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Biochemical characterization of CA IX, one of the most active carbonic anhydrase isozymes
- Source :
- Hilvo, M, Baranauskiene, L, Salzano, A M, Scaloni, A, Matulis, D, Innocenti, A, Scozzafava, A, Monti, S M, Di Fiore, A, De Simone, G, Lindfors, M, Jänis, J, Valjakka, J, Pastoreková, S, Pastorek, J, Kulomaa, M S, Nordlund, H R, Supuran, C T & Parkkila, S 2008, ' Biochemical characterization of CA IX, one of the most active carbonic anhydrase isozymes ', Journal of Biological Chemistry, vol. 283, no. 41, pp. 27799-27809 . https://doi.org/10.1074/jbc.M800938200, The Journal of biological chemistry, 283 (2008): 27799–27809. doi:10.1074/jbc.M800938200, info:cnr-pdr/source/autori:Hilvo M; Baranauskiene L; Salzano AM; Scaloni A; Matulis D; Innocenti A;Scozzafava A; Monti SM; Di Fiore A; De Simone G; Lindfors M; Jänis J; Valjakka J; Pastoreková S; Pastorek J; Kulomaa MS; Nordlund HR; Supuran CT; Parkkila S./titolo:Biochemical characterization of CA IX, one of the most active Carbonic Anhydrase isozymes./doi:10.1074%2Fjbc.M800938200/rivista:The Journal of biological chemistry (Print)/anno:2008/pagina_da:27799/pagina_a:27809/intervallo_pagine:27799–27809/volume:283
- Publication Year :
- 2008
-
Abstract
- Carbonic anhydrase IX (CA IX) is an exceptional member of the CA protein family; in addition to its classical role in pH regulation, it has also been proposed to participate in cell proliferation, cell adhesion, and tumorigenic processes. To characterize the biochemical properties of this membrane protein, two soluble recombinant forms were produced using the baculovirus-insect cell expression system. The recombinant proteins consisted of either the CA IX catalytic domain only (CA form) or the extracellular domain, which included both the proteoglycan and catalytic domains (PG + CA form). The produced proteins lacked the small transmembrane and intracytoplasmic regions of CA IX. Stopped-flow spectrophotometry experiments on both proteins demonstrated that in the excess of certain metal ions the PG + CA form exhibited the highest catalytic activity ever measured for any CA isozyme. Investigations on the oligomerization and stability of the enzymes revealed that both recombinant proteins form dimers that are stabilized by intermolecular disulfide bond(s). Mass spectrometry experiments showed that CA IX contains an intramolecular disulfide bridge (Cys119-Cys299) and a unique N-linked glycosylation site (Asn309) that bears high mannose-type glycan structures. Parallel experiments on a recombinant protein obtained by a mammalian cell expression system demonstrated the occurrence of an additional O-linked glycosylation site (Thr78) and characterized the nature of the oligosaccharide structures. This study provides novel information on the biochemical properties of CA IX and may help characterize the various cellular and pathophysiological processes in which this unique enzyme is involved.
- Subjects :
- Glycosylation
Protein family
Spodoptera
Biochemistry
Catalysis
Cell Line
chemistry.chemical_compound
Protein structure
Antigens, Neoplasm
Polysaccharides
Carbonic anhydrase
Neoplasms
Extracellular
Cell Adhesion
Animals
Humans
Disulfides
Carbonic Anhydrase IX
Molecular Biology
Carbonic Anhydrases
Cell Proliferation
chemistry.chemical_classification
biology
Chemistry
hypoxia
biochemical characterization
CAIX
Cell Biology
Hydrogen-Ion Concentration
Transmembrane protein
Recombinant Proteins
Protein Structure, Tertiary
Isoenzymes
Enzyme
Membrane protein
biology.protein
Baculoviridae
Dimerization
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Hilvo, M, Baranauskiene, L, Salzano, A M, Scaloni, A, Matulis, D, Innocenti, A, Scozzafava, A, Monti, S M, Di Fiore, A, De Simone, G, Lindfors, M, Jänis, J, Valjakka, J, Pastoreková, S, Pastorek, J, Kulomaa, M S, Nordlund, H R, Supuran, C T & Parkkila, S 2008, ' Biochemical characterization of CA IX, one of the most active carbonic anhydrase isozymes ', Journal of Biological Chemistry, vol. 283, no. 41, pp. 27799-27809 . https://doi.org/10.1074/jbc.M800938200, The Journal of biological chemistry, 283 (2008): 27799–27809. doi:10.1074/jbc.M800938200, info:cnr-pdr/source/autori:Hilvo M; Baranauskiene L; Salzano AM; Scaloni A; Matulis D; Innocenti A;Scozzafava A; Monti SM; Di Fiore A; De Simone G; Lindfors M; Jänis J; Valjakka J; Pastoreková S; Pastorek J; Kulomaa MS; Nordlund HR; Supuran CT; Parkkila S./titolo:Biochemical characterization of CA IX, one of the most active Carbonic Anhydrase isozymes./doi:10.1074%2Fjbc.M800938200/rivista:The Journal of biological chemistry (Print)/anno:2008/pagina_da:27799/pagina_a:27809/intervallo_pagine:27799–27809/volume:283
- Accession number :
- edsair.doi.dedup.....caa6969d9840959149d20b7428b5dbf5