PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
1996 | 43 | 4 |

Tytuł artykułu

The ATP-regulated K channel in mitochondria: five years after its discovery

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Mitochondria contain a potassium specific channel (mitoKATP channel) sensitive to ATP and antidiabetic sulfonylureas. The mitochondrial Katp channel plays an important role in the mitochondrial volume control and in regulation of the components of protonmotive force. This minireview describes the properties and current hypotheses concerning the function of mitoKATP channel.

Wydawca

-

Rocznik

Tom

43

Numer

4

Opis fizyczny

p.713-719,fig.

Twórcy

autor
  • Nencki Institute of Experimental Biology, Pasteura 3, 02-093 Warsaw, Poland

Bibliografia

  • 1. Inoue,I.,Nagase,H.,Kishi,K. & Higuti,T.(1991) ATP-sensitive K+ channel in the mitochondrial inner membrane. Nature (London) 352, 244-247.
  • 2. Paucek, P., Mironova, G., Mahdi, F., Beavis, A.D., Woldegiorgis, G. & Garlid. K.D. (1992> Recoastitution and partial purification of the glibenclamide-sensitive, ATP-dependent K' channel from rat liver and beef heart mito­chondria. J. Biol. Chem. 267,26062-26069.
  • 3. Manon, S. & Gućrin, M. (1993) Evidence for three different electrophoretic pathways in yeast mitochondria: Ion specificity and inhibitor sensitivity. /. Bioenerg. Biomembr. 25,671-678.
  • 4. Lazdunski, M. (1994) ATP-sensitive potassium channels: An overview. J. Cardiovasc. Pharmacol. 24 (Suppl.4), S1-S5.
  • 5. Szewczyk, A. & Wojtczak, L. (1994) ATP- -regulated potassium channel; in Twelfth School on Biophysics of Membrane Transport — School Proceedings, pp. 121-142, Agricultural Univer­sity of Wrocław, Wrocław.
  • 6. Szewczyk, A., Czyż, A., Wójcik, G., Wojtczak, L. & Nałęcz, M J. (1996) ATP-regulated K* channel in mitochondria: Pharmacology and Function. J. Bioenerg. Biomembr. 28,145-150.
  • 7. Garlid, K.D. (1996) Cation transport in mito­chondria — the potassium cycle. Biochim. Biophys. Acta 1275,123-126.
  • 8. Diwan, J.J. (1987) Mitochondrial transport of IO and Mg . Biochim. Biophys. Acta 895,155-165.
  • 9. Brierley, G.P. & Jung, D.W. (1988) K'/H* anti- port in mitochondria. J. Bioenerg. Biomembr. 20, 193-209.
  • 10. Beavis, A.D., I .u, Y. & Garlid, K.D. (1993) On the regulation of K+ uniport in intact mitochondria by adenine nucleotides and nucleotide analog. /. Biol. Chem. 268,997-1004.
  • 11. Szewczyk, A., Pikuła, S., Wójcik, G. & Nałęcz, M.J. (1996) Glibenclamide inhibits mitochon­drial K* and Na+ uniports induced by magnesium depletion. Int. ]. Biochem. Cell Biol. 28,863-871.
  • 12. Szewczyk, A., Pikuła, S. & Nałęcz, M.J. (1996) Effects of inhibitors and activators of A'lP-regu- lated K+ channel on mitochondrial potassium uniport. Biochem. Molec. Biol. Int. 38,477^84.
  • 13. Aguilar-Bryan, I.., Nichols,C.G., Wechsler, S.W., Clement, J.P. IV, Boyd, A.E. Ill, González, G., Herrera-Sosa, H., Nguy, K., Bryan, J. & Nelson, D.A. (1995) Cloning of the ß cell high-affinity sulfonylurea receptor: A regulator of insulin secretion. Science 268, 423-426.
  • 14. Inagaki, N., Gonoi, T., Clement, J.P. IV, Namba, N., Inazawa, J., Gonzalez, G., Aguilar-Bryan, L., Seino, S. & Bryan, J. (1995) Reconstitution of /katp: An inward rectifier subunil plus the sulfonylurea receptor. Science 270,1166-1170.
  • 15. Szewczyk, A., Mikołajek, B., Pikuła, S. & Nałęcz, M.J. (1993) Potassium channel openers induce mitochondrial matrix volume changes via acti­vation of ATP-sensitive potassium channel. Pol. J. Pharmacol. 45, 437-443.
  • 16. Belyaeva, F..A., Szewczyk, A., Mikołajek, B., Nałęcz, M.J. & Wojtczak, L. (1993) Demons­tration of glibenclamide-sensitive K+ fluxes in rat liver mitochondria. Biochem. Molec. Biol. Int. 31, 493-500.
  • 17. Ashcroft, S.J.H. & Ashcroft, F.M. (1992) The sulfonylurea receptor. Biochim. Biophys. Acta 1175, 45-49.
  • 18. Findlay, I. (1992) Effects of pH upon the inhibition by sulphonylurea drugs of ATP- -sensitive K* channels in cardiac muscle. J. Pharmacol. Exp. Ther. 262,71-79.
