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Evolution of oligomeric state through allosteric pathways that mimic ligand binding.
- Source :
-
Science (New York, N.Y.) [Science] 2014 Dec 19; Vol. 346 (6216), pp. 1254346. - Publication Year :
- 2014
-
Abstract
- Evolution and design of protein complexes are almost always viewed through the lens of amino acid mutations at protein interfaces. We showed previously that residues not involved in the physical interaction between proteins make important contributions to oligomerization by acting indirectly or allosterically. In this work, we sought to investigate the mechanism by which allosteric mutations act, using the example of the PyrR family of pyrimidine operon attenuators. In this family, a perfectly sequence-conserved helix that forms a tetrameric interface is exposed as solvent-accessible surface in dimeric orthologs. This means that mutations must be acting from a distance to destabilize the interface. We identified 11 key mutations controlling oligomeric state, all distant from the interfaces and outside ligand-binding pockets. Finally, we show that the key mutations introduce conformational changes equivalent to the conformational shift between the free versus nucleotide-bound conformations of the proteins.<br /> (Copyright © 2014, American Association for the Advancement of Science.)
- Subjects :
- Amino Acid Sequence
Bacillus subtilis metabolism
Bacterial Proteins genetics
Conserved Sequence
Ligands
Mutation
Pentosyltransferases genetics
Protein Binding genetics
Protein Conformation
Repressor Proteins genetics
Allosteric Regulation genetics
Bacterial Proteins chemistry
Evolution, Molecular
Pentosyltransferases chemistry
Protein Engineering
Protein Multimerization genetics
Repressor Proteins chemistry
Subjects
Details
- Language :
- English
- ISSN :
- 1095-9203
- Volume :
- 346
- Issue :
- 6216
- Database :
- MEDLINE
- Journal :
- Science (New York, N.Y.)
- Publication Type :
- Academic Journal
- Accession number :
- 25525255
- Full Text :
- https://doi.org/10.1126/science.1254346