Biochemical and Biophysical Characterization of Carbonic Anhydrase VI from Human Milk and Saliva

dc.contributor.authorYrjänäinen Alma
dc.contributor.authorPatrikainen Maarit S.
dc.contributor.authorAzizi Latifeh
dc.contributor.authorTolvanen Martti E. E.
dc.contributor.authorLaitaoja Mikko
dc.contributor.authorJänis Janne
dc.contributor.authorHytönen Vesa P.
dc.contributor.authorNocentini Alessio
dc.contributor.authorSupuran Claudiu T.
dc.contributor.authorParkkila Seppo
dc.contributor.organizationfi=terveysteknologia|en=Health Technology|
dc.contributor.organization-code1.2.246.10.2458963.20.28696315432
dc.converis.publication-id176459552
dc.converis.urlhttps://research.utu.fi/converis/portal/Publication/176459552
dc.date.accessioned2022-10-27T12:11:18Z
dc.date.available2022-10-27T12:11:18Z
dc.description.abstract<p>Carbonic anhydrases (CA, EC 4.2.1.1) catalyze the hydration of carbon dioxide and take part in many essential physiological processes. In humans, 15 CAs are characterized, including the only secreted isoenzyme CA VI. CA VI has been linked to specific processes in the mouth, namely bitter taste perception, dental caries, and maintenance of enamel pellicle, and implicated in several immunity-related phenomena. However, little is known of the mechanisms of the above. In this study, we characterized human CA VI purified from saliva and milk with biophysical methods and measured their enzyme activities and acetazolamide inhibition. Size-exclusion chromatography showed peaks of salivary and milk CA VI corresponding to hexameric state or larger at pH 7.5. At pH 5.0 the hexamer peaks dominated. SDS- PAGE of milk CA VI protein treated with a bifunctional crosslinker further confirmed that a majority of CA VI is oligomers of similar sizes in solution. Mass spectrometry experiments confirmed that both of the two putative N-glycosylation sites, Asn67 and Asn256, are heterogeneously glycosylated. The attached glycans in milk CA VI were di- and triantennary complex-type glycans, carrying both a core fucose and 1 to 2 additional fucose units, whereas the glycans in salivary CA VI were smaller, seemingly degraded forms of core fucosylated complex- or hybrid-type glycans. Mass spectrometry also verified the predicted signal peptide cleavage site and the terminal residue, Gln 18, being in pyroglutamate form. Thorough characterization of CA VI paves way to better understanding of the biological function of the protein.</p>
dc.format.pagerange489
dc.format.pagerange503
dc.identifier.eissn1875-8355
dc.identifier.jour-issn1572-3887
dc.identifier.olddbid173774
dc.identifier.oldhandle10024/156868
dc.identifier.urihttps://www.utupub.fi/handle/11111/56948
dc.identifier.urlhttps://link.springer.com/article/10.1007/s10930-022-10070-9
dc.identifier.urnURN:NBN:fi-fe2022102462978
dc.language.isoen
dc.okm.affiliatedauthorTolvanen, Martti
dc.okm.discipline1182 Biochemistry, cell and molecular biologyen_GB
dc.okm.discipline3111 Biomedicineen_GB
dc.okm.discipline1182 Biokemia, solu- ja molekyylibiologiafi_FI
dc.okm.discipline3111 Biolääketieteetfi_FI
dc.okm.internationalcopublicationinternational co-publication
dc.okm.internationalityInternational publication
dc.okm.typeA1 ScientificArticle
dc.publisherSPRINGER
dc.publisher.countryUnited Statesen_GB
dc.publisher.countryYhdysvallat (USA)fi_FI
dc.publisher.country-codeUS
dc.relation.doi10.1007/s10930-022-10070-9
dc.relation.ispartofjournalProtein Journal
dc.relation.issue4-5
dc.relation.volume41
dc.source.identifierhttps://www.utupub.fi/handle/10024/156868
dc.titleBiochemical and Biophysical Characterization of Carbonic Anhydrase VI from Human Milk and Saliva
dc.year.issued2022

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