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(2001) Protein Sci 10: 2587-2599
Human acidic fibroblast growth factor (FGF-1) is a member of the beta-trefoil hyperfamily and exhibits a characteristic threefold symmetry of the tertiary structure. However, evidence of this symmetry is not readily apparent at the level of the primary sequence. This suggests that while selective pressures may exist to retain (or converge upon) a symmetric tertiary structure, other selective pressures have resulted in divergence of the primary sequence during evolution. Using intra-chain and homologue sequence comparisons for 19 members of this family of proteins, we have designed mutants of FGF-1 that constrain a subset of core-packing residues to threefold symmetry at the level of the primary sequence. The consequences of these mutations regarding structure and stability were evaluated using a combination of X-ray crystallography and differential scanning calorimetry. The mutational effects on structure and stability can be rationalized through the characterization of "microcavities" within the core detected using a 1.0A probe radius. The results show that the symmetric constraint within the primary sequence is compatible with a well-packed core and near wild-type stability. However, despite the general maintenance of overall thermal stability, a noticeable increase in non-two-state denaturation follows the increase in primary sequence symmetry. Therefore, properties of folding, rather than stability, may contribute to the selective pressure for asymmetric primary core sequences within symmetric protein architectures.
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Biological assembly 1 assigned by authors.
 Explore in 3D: Structure |Sequence Annotations |Electron Density |Validation Report |Ligand Interaction (SO4)
Biological assembly 2 assigned by authors.
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Biological assembly 3 generated by PISA,PQS (software)
 Explore in 3D: Structure |Sequence Annotations |Electron Density |Validation Report |Ligand Interaction (SO4)
Biological assembly 4 generated by PQS (software)
Macromolecule Content 
Entity ID: 1 | |||||
|---|---|---|---|---|---|
| Molecule | Chains | Sequence Length | Organism | Details | Image |
| acidic fibroblast growth factor | 146 | Homo sapiens | Mutation(s): 2  | ![]() | |
UniProt & NIH Common Fund Data Resources | |||||
Find proteins for P05230 (Homo sapiens) Explore P05230  Go to UniProtKB:  P05230 | |||||
PHAROS:  P05230 GTEx:  ENSG00000113578  | |||||
Entity Groups  | |||||
| Sequence Clusters | 30% Identity50% Identity70% Identity90% Identity95% Identity100% Identity | ||||
| UniProt Group | P05230 | ||||
Sequence AnnotationsExpand | |||||
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| Ligands 1 Unique | |||||
|---|---|---|---|---|---|
| ID | Chains | Name / Formula / InChI Key | 2D Diagram | 3D Interactions | |
| SO4 Query on SO4 Download Ideal Coordinates CCD File 
| C [auth A], D [auth A], E [auth B], F [auth B] | SULFATE ION O4 S QAOWNCQODCNURD-UHFFFAOYSA-L | |||
| Length ( Å ) | Angle ( ˚ ) |
|---|---|
| a = 74.163 | α = 90 |
| b = 97.923 | β = 90 |
| c = 108.749 | γ = 90 |
| Software Name | Purpose |
|---|---|
| MRCHK | model building |
| TNT | refinement |
| DENZO | data reduction |
| SCALEPACK | data scaling |
| MRCHK | phasing |
RCSB PDB Core Operations are funded by theU.S. National Science Foundation (DBI-2321666), theUS Department of Energy (DE-SC0019749), and theNational Cancer Institute,National Institute of Allergy and Infectious Diseases, andNational Institute of General Medical Sciences of theNational Institutes of Health under grant R01GM157729.