Department of Biotechnology
inStem (Institute for Stem Cell Science and Regenerative Medicine)

Structural and functional characterization of CMP-N-acetylneuraminate synthetase from Vibrio cholerae.

Publication Type

Journal Article

Date of Publication

June 1, 2019

Journal

Acta crystallographica. Section D, Structural biology

Volume/Issue

75/Pt 6

ISSN

2059-7983

Several pathogenic bacteria utilize sialic acid, including host-derived N-acetylneuraminic acid (Neu5Ac), in at least two ways: they use it as a nutrient source and as a host-evasion strategy by coating themselves with Neu5Ac. Given the significant role of sialic acid in pathogenesis and host-gut colonization by various pathogenic bacteria, including Neisseria meningitidis, Haemophilus influenzae, Pasteurella multocida and Vibrio cholerae, several enzymes of the sialic acid catabolic, biosynthetic and incorporation pathways are considered to be potential drug targets. In this work, findings on the structural and functional characterization of CMP-N-acetylneuraminate synthetase (CMAS), a key enzyme in the incorporation pathway, from Vibrio cholerae are reported. CMAS catalyzes the synthesis of CMP-sialic acid by utilizing CTP and sialic acid. Crystal structures of the apo and the CDP-bound forms of the enzyme were determined, which allowed the identification of the metal cofactor Mg in the active site interacting with CDP and the invariant Asp215 residue. While open and closed structural forms of the enzyme from eukaryotic and other bacterial species have already been characterized, a partially closed structure of V. cholerae CMAS (VcCMAS) observed upon CDP binding, representing an intermediate state, is reported here. The kinetic data suggest that VcCMAS is capable of activating the two most common sialic acid derivatives, Neu5Ac and Neu5Gc. Amino-acid sequence and structural comparison of the active site of VcCMAS with those of eukaryotic and other bacterial counterparts reveal a diverse hydrophobic pocket that interacts with the C5 substituents of sialic acid. Analyses of the thermodynamic signatures obtained from the binding of the nucleotide (CTP) and the product (CMP-sialic acid) to VcCMAS provide fundamental information on the energetics of the binding process.

Alternate Journal

Acta Crystallogr D Struct Biol

PubMed ID

31205019

PubMed Central ID

PMC6580227

Authors

Sucharita Bose
Debayan Purkait
Deepthi Joseph
Vinod Nayak
Ramaswamy Subramanian

Keywords

Sialic Acids
Bacterial Proteins
Vibrio cholerae
Binding Sites
Catalytic Domain
Crystallization
Cytidine Diphosphate
Cytidine Monophosphate N-Acetylneuraminic Acid
Cytidine Triphosphate
N-Acylneuraminate Cytidylyltransferase
Protein Interaction Domains and Motifs
Crystallography, X-Ray
Protein Structure, Quaternary
Amino Acid Sequence