Current Protein Identity:Q9Y490 New Search
Main Difference Dimensions in This Set
Different construct Different mutation/modification Different assembly state Different experimental method Different experimental conditions Different structure-quality metrics

Difference tags compare only the current result set; every original PDB and assembly record remains separate.

Related-Structure Differences

Each row represents one biological assembly in one PDB entry; multiple monomers of the same protein are listed separately.

PDB Entry Assembly / Oligomeric State Construct Mutations and Modifications Ligands, Ions and Non-polymers Experimental Method Experimental Conditions Structure Quality
1SYQ Human vinculin head domain VH1, residues 1-258, in complex with human talin's vinculin binding site 1, residues 607-636 Deposited 2004-04-01 Assembly 1 Protein heterocomplex Heteromer;Protein × 2 PDB declaration: dimeric(2) Consistent with protein count
Chain B 607–631(25 aa)
Not recorded No recorded non-water small molecule X-RAY DIFFRACTION mmCIF provides none of the parsed conditions Resolution 2.42 Å R-free 0.236
1SYQ Human vinculin head domain VH1, residues 1-258, in complex with human talin's vinculin binding site 1, residues 607-636 Deposited 2004-04-01 Assembly 2 Protein heterocomplex Heteromer;Protein × 12 PDB declaration: dodecameric(12) Consistent with protein count
Chain B 607–631(25 aa)
Not recorded No recorded non-water small molecule X-RAY DIFFRACTION mmCIF provides none of the parsed conditions Resolution 2.42 Å R-free 0.236
1SYQ Human vinculin head domain VH1, residues 1-258, in complex with human talin's vinculin binding site 1, residues 607-636 Deposited 2004-04-01 Assembly 3 Protein heterocomplex Heteromer;Protein × 12 PDB declaration: dodecameric(12) Consistent with protein count
Chain B 607–631(25 aa)
Not recorded No recorded non-water small molecule X-RAY DIFFRACTION mmCIF provides none of the parsed conditions Resolution 2.42 Å R-free 0.236
2MWN Talin-F3 / RIAM N-terminal Peptide complex Deposited 2014-11-13 Assembly 1 Protein heterocomplex Heteromer;Protein × 2 PDB declaration: dimeric(2) Consistent with protein count
Chain B 308–400(93 aa)
Not recorded No recorded non-water small molecule SOLUTION NMR
NMR measurement conditions pH 6.8;298 K;Ionic strength (raw mmCIF value) 50;Pressure ambient
NMR sample composition 0.5 mM [U-15N] Talin-F3, 50 mM sodium phosphate, 50 mM sodium chloride, 2 mM sodium azide, 1 mM DSS, 95% H2O/5% D2O | 95% H2O/5% D2O
NMR sample composition 1.5 mM RIAM-N peptide, 0.5 mM [U-15N; U-2H] Talin-F3, 50 mM sodium phosphate, 50 mM sodium chloride, 2 mM sodium azide, 1 mM DSS, 95% H2O/5% D2O | 95% H2O/5% D2O
Resolution not provided
4DJ9 Human vinculin head domain Vh1 (residues 1-258) in complex with the talin vinculin binding site 50 (VBS50, residues 2078-2099) Deposited 2012-02-01 Assembly 1 Protein heterocomplex Heteromer;Protein × 2 PDB declaration: dimeric(2) Consistent with protein count
Chain B 2075–2103(29 aa) Fragment:unp residues 2075-2103
Not recorded No recorded non-water small molecule X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION;pH 7.5;The human vinculin Vh1 domain (residues 1 - 258) was generated as described.9 Crystallization screens of Vh1 protein and VBS50 mixed in 1:5 molar ratio were performed at two temperatures. Co-crystals were obtained from Hampton crystal screen I with a reservoir of 0.1 M Hepes pH 7.5, 10% w/v polyethylene glycol 6,000, and 5% 2-Methyl-2,4-pentanediol. Crystals were transferred directly from the initial 96-well screening plate into Paratone-N oil and flash-frozen in liquid nitrogen. , VAPOR DIFFUSION
Resolution 2.25 Å R-free 0.247
6R9T Cryo-EM structure of autoinhibited human talin-1 Deposited 2019-04-04 Assembly 1 Protein monomer Monomer;Protein × 1 PDB declaration: monomeric(1) Consistent with protein count
Chain A 1–2541(2541 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE;Blotted 4 seconds before plunging, blot force 4
Resolution 6.20 Å