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Open data
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Basic information
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Title | Mycobacteriophage Muddy capsid | |||||||||||||||
![]() | Sharpened map of Bayesian polished and ewald sphere corrected Muddy_postprocess. | |||||||||||||||
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![]() | Bacteriophage / Mycobacteriophage / HK97-fold / Capsid / VIRUS | |||||||||||||||
Function / homology | Phage capsid / Phage capsid family / Capsid![]() | |||||||||||||||
Biological species | ![]() | |||||||||||||||
Method | single particle reconstruction / cryo EM / Resolution: 2.7 Å | |||||||||||||||
![]() | Freeman KG / White SJ / Huet A / Conway JF | |||||||||||||||
Funding support | ![]()
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![]() | ![]() Title: A structural dendrogram of the actinobacteriophage major capsid proteins provides important structural insights into the evolution of capsid stability. Authors: Jennifer M Podgorski / Krista Freeman / Sophia Gosselin / Alexis Huet / James F Conway / Mary Bird / John Grecco / Shreya Patel / Deborah Jacobs-Sera / Graham Hatfull / Johann Peter Gogarten ...Authors: Jennifer M Podgorski / Krista Freeman / Sophia Gosselin / Alexis Huet / James F Conway / Mary Bird / John Grecco / Shreya Patel / Deborah Jacobs-Sera / Graham Hatfull / Johann Peter Gogarten / Janne Ravantti / Simon J White / ![]() ![]() Abstract: Many double-stranded DNA viruses, including tailed bacteriophages (phages) and herpesviruses, use the HK97-fold in their major capsid protein to make the capsomers of the icosahedral viral capsid. ...Many double-stranded DNA viruses, including tailed bacteriophages (phages) and herpesviruses, use the HK97-fold in their major capsid protein to make the capsomers of the icosahedral viral capsid. After the genome packaging at near-crystalline densities, the capsid is subjected to a major expansion and stabilization step that allows it to withstand environmental stresses and internal high pressure. Several different mechanisms for stabilizing the capsid have been structurally characterized, but how these mechanisms have evolved is still not understood. Using cryo-EM structure determination of 10 capsids, structural comparisons, phylogenetic analyses, and Alphafold predictions, we have constructed a detailed structural dendrogram describing the evolution of capsid structural stability within the actinobacteriophages. We show that the actinobacteriophage major capsid proteins can be classified into 15 groups based upon their HK97-fold. | |||||||||||||||
History |
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Structure visualization
Supplemental images |
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Downloads & links
-EMDB archive
Map data | ![]() | 1.8 GB | ![]() | |
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Header (meta data) | ![]() ![]() | 24.5 KB 24.5 KB | Display Display | ![]() |
FSC (resolution estimation) | ![]() | 28 KB | Display | ![]() |
Images | ![]() | 322.5 KB | ||
Masks | ![]() | 1.9 GB | ![]() | |
Filedesc metadata | ![]() | 6.4 KB | ||
Others | ![]() ![]() ![]() ![]() | 1.8 GB 1.5 GB 1.6 GB 1.6 GB | ||
Archive directory | ![]() ![]() | HTTPS FTP |
-Validation report
Summary document | ![]() | 1.1 MB | Display | ![]() |
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Full document | ![]() | 1.1 MB | Display | |
Data in XML | ![]() | 36.7 KB | Display | |
Data in CIF | ![]() | 49.9 KB | Display | |
Arichive directory | ![]() ![]() | HTTPS FTP |
-Related structure data
Related structure data | ![]() 8eduMC ![]() 8e16C ![]() 8eb4C ![]() 8ec2C ![]() 8ec8C ![]() 8eciC ![]() 8ecjC ![]() 8eckC ![]() 8ecnC ![]() 8ecoC M: atomic model generated by this map C: citing same article ( |
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Similar structure data | Similarity search - Function & homology ![]() |
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Links
EMDB pages | ![]() ![]() |
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Related items in Molecule of the Month |
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Map
File | ![]() | ||||||||||||||||||||
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Annotation | Sharpened map of Bayesian polished and ewald sphere corrected Muddy_postprocess. | ||||||||||||||||||||
Voxel size | X=Y=Z: 1.076 Å | ||||||||||||||||||||
Density |
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Symmetry | Space group: 1 | ||||||||||||||||||||
Details | EMDB XML:
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-Supplemental data
-Mask #1
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Projections & Slices |
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Density Histograms |
-Additional map: Ewald sphere corrected map of Muddy 3DRefine After Polishing And CTFRefine....
File | emd_28039_additional_1.map | ||||||||||||
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Annotation | Ewald sphere corrected map of Muddy_3DRefine_After_Polishing_And_CTFRefine. | ||||||||||||
Projections & Slices |
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Density Histograms |
-Additional map: Map before ewald sphere correction but after Bayesian...
File | emd_28039_additional_2.map | ||||||||||||
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Annotation | Map before ewald sphere correction but after Bayesian polishing and CTF Refinement. | ||||||||||||
Projections & Slices |
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Density Histograms |
-Half map: Half map of ewald sphere corrected Muddy 3DRefine After Polishing And CTFRefine.mrc....
