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1. (Article ID: 468)
Schäffer C, Messner P
Surface-layer glycoproteins: an example for the diversity of bacterial glycosylation with promising impacts on nanobiotechnology
Glycobiology 14(8) (2004)
31R-42R
Bacterial cell surface layers, referred to simply as S-layers, have been described for all major phylogenetic groups of bacteria, which may indicate their pivotal role for a bacterium in its natural habitat. They have the unique ability to assemble into two-dimensional crystalline arrays that completely cover the bacterial cells. Glycosylation represents the most frequent modification of S-layer proteins. S-layer glycoproteins constitute a class of glycoconjugates first isolated in the mid-1970s, but S-layer glycoprotein research is still being regarded as an 'exotic field of glycobiology,' possibly because of its 'noneukaryotic' character. Extensive work over the past 30 years provided evidence of an enormous diversity of S-layer glycoproteins that have been created in nature over 3 billion years of prokaryotic evolution. These glycoconjugates are substantially different from eukaryotic glycoproteins, with regard to both composition and structure; nevertheless, some general structural concepts may be deduced. The awareness of the high application potential of S-layer glycoproteins, especially in combination with their intrinsic cell surface display feature, in the field of modern nanobiotechnology as a base for glycoengineering has recently led to the investigation of the S-layer protein glycosylation process at the molecular level, which has lagged behind the structural studies due to the lack of suitable molecular tools. From that work an even more interesting picture of this class of glycoconjugates is emerging. The availability of purified enzymes from S-layer glycan biosynthesis pathways exhibiting increased stabilities and/or rare sugar specificities in conjunction with preliminary genomic data on S-layer glycan biosynthesis clusters will pave the way for the rational design of S-layer neoglycoproteins.
LPS, bacterial glycosylation, genomic glycosylation loci, glycan diversity, glycoengineering, S-layer nanoglycobiology
NCBI PubMed ID: 15044388Publication DOI: 10.1093/glycob/cwh064Journal NLM ID: 9104124Publisher: IRL Press at Oxford University Press
Correspondence: paul.messner

boka.ac.at
Institutions: Center for NanoBiotechnology, University of Applied Life Sciences and Natural Resources, Gregor-Mendel-Strasse 33, A-1180 Wien, Austria
The publication contains the following compound(s):
- Compound ID: 1467
|
Me-2)-{{{-a-L-Rhap-(1-3)-b-L-Rhap-(1-2)-a-L-Rhap-(1-2)-}}}/n=16/-a-L-Rhap-(1-3)-a-L-Rhap-(1-3)-b-D-Galp-(1--/Thr620/Ser794 of S-layer protein/ |
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Structure type: oligomer
Aglycon: Thr620/Ser794 of S-layer protein
Compound class: S-layer glycoprotein
- Compound ID: 1468
|
a-D-Fucp3NAc-(1-2)-+
|
a-D-Fucp3NAc-(1-2)-+ |
| |
Me-3)-{{{-a-D-Rhap-(1-3)-a-D-Rhap-(1-2)-a-D-Rhap-(1-2)-a-D-Rhap-(1-3)-}}}/n=16/-{{{-a-D-Rhap-(1-3)-}}}/n=1-3/-b-D-GalpNAc-(1--/Thr67 of S-layer protein/ |
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Structure type: oligomer
Aglycon: Thr67 of S-layer protein
Compound class: S-layer glycoprotein
- Compound ID: 1469
|
{{{-a-L-Rhap-(1-3)-D-gro-b-D-manHepp-(1-4)-}}}/n=18/-{{{-a-D-Rhap-(1-3)-}}}/n=0-2/-b-D-GalpNAc-(1--/Ser69 or Thr471 of S-layer protein/ |
