593
Views
24
CrossRef citations to date
0
Altmetric
Short Communications

Carbonic anhydrase inhibitors: purification and inhibition studies of pigeon (Columba livia var. domestica) red blood cell carbonic anhydrase with sulfonamides

, &
Pages 749-753 | Received 02 Jan 2011, Accepted 03 Mar 2011, Published online: 11 Apr 2011

References

  • Pastorekova S, Parkkila S, Pastorek J, Supuran CT. Carbonic anhydrases: current state of the art, therapeutic applications and future prospects. J Enzyme Inhib Med Chem 2004;19:199–229.
  • Supuran CT, Scozzafava A, Casini A. Carbonic anhydrase inhibitors. Med Res Rev 2003;23:146–189.
  • Supuran CT. Carbonic anhydrases: novel therapeutic applications for inhibitors and activators. Nat Rev Drug Discov 2008;7:168–181.
  • Supuran CT. Carbonic anhydrase inhibition/activation: trip of a scientist around the world in the search of novel chemotypes and drug targets. Curr Pharm Des 2010;16:3233–3245.
  • Ferry JG. The gamma class of carbonic anhydrases. Biochim Biophys Acta 2010;1804:374–381.
  • Supuran CT. Carbonic anhydrase inhibitors. Bioorg Med Chem Lett 2010;20:3467–3474.
  • Hall RA, Mühlschlegel FA. Fungal and nematode carbonic anhydrases: their inhibition in drug design. In: Supuran CT, Winum JY, eds. Drug Design of Zinc-Enzyme Inhibitors: Functional, Structural, and Disease Applications. Hoboken: John Wiley & Sons 2009, 301–322.
  • Swietach P, Wigfield S, Cobden P, Supuran CT, Harris AL, Vaughan-Jones RD. Tumor-associated carbonic anhydrase 9 spatially coordinates intracellular pH in three-dimensional multicellular growths. J Biol Chem 2008;283:20473–20483.
  • Hilvo M, Tolvanen M, Clark A, Shen B, Shah GN, Waheed A et al. Characterization of CA XV, a new GPI-anchored form of carbonic anhydrase. Biochem J 2005;392:83–92.
  • Gilmour KM. Perspectives on carbonic anhydrase. Comp Biochem Physiol, Part a Mol Integr Physiol 2010;157:193–197.
  • Lin TY, Liao BK, Horng JL, Yan JJ, Hsiao CD, Hwang PP. Carbonic anhydrase 2-like a and 15a are involved in acid-base regulation and Na+ uptake in zebrafish H+-ATPase-rich cells. Am J Physiol, Cell Physiol 2008;294:C1250–C1260.
  • Hisar O, Beydemir S, Gülçin I, Küfrevioglu OI, Supuran CT. Effects of low molecular weight plasma inhibitors of rainbow trout (Oncorhynchus mykiss) on human erythrocyte carbonic anhydrase-II isozyme activity in vitro and rat erythrocytes in vivo. J Enzyme Inhib Med Chem 2005;20:35–39.
  • Ekinci D, Ceyhun SB, Sentürk M, Erdem D, Küfrevioglu OI, Supuran CT. Characterization and anions inhibition studies of an a-carbonic anhydrase from the teleost fish Dicentrarchus labrax. Bioorg Med Chem 2011;19:744–748.
  • Rizzello A, Ciardiello MA, Acierno R, Carratore V, Verri T, di Prisco G et al. Biochemical characterization of a S-glutathionylated carbonic anhydrase isolated from gills of the Antarctic icefish Chionodraco hamatus. Protein J 2007;26:335–348.
  • Ozensoy O, Isik S, Arslan O, Arslan M, Scozzafava A, Supuran CT. Carbonic anhydrase inhibitors. Inhibition of red blood cell ostrich (Struthio camelus) carbonic anhydrase with a series of aromatic and heterocyclic sulfonamides. J Enzyme Inhib Med Chem 2005;20:383–387.
  • Palatroni P, Gabrielli MG, Grappasonni I. Comparative study on carbonic anhydrase activity in the retina of different birds during development. Anat Anz 1987;163:5–18.
  • Thomas PC. Carbonic anhydrase activity of pigeon erythrocytes. Indian J Exp Biol 1970;8:338–339.
