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A polysaccharide utilization locus from the gut bacterium Dysgonomonas mossii encodes functionally distinct carbohydrate esterases
- Source :
- The Journal of Biological Chemistry
- Publication Year :
- 2020
-
Abstract
- The gut microbiota plays a central role in human health by enzymatically degrading dietary fiber and concomitantly excreting short chain fatty acids that are associated with manifold health benefits. The polysaccharide xylan is abundant in dietary fiber but noncarbohydrate decorations hinder efficient cleavage by glycoside hydrolases (GHs) and need to be addressed by carbohydrate esterases (CEs). Enzymes from carbohydrate esterase families 1 and 6 (CE1 and 6) perform key roles in xylan degradation by removing feruloyl and acetate decorations, yet little is known about these enzyme families especially with regard to their diversity in activity. Bacteroidetes bacteria are dominant members of the microbiota and often encode their carbohydrate-active enzymes in multigene polysaccharide utilization loci (PULs). Here we present the characterization of three CEs found in a PUL encoded by the gut Bacteroidete Dysgonomonas mossii. We demonstrate that the CEs are functionally distinct, with one highly efficient CE6 acetyl esterase and two CE1 enzymes with feruloyl esterase activities. One multidomain CE1 enzyme contains two CE1 domains: an N-terminal domain feruloyl esterase, and a C-terminal domain with minimal activity on model substrates. We present the structure of the C-terminal CE1 domain with the carbohydrate-binding module that bridges the two CE1 domains, as well as a complex of the same protein fragment with methyl ferulate. The investment of D. mossii in producing multiple CEs suggests that improved accessibility of xylan for GHs and cleavage of covalent polysaccharide-polysaccharide and lignin-polysaccharide bonds are important enzyme activities in the gut environment.
- Subjects :
- 0301 basic medicine
Models, Molecular
acetyl xylan esterase
HSQC, heteronuclear single quantum coherence spectroscopy
MCA, methyl caffeate
DMSO, dimethyl sulfoxide
FAE, feruloyl esterase
Biochemistry
Esterase
SCFAs, short chain fatty acids
Substrate Specificity
PUL, polysaccharide utilization locus
Feruloyl esterase
enzyme kinetics
CBM, carbohydrate-binding module
MpCA, methyl p-coumarate
Glycoside hydrolase
multidomain enzymes
PDB, protein data bank
SDS-PAGE, sodium dodecyl sulfate–polyacrylamide gel electrophoresis
chemistry.chemical_classification
CAZyme, carbohydrate-active enzyme
4-MU-Ac, 4-methylumbelliferyl acetate
X1-6, xylose, xylobiose, xylotriose, xylotetraose, xylopentaose, and xylohexaose, respectively
CE, carbohydrate esterase
Chemistry
Esterases
LB, lysogeny broth
FA, ferulic acid
polysaccharide utilization locus
Editors' Pick
serine esterase
XylUL, xylan utilization locus
HPAEC-PAD, high-performance anion-exchange chromatography with pulsed amperometric detection
Enzyme structure
enzyme structure
GAX, glucuronoarabinoxylan
CE1, carbohydrate esterase family 1
DNSA, 3,5-dinitrosalicylic acid
Carbohydrate Metabolism
Carbohydrate-binding module
carbohydrate-active enzyme
Research Article
COSY, correlation spectroscopy
crystal structure
CAZy
carbohydrate-binding protein
pNP-Ac, p-nitrophenyl acetate
IPTG, isopropyl-β-d-1-thiogalactopyranoside
MSA, methyl sinapate
TetAcXyl, 1,2,3,4-tetra-O-acetyl-d-xylopyranose
03 medical and health sciences
Bacterial Proteins
Polysaccharides
GH, glycoside hydrolase
HMBC, heteronuclear multiple bond correlation
Humans
feruloyl esterase
UHPLC-HRMS, ultraperformance liquid chromatography–high-resolution mass spectrometry
Amino Acid Sequence
IMAC, immobilized metal ion affinity chromatography
NMR, nuclear magnetic resonance
Sus, starch utilization system
Molecular Biology
030102 biochemistry & molecular biology
CAZy, carbohydrate-active enzyme database
XO, xylooligosaccharide
Bacteroidetes
Cell Biology
CE6, carbohydrate esterase family 6
Xylan
Gastrointestinal Microbiome
030104 developmental biology
Enzyme
LC-MS/MS, liquid chromatography with tandem mass spectrometry
MFA, methyl ferulate
Sequence Alignment
Subjects
Details
- ISSN :
- 1083351X
- Volume :
- 296
- Database :
- OpenAIRE
- Journal :
- The Journal of biological chemistry
- Accession number :
- edsair.doi.dedup.....a3a3fbfcc8fbc2dabaf88a0a66cd4ea0