1unt Summary

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STRUCTURE BASED ENGINEERING OF INTERNAL MOLECULAR SURFACES OF FOUR HELIX BUNDLES

The structure was published by Yadav, M.K., Redman, J.E., Leman, L.J., et al., Zhang, Y., Stout, C.D., and Ghadiri, M.R., in 2005 in a paper entitled "Structure-Based Engineering of Internal Cavities in Coiled-Coil Peptides" (abstract).

This crystal structure was determined using X-ray diffraction at a resolution of 2.07 Å and deposited in 2003.

The experimental data on which the structure is based was also deposited.

This PDB entry contains multiple copies of the structure of GENERAL CONTROL PROTEIN GCN4.

The molecule most likely forms homotetramers.

The following tables show cross-reference information to other databases (to obtain a list of all PDB entries sharing the same property or classification, click on the magnifying glass icon):


Chain Name UniProt Name of source organism % of UniProt sequence present in the sample Residues in the sample molecules % of residues observed
A GENERAL CONTROL PROTEIN GCN4 P03069 (249-281) (GCN4_YEAST)search Saccharomyces cerevisiae S288csearch < 90% 34 97%
B GENERAL CONTROL PROTEIN GCN4 P03069 (249-281) (GCN4_YEAST)search Saccharomyces cerevisiae S288csearch < 90% 34 97%


This entry contains 1 unique UniProt protein:

UniProt accession Name Organism PDB
P03069 (249 - 281) GENERAL CONTROL PROTEIN GCN4 SACCHAROMYCES CEREVISIAE

Chain Structural classification (SCOP) Sequence family (Pfam)
A, B Leucine zipper domainsearch bZIP transcription factorsearch