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Identification and characterization of NanH2 and NanH3, enzymes responsible for sialidase activity in the vaginal bacterium Gardnerella vaginalis .
- Source :
-
The Journal of biological chemistry [J Biol Chem] 2019 Apr 05; Vol. 294 (14), pp. 5230-5245. Date of Electronic Publication: 2019 Feb 05. - Publication Year :
- 2019
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Abstract
- Gardnerella vaginalis is abundant in bacterial vaginosis (BV), a condition associated with adverse reproductive health. Sialidase activity is a diagnostic feature of BV and is produced by a subset of G. vaginalis strains. Although its genetic basis has not been formally identified, sialidase activity is presumed to derive from the sialidase A gene, named here nanH1 In this study, BLAST searches predicted two additional G. vaginalis sialidases, NanH2 and NanH3. When expressed in Escherichia coli , NanH2 and NanH3 both displayed broad abilities to cleave sialic acids from α2-3- and α2-6-linked N - and O -linked sialoglycans, including relevant mucosal substrates. In contrast, recombinant NanH1 had limited activity against synthetic and mucosal substrates under the conditions tested. Recombinant NanH2 was much more effective than NanH3 in cleaving sialic acids bearing a 9- O -acetyl ester. Similarly, G. vaginalis strains encoding NanH2 cleaved and foraged significantly more Neu5,9Ac <subscript>2</subscript> than strains encoding only NanH3. Among a collection of 34 G. vaginalis isolates, nanH2 , nanH3 , or both were present in all 15 sialidase-positive strains but absent from all 19 sialidase-negative isolates, including 16 strains that were nanH1 -positive. We conclude that NanH2 and NanH3 are the primary sources of sialidase activity in G. vaginalis and that these two enzymes can account for the previously described substrate breadth cleaved by sialidases in human vaginal specimens of women with BV. Finally, PCRs of nanH2 or nanH3 from human vaginal specimens had 81% sensitivity and 78% specificity in distinguishing between Lactobacillus dominance and BV, as determined by Nugent scoring.<br /> (© 2019 Robinson et al.)
- Subjects :
- Female
Humans
N-Acetylneuraminic Acid chemistry
N-Acetylneuraminic Acid metabolism
Substrate Specificity
Bacterial Proteins chemistry
Bacterial Proteins genetics
Bacterial Proteins metabolism
Gardnerella vaginalis enzymology
Gardnerella vaginalis genetics
Neuraminidase chemistry
Neuraminidase genetics
Neuraminidase metabolism
Vaginosis, Bacterial enzymology
Vaginosis, Bacterial genetics
Vaginosis, Bacterial microbiology
Subjects
Details
- Language :
- English
- ISSN :
- 1083-351X
- Volume :
- 294
- Issue :
- 14
- Database :
- MEDLINE
- Journal :
- The Journal of biological chemistry
- Publication Type :
- Academic Journal
- Accession number :
- 30723162
- Full Text :
- https://doi.org/10.1074/jbc.RA118.006221