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Computational design of mixed chirality peptide macrocycles with internal symmetry
- Source :
- Protein Science : A Publication of the Protein Society
- Publication Year :
- 2020
- Publisher :
- John Wiley & Sons, Inc., 2020.
-
Abstract
- Cyclic symmetry is frequent in protein and peptide homo‐oligomers, but extremely rare within a single chain, as it is not compatible with free N‐ and C‐termini. Here we describe the computational design of mixed‐chirality peptide macrocycles with rigid structures that feature internal cyclic symmetries or improper rotational symmetries inaccessible to natural proteins. Crystal structures of three C2‐ and C3‐symmetric macrocycles, and of six diverse S2‐symmetric macrocycles, match the computationally‐designed models with backbone heavy‐atom RMSD values of 1 Å or better. Crystal structures of an S4‐symmetric macrocycle (consisting of a sequence and structure segment mirrored at each of three successive repeats) designed to bind zinc reveal a large‐scale zinc‐driven conformational change from an S4‐symmetric apo‐state to a nearly inverted S4‐symmetric holo‐state almost identical to the design model. These symmetric structures provide promising starting points for applications ranging from design of cyclic peptide based metal organic frameworks to creation of high affinity binders of symmetric protein homo‐oligomers. More generally, this work demonstrates the power of computational design for exploring symmetries and structures not found in nature, and for creating synthetic switchable systems.<br />PDB Code(s): 6UFU, 6UG2, 6UG3, 6UG6, 6UGB, 6UGC, 6UCX, 6UD9, 6UDR, 6UDW, 6UDZ, 6UF4, 6UF7, 6UF8, 6UFA and 6UF9
- Subjects :
- Cyclic symmetry in three dimensions
Models, Molecular
Materials science
Racemic crystallography
Full‐Length Papers
computational design
Sequence (biology)
Crystal structure
Protein Engineering
Biochemistry
Peptides, Cyclic
03 medical and health sciences
chelation
protein folding
de novo design
non‐canonical amino acids
Molecular Biology
racemic crystallography
030304 developmental biology
symmetry
chemistry.chemical_classification
0303 health sciences
030302 biochemistry & molecular biology
Cyclic peptide
Symmetry (physics)
Crystallography
chemistry
peptides
Protein folding
Chirality (chemistry)
Subjects
Details
- Language :
- English
- ISSN :
- 1469896X and 09618368
- Volume :
- 29
- Issue :
- 12
- Database :
- OpenAIRE
- Journal :
- Protein Science : A Publication of the Protein Society
- Accession number :
- edsair.doi.dedup.....1bc215ee0562c3630fb1b9516e8c1ecf