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Original Article

Voltage dependent calcium and potassium currents in Y-1 adrenocortical cells are unresponsive to ACTH

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Pages 245-275 | Published online: 07 Aug 2009

References

  • Schimmer B P. Cyclic nucleotides in hormonal regulation of adrenocortical function. Adv Cyclic Nucl Res 1980; 13: 181–214
  • Birmingham M K, Elliott F H, Valere P H.L. The need for the presence of calcium for the stimulation in vitro of rat adrenal glands by adrenocorticotropic hormone. Endocrinology 1953; 53: 687–690
  • Kowal J, Srinivasan S, Saito T. Calcium modulation of ACTH and cholera toxin stimulated adrenal steroid and cyclic-AMP biosynthesis. Endocr Res Comm 1974; 1: 305–319
  • Podesta E, Milani A, Steffen H, Neher R. Steroidogenic action of calcium ions in isolated adrenocortical cells. Biochem J 1980; 186: 331–397
  • Farese R V, Prudente W J. On the role of calcium in Adrenocorticotropin-induced changes in mitochondrial pregnenolone synthesis. Endocrinology 1978; 103: 1264–1271
  • Capponi A M, Rossier M F, Davies R, Vallotton M B. Calcium stimulates steroidogenesis in permeabilized bovine adrenal cortical cells. J Biol Chem 1988; 263: 16113–16117
  • Arthur J R, Mason J I, Boyd G S. The effect of calcium ions on the metabolism of exogenous cholesterol by rat adrenal mitochondria. FEBS Lett 1976; 66: 206–209
  • Farese R. Calcium as a mediator of Adrenocorticotrophic hormone action on adrenal protein synthesis. Science 1971; 173: 447–450
  • Yanagibashi K, Kamiya N, Lin G, Matsuba M. Studies on Adrenocorticotropin hormone receptor using isolated rat adrenocortical cells. Endocrinol Jpn 1978; 25: 545–551
  • Iida S, Widmaier E P, Hall P F. The phosphatidylinositide-Ca2+ hypothesis does not apply to the steroidogenic action of corticotropin. Biochem J 1986; 236: 53–59
  • Braley L M, Menachery A I, Brown E M, Williams G H. Comparative effect of angiotensin II, potassium, adrenocorticotropin, and cyclic adenosine 3′,5′-monophosphate on cytosolic calcium in rat adrenal cells. Endocrinology 1986; 119: 1010–1019
  • Lymangrover J R, Matthews E K, Saffran M. Membrane potential changes of mouse adrenal zona fasciculata cells in response to Adrenocorticotropin and adenosine 3′,5′-monophosphate. Endocrinology 1982; 110: 462–468
  • Matthews E K, Saffan M. Ionic dependence of adrenal steroidogenesis and ACTH-induced changes in the membrane potential of adrenocortical cells. J Physiol (London) 1973; 234: 43–64
  • Natke E, Jr., Kabela E. Electrical responses in cat adrenal cortex: possible relation to aldosterone secretion. Am J Physiol 1979; 237: E158–E162
  • Durroux T, Gallo-Payet N, Payet M D. Three components of the calcium current in cultured glomerulosa cells from rat adrenal gland. J Physiol (London) 1988; 404: 713–729
  • Matsunaga H, Yamashita N, Maruyama Y, Kojima I, Kurokawa K. Evidence for two distinct voltage-gated calcium channel currents in bovine adrenal glomerulosa cells. Biochem Biophys Res Commun 1987; 149: 1049–1054
  • Quinn S J, Brauneis U, Tillotson D L, Cornwall M C, Williams G H. Calcium channels and control of cytosolic calcium in rat and bovine zona glomerulosa cells. Amer J Physiol 1992; 262: C598–C606
  • Kenyon C J, Anyaorah L, