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The Application of Open Searching-based Approaches for the Identification of Acinetobacter baumannii O-linked Glycopeptides
Published on: November 2, 2021
A Second β-Hexosaminidase Encoded in the Streptococcus pneumoniae Genome Provides an Expanded Biochemical Ability to
Melissa Robb1, Craig S Robb1, Melanie A Higgins2
1From the Department of Biochemistry and Microbiology, University of Victoria, Victoria, British Columbia, Canada V8W 3P6 and.
Abstract:
An important facet of the interaction between the pathogen Streptococcus pneumoniae (pneumococcus) and its human host is the ability of this bacterium to process host glycans. To achieve cleavage of the glycosidic bonds in host glycans, S. pneumoniae deploys a wide array of glycoside hydrolases. Here, we identify and characterize a new family 20 glycoside hydrolase, GH20C, from S. pneumoniae. Recombinant GH20C possessed the ability to hydrolyze the β-linkages joining either N-acetylglucosamine or N-acetylgalactosamine to a wide variety of aglycon residues, thus revealing this enzyme to be a generalist N-acetylhexosaminidase in vitro. X-ray crystal structures were determined for GH20C in a ligand-free form, in complex with the N-acetylglucosamine and N-acetylgalactosamine products of catalysis and in complex with both gluco- and galacto-configured inhibitors O-(2-acetamido-2-deoxy-D-glucopyranosylidene)amino N-phenyl carbamate (PUGNAc), O-(2-acetamido-2-deoxy-D-galactopyranosylidene)amino N-phenyl carbamate (GalPUGNAc), N-acetyl-D-glucosamine-thiazoline (NGT), and N-acetyl-D-galactosamine-thiazoline (GalNGT) at resolutions from 1.84 to 2.7 Å. These structures showed N-acetylglucosamine and N-acetylgalactosamine to be recognized via identical sets of molecular interactions. Although the same sets of interaction were maintained with the gluco- and galacto-configured inhibitors, the inhibition constants suggested preferred recognition of the axial O4 when an aglycon moiety was present (Ki for PUGNAc > GalPUGNAc) but preferred recognition of an equatorial O4 when the aglycon was absent (Ki for GalNGT > NGT). Overall, this study reveals GH20C to be another tool that is unique in the arsenal of S. pneumoniae and that it may implement the effort of the bacterium to utilize and/or destroy the wide array of host glycans that it may encounter.
Insights
Streptococcus pneumoniae uses a novel enzyme, GH20C, to break down host sugars. Structural studies reveal how this generalist N-acetylhexosaminidase interacts with different sugar molecules, aiding bacterial survival.
Area of Science:
- Microbiology
- Structural Biology
- Biochemistry
Background:
- Streptococcus pneumoniae (pneumococcus) utilizes host glycans for survival.
- Glycoside hydrolases are essential for cleaving glycosidic bonds in host glycans.
Purpose of the Study:
- To identify and characterize a novel family 20 glycoside hydrolase, GH20C, from S. pneumoniae.
- To elucidate the substrate specificity and structural basis of GH20C activity.
Main Methods:
- Recombinant expression and biochemical characterization of GH20C.
- X-ray crystallography to determine structures of GH20C in various complexes.
- Enzyme inhibition assays to assess substrate preference.
Main Results:
- GH20C functions as a generalist N-acetylhexosaminidase, hydrolyzing β-linkages of N-acetylglucosamine and N-acetylgalactosamine.
- Crystal structures reveal identical molecular interactions for both N-acetylglucosamine and N-acetylgalactosamine binding.
- Inhibition studies indicate differential recognition of the O4 position based on the presence or absence of an aglycon moiety.
Conclusions:
- GH20C is a unique enzyme in S. pneumoniae's arsenal for glycan processing.
- This enzyme likely contributes to the bacterium's ability to utilize or degrade diverse host glycans.
- Understanding GH20C provides insights into host-pathogen interactions and potential therapeutic targets.
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