| Literature DB >> 30198885 |
Hayley J Owen1, Ruyue Sun2, Asma Ahmad2, Svetlana E Sedelnikova1, Patrick J Baker1, Mark S Thomas2, David W Rice1.
Abstract
TssA is a core component of the type VI secretion system, and phylogenetic analysis of TssA subunits from different species has suggested that these proteins fall into three distinct clades. Whilst representatives of two clades, TssA1 and TssA2, have been the subjects of investigation, no members of the third clade (TssA3) have been studied. Constructs of TssA from Burkholderia cenocepacia, a representative of clade 3, were expressed, purified and subjected to crystallization trials. Data were collected from crystals of constructs of the N-terminal and C-terminal domains. Analysis of the data from the crystals of these constructs and preliminary structure determination indicates that the C-terminal domain forms an assembly of 32 subunits in D16 symmetry, whereas the N-terminal domain is not involved in subunit assocation. open access.Entities:
Keywords: Burkholderia cenocepacia; TssA; type VI secretion system
Mesh:
Substances:
Year: 2018 PMID: 30198885 PMCID: PMC6130427 DOI: 10.1107/S2053230X18009706
Source DB: PubMed Journal: Acta Crystallogr F Struct Biol Commun ISSN: 2053-230X Impact factor: 1.056
Construct information
| Construct | His6-TssA Nt1 | MBP-TssA CTD |
|---|---|---|
| B.c TssA amino acids | 1–255 | 303–373 |
| Tag details | MGSSHHHHHHSSGLVPRGSH | (MBP)NSSSNNNNNNNNNNLGIEGR/ISHM |
| Construct sequence |
|
|
| Forward primer | pET-14b-iotAfor, GCGC | pET-14b-ACTDfor3, GCGC |
| Reverse primer | pET-14b-TssA-NTDrev, GCGC | pET-14b-iotArev, GCGC |
| Restriction enzymes | NdeI and BamHI | NdeI and BamHI |
| Expression vector | pET-14b | pMAL-c5X |
| Antibiotic | 100 µg ml−1 ampicillin | 100 µg ml−1 ampicillin |
| Expression host |
|
|
MBP is maltose-binding protein; IEGR is the Factor Xa recognition site; / indicates the Factor X cleavage site. Tags are highlighted as underlined regions of the construct sequences.
Bold sequences indicate restriction sites. Translation initiation and termination codons are underlined.
Crystallization
| Construct | His6-TssA Nt1 | TssA CTD | SeMet-TssA CTD |
|---|---|---|---|
| Method | Sitting-drop vapour diffusion | Sitting-drop vapour diffusion | Hanging-drop vapour diffusion |
| Composition of reservoir solution | 0.16 | 0.1 | 1 |
| Volume and ratio of drop | 200 nl:200 nl | 200 nl:200 nl | 2 µl:1 µl (protein:reservoir) |
| Volume of reservoir (µl) | 50 | 50 | 1000 |
Data-collection and processing statistics
Values in parentheses are for the highest resolution shell.
