Loading
PDBj
MenuPDBj@FacebookPDBj@X(formerly Twitter)PDBj@BlueSkyPDBj@YouTubewwPDB FoundationwwPDBDonate
RCSB PDBPDBeBMRBAdv. SearchSearch help

7KV1

Surface glycan-binding protein A from Bacteroides uniformis

Summary for 7KV1
Entry DOI10.2210/pdb7kv1/pdb
DescriptorSusD family protein, COBALT HEXAMMINE(III), 1,2-ETHANEDIOL, ... (5 entities in total)
Functional Keywordssusd, tetratricopeptide repeat, cbm, sugar binding protein
Biological sourceBacteroides uniformis (strain ATCC 8492 / DSM 6597 / CIP 103695 / JCM 5828 / NCTC 13054 / VPI 0061)
Total number of polymer chains2
Total formula weight121787.97
Authors
Tamura, K.,Brumer, H.,Van Petegem, F. (deposition date: 2020-11-26, release date: 2021-02-17, Last modification date: 2024-03-06)
Primary citationTamura, K.,Dejean, G.,Van Petegem, F.,Brumer, H.
Distinct protein architectures mediate species-specific beta-glucan binding and metabolism in the human gut microbiota.
J.Biol.Chem., 296:100415-100415, 2021
Cited by
PubMed Abstract: Complex glycans that evade our digestive system are major nutrients that feed the human gut microbiota (HGM). The prevalence of Bacteroidetes in the HGM of populations worldwide is engendered by the evolution of polysaccharide utilization loci (PULs), which encode concerted protein systems to utilize the myriad complex glycans in our diets. Despite their crucial roles in glycan recognition and transport, cell-surface glycan-binding proteins (SGBPs) remained understudied cogs in the PUL machinery. Here, we report the structural and biochemical characterization of a suite of SGBP-A and SGBP-B structures from three syntenic β(1,3)-glucan utilization loci (1,3GULs) from Bacteroides thetaiotaomicron (Bt), Bacteroides uniformis (Bu), and B. fluxus (Bf), which have varying specificities for distinct β-glucans. Ligand complexes provide definitive insight into β(1,3)-glucan selectivity in the HGM, including structural features enabling dual β(1,3)-glucan/mixed-linkage β(1,3)/β(1,4)-glucan-binding capability in some orthologs. The tertiary structural conservation of SusD-like SGBPs-A is juxtaposed with the diverse architectures and binding modes of the SGBPs-B. Specifically, the structures of the trimodular BtSGBP-B and BuSGBP-B revealed a tandem repeat of carbohydrate-binding module-like domains connected by long linkers. In contrast, BfSGBP-B comprises a bimodular architecture with a distinct β-barrel domain at the C terminus that bears a shallow binding canyon. The molecular insights obtained here contribute to our fundamental understanding of HGM function, which in turn may inform tailored microbial intervention therapies.
PubMed: 33587952
DOI: 10.1016/j.jbc.2021.100415
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (1.86 Å)
Structure validation

231564

PDB entries from 2025-02-19

PDB statisticsPDBj update infoContact PDBjnumon