9ogv

Identification of ligands for E3 ligases using fragment-based methods

Method: X-RAY DIFFRACTION Dmax: 81.7 Å Quality: EXCELLENT

1. Protein Identity and Related Structures Protein Identity & Related Structures

TNF receptor-associated factor 4

Homo sapiens

UniProt Q9BUZ4

State in the Current Structure

Assembly Oligomeric State Construct Mutations and Modifications Ligands, Ions and Associated Components Method and Experimental Conditions Structure Quality
1 Protein homooligomer Homooligomer Protein × 3 PDB declaration: trimeric(3) Consistent with protein copy count Chain A; UniProt 292–466 Chain B; UniProt 292–466 Chain C; UniProt 292–466 Not recorded A1CA9 N-(1,3-thiazol-2-yl)quinoxaline-6-carboxamide × 3 X-RAY DIFFRACTION X-ray crystallization conditions:VAPOR DIFFUSION, HANGING DROP;pH 6.5;291 K;10-15% PEG 3350, 0.1 M Bis-TRIS pH 6.5 Resolution 2.80 Å R-free 0.295

Other States of the Same Protein in the Database

Each row is a biological assembly of the same UniProt protein in another PDB entry. The “Difference from current entry” column identifies evidence-level differences; no tag means the currently parsed fields agree.

7 other PDB entries and 10 assemblies. Open the comparison page and filter oligomeric states

View Construct and Data Evidence
UniProt name TRAF4_HUMAN
Isoform
PDB entities 1
Chains and sequence ranges Author chain A; PDBConstruct 2–176; UniProt 292–466 Author chain B; PDBConstruct 2–176; UniProt 292–466 Author chain C; PDBConstruct 2–176; UniProt 292–466

The page prioritizes protein identity, the current assembly, associated components, oligomeric state and cross-PDB links. Chain mapping and sequence ranges are retained as data evidence. Internal IDs, import timestamps and assembly operation expressions are maintenance fields and are not shown here.

SAXS scattering curve SAXS Profile

SAXS profile for 9ogv

P(r) Distance Distribution P(r) Distribution

P(r) distribution for 9ogv
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2. Structure Basics 2. Structure Basics

Entry ID entry_id9ogv
Deposition date deposition_date2025-05-02
Structure title titleIdentification of ligands for E3 ligases using fragment-based methods
Keywords keywordssmall molecule complex crystal structure, TRAF4, E3 ligase, LIGASE; LIGASE
Experimental Method methodX-RAY DIFFRACTION

3. SAXS Parameters (CRYSOL theoretical calculation) 3. SAXS Parameters (CRYSOL)

Radius of gyration Rg (Guinier) rg_guinier27.24
Radius of gyration Rg (electron density) rg_electron26.29
Forward intensity I(0) i0104651000.00
Molecular weight molecular_weight54124.0 kDa
Excluded volume excluded_volume52619 ų
Envelope volume envelope_volume94793 ų
Hydration-shell volume shell_volume30261 ų
Envelope diameter envelope_diameter80.2
Shell Rg shell_rg33.31
Envelope Rg envelope_rg25.77
Shape Rg shape_rg26.25
Total Rg total_rg26.94
Total atoms total_atoms4129
Residues n_residues518
Spherical-harmonic order n_harmonics20
q range q_range— – 0.5000 −1
Data points n_points101
Shell type shell_typedirectional
Solvent electron density solvent_density0.3340 e/ų
Shell contrast contrast_shell0.0300 e/ų
CRYSOL version crysol_version4.1.3

4. P(r) Distance Distribution (GNOM inversion) 4. P(r) Analysis (GNOM)

Maximum dimension Dmax dmax81.7
Rg (real space) rg_real27.11
Rg uncertainty (real space) rg_real_error0.43
I(0) (real space) i0_real1.0470e+08
I(0) uncertainty (real space) i0_real_error1.5380e+06
Rg (reciprocal space) rg_reciprocal27.15
I(0) (reciprocal space) i0_reciprocal104700000.0000
Solution quality estimate total_estimate0.9172
Solution quality rating solution_quality EXCELLENT a EXCELLENT solution
P(r) peaks n_peaks1
Primary peak position r_peak_primary33.8
Skewness Skewness skewness0.117
Kurtosis Kurtosis kurtosis-0.687
Angular range angular_range— – 0.2900 −1
Current regularization parameter α current_alpha0.0000
Highest regularization parameter α highest_alpha10730000.0000
Real-space data points n_real_points59
GNOM version gnom_version4.1.3
Quality Criteria quality_criteria AN1: 0.000; Oscil: 0.981; Stabil: 1.000; Sysdev: 1.000; Positv: 1.000; Valcen: 1.000; Smooth: 0.975

5. Crystallography and Experiment 5. Crystallography & Experiment

6. Entities and Polymers Entities & Polymers (2)

8. Citations (1)

9. Files and Curves (10)