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Structure type: oligomer
Aglycon: Ser69 or Thr471 of S-layer protein
Compound class: S-layer glycoprotein
- Compound ID: 1470
|
GroA-(2--P--4)--b-D-ManpNAc-(1-4)-+
|
a-D-Glcp-(1-6)-+ |
| |
{{{-b-D-Galp-(1-4)-b-D-ManpNAc-(1-3)-}}}/n=21/-a-L-Rhap-(1-3)-a-L-Rhap-(1-3)-a-L-Rhap-(1-3)-b-D-Galp-(1-7)-Tyr |
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Structure type: oligomer
Compound class: S-layer glycoprotein
- Compound ID: 1471
|
Me-3)-{{{-a-L-Rhap-(1-4)-a-D-Manp-(1-3)-}}}/n=28/-a-L-Rhap-(1-3)-a-L-Rhap-(1-3)-a-L-Rhap-(1-3)-b-D-Galp-(1-7)-Tyr |
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Structure type: oligomer
Compound class: S-layer glycoprotein
- Compound ID: 1472
|
b-D-Galf-(1-3)-a-D-Galp-(1-2)-a-L-Rhap-(1-3)-a-D-Manp-(1-3)-a-L-Rhap-(1-3)-b-D-Glcp-(1-?)-Tyr |
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Structure type: oligomer
Compound class: S-layer glycoprotein
- Compound ID: 1473
|
a-D-Glcp2Ac-(1-2)-b-D-Manp-(1-4)-+
|
-3)-a-D-GalpNAc-(1-3)-a-D-GalpNAc-(1- |
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Structure type: polymer chemical repeating unit
; n = 25
Compound class: S-layer glycoprotein
Reference(s) to other database(s): GTC:G34610VC
- Compound ID: 1474
|
b-D-Glcp-(1-6)-+
|
b-D-Glcp-(1-6)-+ |
| |
a-D-Galp-(1-2)-+ | a-D-Galp-(1-2)-+ |
| | | |
{{{-a-L-Rhap-(1-3)-a-D-Manp-(1-4)-b-L-Rhap-(1-3)-a-D-Glcp-(1-4)-}}}/n=4-11/-a-L-Rhap-(1-3)-a-D-Manp-(1-4)-b-L-Rhap-(1-3)-b-D-Glcp-(1-7)-Tyr |
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Structure type: oligomer
Compound class: S-layer glycoprotein
- Compound ID: 1475
|
b-D-Quip3NAc-(1-6)-b-D-Galf-(1-4)-a-L-Rhap-(1-3)-+
|
-4)-a-D-Manp-(1-4)-b-D-Galp-(1-4)-b-D-Glcp-(1- |
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Structure type: polymer chemical repeating unit
; n = 17
Compound class: S-layer glycoprotein
Reference(s) to other database(s): GTC:G00782OI
- Compound ID: 1287
Structure type: polymer chemical repeating unit
Trivial name: b-specific polysaccharide antigen
Compound class: O-polysaccharide, O-antigen, S-layer glycoprotein
Reference(s) to other database(s): GTC:G48878CJ, GlycomeDB:
3444
- Compound ID: 1476
Structure type: oligomer
Aglycon: protein
Compound class: S-layer glycoprotein
- Compound ID: 1477
|
GalpA3Me-(1-6)-+ Galf-(1-3)-+
| |
-4)-GlcpNAc-(1-4)-GalpA-(1-3)-GalpNAc-(1- |
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Structure type: polymer chemical repeating unit
; n=10-15
Aglycon: Asn of a protein end: AlaNH2-Asn-Ala-Ser-...
Compound class: N-glycan
Reference(s) to other database(s): GTC:G68242WI
- Compound ID: 1478
|
S-3)-+ S-3)-+
| |
S-3)-GlcpA-(1-4)-GlcpA-(1-4)-GlcpA-(1-4)-b-D-GlcpNAc1N-(1-4)-Asn-(?--/-Asn-X-Thr/Ser- protein fragment/ |
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Structure type: oligomer
Aglycon: -Asn-X-Thr/Ser- protein fragment
Compound class: N-glycan
- Compound ID: 1479
Structure type: oligomer
Compound class: O-glycoprotein
- Compound ID: 1480
Structure type: oligomer
Compound class: N-glycan
- Compound ID: 1481
|
a-D-Manp3Me-(1-6)-a-D-Manp3Me-(1-2)-a-D-Manp-(1-2)-a-D-Manp-(1-2)-a-D-Manp-(1-4)-D-GalpNAc1N-(1-4)-Asn |
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Structure type: oligomer
Compound class: N-glycan
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