construct produced | QPTTTGTRFEGFSYAGNVIGYVNMTMDYCDIKAAMAAGNFTEALSIYSTGKNSFSGLARRTFFRFASYITANGSVEPLHDSILAGKDTSSLDAAIRAALADGKATLAAGLQVGTLKYHLHEVDEAYNKIKTYLADGTGNLTNLVSDASGAPHNVDEAWALWAGGAANNCGTLSGWASSLGAAMGTTFLGKSYVNTAMINTVNEMLAAARLSTLNIQAYDAARTNEVRLLTLLGLQGVSVAAYTADAAAACKRPAAEVEDAKTMIAVHWAYLEPMLKLRNFKASAVTELHHQLTASKLSYKKVAAAVKGVLSAMGRRSSELGAPQSAIIAANWKCSSKTLRSIA |
| UniProt identifier | Q9LD42 |
The 21-residue Strep-tag added to the C-terminus of the native sequence is underlined.
Conditions for crystallization of FEA1
| Method | Hanging-drop vapor diffusion |
| Plate type | VDX48 plate with sealant (Hampton Research) |
| Temperature (K) | 277 |
| Protein concentration (mg ml−1) | 10 |
| Buffer composition of protein solution | 40 m |
| Composition of reservoir solution | 0.2 |
| Volume and ratio of drop | 2 µl, 1:1 ratio of protein:reservoir solution |
| Volume of reservoir (µl) | 150 |
Data collection and processing
Values in parentheses are for the outer shell.
| Native | S-SAD | |
|---|---|---|
| Diffraction source | BL44XU, SPring-8 | BL-1A, PF |
| Wavelength (Å) | 0.90000 | 2.70000 |
| Temperature (K) | 100 | 100 |
| Detector | EIGER X 16M | EIGER X 4M |
| Crystal-to-detector distance (mm) | 200 | 61.5 |
| Rotation range per image (°) | 0.1 | 0.1 |
| Exposure time per image (s) | 0.1 | 0.01 |
| Resolution range (Å) | 38.30–1.90 (2.01–1.90) | 49.04–2.69 (2.76–2.69) |
| Space group |
|
|
|
| 85.75, 155.94, 129.53 | 85.44, 155.32, 129.22 |
| α, β, γ (°) | 90, 102.28, 90 | 90, 101.84, 90 |
| Total no. of reflections | 381316 (61723) | 3774689 (40196) |
| No. of unique reflections | 129679 (20765) | 88102 (5191) |
| Multiplicity | 2.9 (2.9) | 42.8 (7.7) |
| Completeness (%) | 98.9 (98.5) | 97.4 (78.3) |
| Mean | 12.0 (1.4) | 24.4 (1.8) |
|
| 0.06 (0.91) | 0.15 (0.92) |
|
| 0.07 (1.11) | 0.15 (0.98) |
| CC1/2 (%) | 99.8 (55.0) | 99.9 (63.8) |
Figure 1Purification of FEA1 by cation-exchange chromatography. (a) Chromatogram and (b) SDS–PAGE analysis of purified FEA1. Lane M, protein markers (labeled in kDa); lanes 1–2, purified FEA1.
Figure 2(a) A crystal of FEA1. (b) Diffraction image of an FEA1 crystal recorded on beamline BL44XU at SPring-8, Hyogo, Japan.
Figure 3Laser cutting to decrease the solvent content of the loop. (a) Original loop before laser cutting and the cutting-line pattern (pink line); (b) the same loop after laser cutting. The shape of the FEA1 crystal is shown by a black dotted line.
Figure 4Initial structure of FEA1 solved by S-SAD. (a, b) The electron-density map is contoured around the initial structure. (c) The experimental electron-density map from autoBUSTER. The figures were generated using PyMOL.