File | emd_28039_half_map_1.map | ||||||||||||
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Annotation | Half map of ewald sphere corrected Muddy_3DRefine_After_Polishing_And_CTFRefine.mrc. | ||||||||||||
Projections & Slices |
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Density Histograms |
-Half map: Half map of ewald sphere corrected Muddy 3DRefine After Polishing And CTFRefine.mrc....
File | emd_28039_half_map_2.map | ||||||||||||
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Annotation | Half map of ewald sphere corrected Muddy_3DRefine_After_Polishing_And_CTFRefine.mrc. | ||||||||||||
Projections & Slices |
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Density Histograms |
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Sample components
-Entire : Mycobacterium phage Muddy
Entire | Name: ![]() |
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Components |
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-Supramolecule #1: Mycobacterium phage Muddy
Supramolecule | Name: Mycobacterium phage Muddy / type: virus / ID: 1 / Parent: 0 / Macromolecule list: all Details: Phage Muddy particles generated by amplification on bacterial host and purification via CsCl gradient. NCBI-ID: 1340829 / Sci species name: Mycobacterium phage Muddy / Virus type: VIRION / Virus isolate: STRAIN / Virus enveloped: No / Virus empty: No |
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Host (natural) | Organism: ![]() |
Virus shell | Shell ID: 1 / Diameter: 710.0 Å / T number (triangulation number): 7 |
-Macromolecule #1: Capsid
Macromolecule | Name: Capsid / type: protein_or_peptide / ID: 1 / Number of copies: 7 / Enantiomer: LEVO |
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Source (natural) | Organism: ![]() |
Molecular weight | Theoretical: 34.670102 KDa |
Sequence | String: AGFANIQGRA DLSDVHLPDQ VIKDVLQTAP EASVLLNRAR KVRMSSKKTK QPVLASLPDA YWVDGDTGLK QTTKNIWSNV FMTAEELAV IVPIPDALIA DSDLPLWDEV KPLLVEAIGK KVDDAGIFGN DKPASWPAAL IPGAIAAGNS VTLGTGDDIG V DVATLGEQ ...String: AGFANIQGRA DLSDVHLPDQ VIKDVLQTAP EASVLLNRAR KVRMSSKKTK QPVLASLPDA YWVDGDTGLK QTTKNIWSNV FMTAEELAV IVPIPDALIA DSDLPLWDEV KPLLVEAIGK KVDDAGIFGN DKPASWPAAL IPGAIAAGNS VTLGTGDDIG V DVATLGEQ LALDGFSING FISRPGLHWS LVGLRNAQGQ PIYTPPLSTG LNGAPPTPAL YGFPLNEVTS GVWDADEAIL LG ADWSKVV IGIRQDITFD LFSEGVISDS DGKVVLNLMQ QDSKALRVVF RVGFQVANPM TRLNPNEATR YPAGVIIPAG GGS GEGEGE SE UniProtKB: Capsid |
-Experimental details
-Structure determination
Method | cryo EM |
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![]() | single particle reconstruction |
Aggregation state | particle |
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Sample preparation
Concentration | 10 mg/mL | |||||||||||||||
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Buffer | pH: 7.5 Component:
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Grid | Model: Quantifoil R2/1 / Material: COPPER / Mesh: 300 / Support film - Material: CARBON / Support film - topology: HOLEY ARRAY / Pretreatment - Type: GLOW DISCHARGE / Pretreatment - Time: 15 sec. | |||||||||||||||
Vitrification | Cryogen name: ETHANE-PROPANE / Chamber humidity: 100 % / Chamber temperature: 283 K / Instrument: FEI VITROBOT MARK IV |
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Electron microscopy
Microscope | FEI TITAN KRIOS |
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Image recording | Film or detector model: FEI FALCON III (4k x 4k) / Detector mode: COUNTING / Digitization - Dimensions - Width: 4096 pixel / Digitization - Dimensions - Height: 4096 pixel / Number grids imaged: 1 / Number real images: 1027 / Average exposure time: 40.0 sec. / Average electron dose: 50.0 e/Å2 |
Electron beam | Acceleration voltage: 300 kV / Electron source: ![]() |
Electron optics | C2 aperture diameter: 50.0 µm / Illumination mode: FLOOD BEAM / Imaging mode: BRIGHT FIELD / Cs: 2.7 mm / Nominal defocus max: 2.5 µm / Nominal defocus min: 1.0 µm / Nominal magnification: 75000 |
Sample stage | Specimen holder model: FEI TITAN KRIOS AUTOGRID HOLDER / Cooling holder cryogen: NITROGEN |
Experimental equipment | ![]() Model: Titan Krios / Image courtesy: FEI Company |
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Image processing
-Atomic model buiding 1
Details | Amino acid sequence built into the map for a single major capsid protein and refined with Phenix. Model then used for rest of asymmetric unit and refined with Phenix. Final step involved using Isolde. |
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Refinement | Protocol: AB INITIO MODEL |
Output model | ![]() PDB-8edu: |