  • 19. French, J.F., Ricra, L.C., Mullins, U.L. & Sar- miento, J.G. (1991) Modulation of [HJgli- benclamide binding to cardiac and insulinoma membranes. Eur. J. Pharmacol. 207,23-28.
  • 20. Szewczyk, A., De Weille, J.R. & Lazdunski, M. (1992) 8-Methoxypsoralen blocks ATP-sensitive potassium channels and stimulates insulin release. Eur. J. Pharmacol. 216,323-326.
  • 21. Szewczyk, A., De Weille, J.R. & Lazdunski, M. (1992) TMB-8 (8-(N.N-dimethylamino) octyl- -3,4,5-trimethoxybenzoate) inhibits the ATP- -sensitive K+ channel. Eur. J. Pharmacol. 226, 175-177.
  • 22. Guillemare, E., Honore, E., De Weille, J., Fosset, M., Lazdunski, M. & Meisheri, K. (1994) Functional receptors in Xenopus oocytes for U-37883A, a novel ATP-sensitive K+ channel blocker: Comparison with rat insulinoma cells. Mol. Pharmacol. 46, 139-145.
  • 23. Meisheri, K.D., Humphrey, S.J., Khan, S.A., Cipkus-Dubray, L.A., Smith, M.P. & Jones, A.W. (1993) 4-Morpholinecarboximidine-AM-ada- mantyl-N'-cyclohexylhydrochloride (U-378- 83A): Pharmacological characterization of a novel antagonist of vascular AlP-sensitive K+ channel openers. J. Pharmacol. Exp. Ther. 266, 655-665.
  • 24. Szewczyk, A., Wójcik, G., Jabłonowska, A. & Nałęcz, M.J. (1995) A guanidine derivative, U-37883A, inhibits mitochondrial Kr uniport. Pol. /. Pharmacol. 47, 339-344.
  • 25. Ohrnberger, C.E., Khan, S.A. & Meisheri, K.D. (1993) Synergistic effects of glyburide and U-37883A, two structurally different vascular ATP-sensitive potassium channel antagonists. /. Pharmacol. Exp. Ther. 267,25-30.
  • 26. Edwards, G. & Weston, A.H. (1990) Structure- -activity relationships of K* channel openers. Trends Pharmacol. Sci. 11,417-422.
  • 27. Szewczyk, A., Wójcik, G. & Nałęcz, M.J. (1995) Potassium channel opener, RP66471, induces membrane depolarization of rat liver mito­chondria. Biochem. Biophys. Res. Commun. 207, 126-132.
  • 28. Garlid, K.D., Paucek, P., Yarov-Yarovoy, V., Sun, X. & Schindler, P.A. (1996) The mitochondrial Ka1T channel as a receptor for potassium channel openers. /. Biol. Chem. 271,8796-8799.
  • 29. Wojtczak, L., Nikitina, H.R., Czyż, A. & Skulskii, I. A. (1996) Cuprous ions activate glibencla- mide-sensitive potassium channel in liver mitochondria. Biochem. Biophys. Res. Commun. 223,468-473.
  • 30. Garlid, K.D. (1994) Mitochondrial cation tran­sport: A progress report. J. Bioenerg. Biomembr. 26, 537-542.
  • 31. Hales trap, A.P. (1989) The regulation of the matrix volume of mammalian mitochondria in vivo and in vitro and its role in the control of mitochondrial metabolism. Biochim. Biophys. Acta 973,355-382.
  • 32. Halestrap, A.P. (1994) Regulation of mito­chondrial metabolism through changes in matrix volume. Biochem. Soc. Trans. 22, 522-529.
  • 33. Szewczyk, A., Mikołajek, B., Pikuła, S. & Nałęcz, M.J. (1993) Potassium channel openers induce mitochondrial matrix volume changes via activation of ATP-sensitive potassium channel. Pol. J. Pharmacol. 45,437-443.
  • 34. Szewczyk, A., Mikołajek, B., Pikuła, S. & Nałęcz, M.J. (1993) ATP-sensitive K* channel in mito­chondria. Acta Biochim. Polon. 40,329-336.
  • 35. Szewczyk, A., Pikuła, S., Wojtczak, L. & Nałęcz, M.J. (1994) ATP-sensitive K+ channel in rat liver mitochondria: Functional characteristics; in Molecular Biology of Mitochondrial Transport Systems (Forte, M. & Colombini, M., eds.) pp. 221-228, Springer-Verlag, Berlin.
  • 36. Belyaeva, E.A. & Wojtczak, L. (1994) An attempt to quantify K* fluxes in rat liver mitochondria. Biochem. Molec. Biol. Int. 33,165-175.
  • 37. Czyż, A., Szewczyk, A., Nałęcz, M.J. & Wojtczak, L. (1995) The role of mitochondrial potassium fluxes in controlling the protonmotive force in energized mitochondria. Biochem. Biophys. Res. Commun. 210,98-104.
  • 38. Mulder, H., Schopman, Sr., W. & van der I«ely, A.J. (1981) Extrapancreatic insulin effect of glibenclamide. Eur. J. Clin. Pharmacol. 40, 379-381.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-9dffe901-928c-4eaa-9027-f59afe29516f
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.