| Construct | His6-TssA Nt1 | His6-TssA Nt1 + iodine | TssA CTD | SeMet-TssA CTD |
|---|---|---|---|---|
| Wavelength (Å) | 0.92000 | 1.70000 | 0.97949 | 0.97922 |
| Beamline | I04-1 | I03 | I04 | I03 |
| Detector | PILATUS 2M | PILATUS 6M | PILATUS 6M-F | PILATUS3 6M |
| Rotation range per image (°) | 0.2 | 0.2 | 0.2 | 0.1 |
| Total rotation range (°) | 90 | 720 | 180 | 360 |
| Exposure time per image (s) | 0.2 | 0.2 | 0.2 | 0.05 |
| Data-processing package |
|
|
|
|
| Space group |
|
|
|
|
|
| 49.7, 125.4, 45.5 | 45.6, 49.8, 126.1 | 46.9, 203.0, 267.9 | 46.3, 201.3, 263.9 |
| α, β, γ (°) | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 |
| Resolution range (Å) | 62.69–1.87 (1.92–1.87) | 29.68–2.01 (2.06–2.01) | 55.90–3.79 (3.89–3.79) | 80.61–2.86 (2.93–2.86) |
|
| 0.067 (0.495) | 0.131 (0.761) | 0.221 (0.871) | 0.207 (2.520) |
|
| 0.051 (0.372) | 0.031 (0.174) | 0.112 (0.487) | 0.064 (0.747) |
| 〈 | 10.8 (2.0) | 20.6 (3.4) | 7.6 (2.0) | 11.1 (1.1) |
| Completeness (%) | 98.4 (99.3) | 98.4 (79.0) | 99.4 (99.7) | 100.0 (100.0) |
| Multiplicity | 3.3 (3.3) | 23.0 (18.7) | 5.7 (5.3) | 13.0 (13.2) |
| Total reflections | 77962 | 448717 | 75744 | 382400 |
| Unique reflections | 23839 | 19523 | 13207 | 29304 |
Figure 1(a) SDS–PAGE analysis of protein purification of the B.c His6-TssA Nt1 construct. Lane M, Mark12 marker (labelled in kDa). Lane 1, cell debris. Lane 2, cell-free extract. Lane 3, flowthrough (Ni column). Lane 4, final preparation. (b) SDS–PAGE analysis of protein purification of the B.c SeMet MBP-TssA CTD construct. The protein, indicated by the arrow, is shown to be ∼90% pure in the final preparation samples and thus was used for crystallization. Lane M, Mark12 marker (labelled in kDa). Lane 1, cell-free extract. Lane 2, unbound material (amylose column). Lane 3, B.c SeMet MBP-TssA CTD. Lane 4, after MBP cleavage. Lane 5, after gel filtration. Lane 6, final preparation. (c) B.c His6-TssA Nt1 crystals grown in 0.16 M calcium acetate, 0.08 M sodium cacodylate buffer pH 6.5, 14.4%(w/v) PEG 8000, 20%(v/v) glycerol. (d) B.c TssA CTD crystals grown in 0.1 M sodium chloride, 0.1 M Tris pH 8.0, 15%(v/v) ethanol, 5%(v/v) MPD.
Figure 2(a) The self-rotation function for B.c TssA CTD crystals calculated on all data from 55.90 to 3.79 Å resolution using a 44 Å radius of integration. The section shown corresponds to κ = 180°, with the orthogonal x, y and z axes along the crystallographic a, b and c axes, respectively. Noncrystallographic twofold axes can be seen every 11.25° in the bc plane at approximately 70% of the origin. The image was generated in POLARRFN (Winn et al., 2011 ▸). (b) Gel-filtration chromatogram of B.c SeMet-MBP-TssA CTD protein, with UV absorption (280 nm) shown as a dotted blue line and the elution volume (70.77 ml) corresponding to B.c TssA CTD shown above the curve. Inset: calibration curve for the gel-filtration column, with K av = 0.4 (V e = 70.77 ml) highlighted corresponding to a molecular mass of ∼3.55 × 105 Da for B.c TssA CTD.
Figure 3Preliminary electron-density maps, contoured at ∼1.0σ, representing (a) a helical section of B.c TssA CTD. The large side chain visible towards the C-terminal end of the helix corresponds to Trp339, and density can also be seen for the nearby Trp347. Phases were obtained from SHELX (Sheldrick, 2008 ▸). (b) A helical section of the B.c His6-TssA Nt1 domain. The large side chain visible at the C-terminal end of the helix corresponds to Phe247, and density can also be seen for the side chain of the adjacent Arg246. Phases were obtained from fast_ep and SHELX (Sheldrick, 2008 ▸). Images were generated in Coot (Emsley et al., 2010 ▸).