5AFD image
Deposition Date 2015-01-21
Release Date 2016-03-02
Last Version Date 2024-11-06
Entry Detail
PDB ID:
5AFD
Keywords:
Title:
Native structure of N-acetylneuramininate lyase (sialic acid aldolase) from Aliivibrio salmonicida
Biological Source:
Source Organism:
Host Organism:
Method Details:
Experimental Method:
Resolution:
1.65 Å
R-Value Free:
0.20
R-Value Work:
0.16
R-Value Observed:
0.16
Space Group:
I 2 2 2
Macromolecular Entities
Polymer Type:polypeptide(L)
Molecule:N-ACETYLNEURAMINATE LYASE
Gene (Uniprot):VSAL_I0899
Chain IDs:A
Chain Length:300
Number of Molecules:1
Biological Source:ALIIVIBRIO SALMONICIDA
Primary Citation
Features and structure of a cold active N-acetylneuraminate lyase.
Plos One 14 e0217713 e0217713 (2019)
PMID: 31185017 DOI: 10.1371/journal.pone.0217713

Abstact

N-acetylneuraminate lyases (NALs) are enzymes that catalyze the reversible cleavage and synthesis of sialic acids. They are therefore commonly used for the production of these high-value sugars. This study presents the recombinant production, together with biochemical and structural data, of the NAL from the psychrophilic bacterium Aliivibrio salmonicida LFI1238 (AsNAL). Our characterization shows that AsNAL possesses high activity and stability at alkaline pH. We confirm that these properties allow for the use in a one-pot reaction at alkaline pH for the synthesis of N-acetylneuraminic acid (Neu5Ac, the most common sialic acid) from the inexpensive precursor N-acetylglucosamine. We also show that the enzyme has a cold active nature with an optimum temperature for Neu5Ac synthesis at 20°C. The equilibrium constant for the reaction was calculated at different temperatures, and the formation of Neu5Ac acid is favored at low temperatures, making the cold active enzyme a well-suited candidate for use in such exothermic reactions. The specific activity is high compared to the homologue from Escherichia coli at three tested temperatures, and the enzyme shows a higher catalytic efficiency and turnover number for cleavage at 37°C. Mutational studies reveal that amino acid residue Asn 168 is important for the high kcat. The crystal structure of AsNAL was solved to 1.65 Å resolution and reveals a compact, tetrameric protein similar to other NAL structures. The data presented provides a framework to guide further optimization of its application in sialic acid production and opens the possibility for further design of the enzyme.

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