Structure of the engineered retro-aldolase RA95.5Structure of the engineered retro-aldolase RA95.5

Structural highlights

4a2s is a 1 chain structure with sequence from Saccharolobus solfataricus. Full crystallographic information is available from OCA. For a guided tour on the structure components use FirstGlance.
Method:X-ray diffraction, Resolution 1.4Å
Ligands:
Resources:FirstGlance, OCA, PDBe, RCSB, PDBsum, ProSAT

Function

TRPC_SACS2

Publication Abstract from PubMed

Evolutionary advances are often fueled by unanticipated innovation. Directed evolution of a computationally designed enzyme suggests that pronounced molecular changes can also drive the optimization of primitive protein active sites. The specific activity of an artificial retro-aldolase was boosted >4,400-fold by random mutagenesis and screening, affording catalytic efficiencies approaching those of natural enzymes. However, structural and mechanistic studies reveal that the engineered catalytic apparatus, consisting of a reactive lysine and an ordered water molecule, was unexpectedly abandoned in favor of a new lysine residue in a substrate-binding pocket created during the optimization process. Structures of the initial in silico design, a mechanistically promiscuous intermediate and one of the most evolved variants highlight the importance of loop mobility and supporting functional groups in the emergence of the new catalytic center. Such internal competition between alternative reactive sites may have characterized the early evolution of many natural enzymes.

Evolution of a designed retro-aldolase leads to complete active site remodeling.,Giger L, Caner S, Obexer R, Kast P, Baker D, Ban N, Hilvert D Nat Chem Biol. 2013 Jun 9. doi: 10.1038/nchembio.1276. PMID:23748672[1]

From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine.

See Also

References

  1. Giger L, Caner S, Obexer R, Kast P, Baker D, Ban N, Hilvert D. Evolution of a designed retro-aldolase leads to complete active site remodeling. Nat Chem Biol. 2013 Jun 9. doi: 10.1038/nchembio.1276. PMID:23748672 doi:10.1038/nchembio.1276

4a2s, resolution 1.40Å

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