  • Quélo I, Machuca I, Jurdic P. Identification of a vitamin D response element in the proximal promoter of the chicken carbonic anhydrase II gene. J Biol Chem 1998;273:10638–10646.
  • Gabrielli MG. Carbonic anhydrases in chick extra-embryonic structures: a role for CA in bicarbonate reabsorption through the chorioallantoic membrane. J Enzyme Inhib Med Chem 2004;19:283–286.
  • Berg C, Blomqvist A, Holm L, Brandt I, Brunström B, Ridderstråle Y. Embryonic exposure to oestrogen causes eggshell thinning and altered shell gland carbonic anhydrase expression in the domestic hen. Reproduction 2004;128:455–461.
  • Vullo D, Franchi M, Gallori E, Antel J, Scozzafava A, Supuran CT. Carbonic anhydrase inhibitors. Inhibition of mitochondrial isozyme V with aromatic and heterocyclic sulfonamides. J Med Chem 2004;47:1272–1279.
  • Clare BW, Supuran CT. Carbonic anhydrase inhibitors. Part 61. Quantum chemical QSAR of a group of benzenedisulfonamides. Eur J Med Chem 1999;34:463–474.
  • Supuran CT, Scozzafava A, Jurca BC, Ilies MA. Carbonic anhydrase inhibitors. Part 49. Synthesis of substituted ureido- and thioureido derivatives of aromatic/heterocyclic sulfonamides with increased affinities for isozyme I. Eur J Med Chem 1998;33:83–93.
  • Casini A, Scozzafava A, Mincione F, Menabuoni L, Supuran CT. Carbonic anhydrase inhibitors: synthesis of water soluble sulfonamides incorporating a 4-sulfamoylphenylmethylthiourea scaffold. J Enz Inhib Med Chem 2002;17:333–343.
  • Supuran CT, Ilies MA, Scozzafava A. Carbonic anhydrase inhibitors. Part 29. Interaction of isozymes I, II and IV with benzolamide-like derivatives. Eur J Med Chem 1998;33:739–752.
  • Ilies M, Supuran CT, Scozzafava A, Casini A, Mincione F, Menabuoni L et al. Carbonic anhydrase inhibitors: sulfonamides incorporating furan-, thiophene- and pyrrole-carboxamido groups possess strong topical intraocular pressure lowering properties as aqueous suspensions. Bioorg Med Chem 2000;8:2145–2155.
  • Mincione F, Starnotti M, Menabuoni L, Scozzafava A, Casini A, Supuran CT. Carbonic anhydrase inhibitors: 4-sulfamoyl-benzenecarboxamides and 4-chloro-3-sulfamoyl-benzenecarboxamides with strong topical antiglaucoma properties. Bioorg Med Chem Lett 2001;11:1787–1791.
  • Cakir U, Ugras HI, Ozensoy O, Sinan S, Arslan O. In vitro inhibition effects of some new sulfonamide inhibitors on human carbonic anhydrase I and II. J Enzyme Inhib Med Chem 2004;19:257–261.
  • Khalifah RG. The carbon dioxide hydration activity of carbonic anhydrase. I. Stop-flow kinetic studies on the native human isoenzymes B and C. J Biol Chem 1971;246:2561–2573.
  • Nishimori I, Minakuchi T, Onishi S, Vullo D, Cecchi A, Scozzafava A et al. Carbonic anhydrase inhibitors: cloning, characterization, and inhibition studies of the cytosolic isozyme III with sulfonamides. Bioorg Med Chem 2007;15:7229–7236.
  • Menabuoni L, Scozzafava A, Mincione F, Briganti F, Mincione G, Supuran CT. Carbonic anhydrase inhibitors. Water-soluble, topically effective intraocular pressure lowering agents derived from isonicotinic acid and aromatic/heterocyclic sulfonamides: is the tail more important than the ring? J Enzyme Inhib 1999;14:457–474.
  • Scozzafava A, Menabuoni L, Mincione F, Briganti F, Mincione G, Supuran CT. Carbonic anhydrase inhibitors. Synthesis of water-soluble, topically effective, intraocular pressure-lowering aromatic/heterocyclic sulfonamides containing cationic or anionic moieties: is the tail more important than the ring? J Med Chem 1999;42:2641–2650.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.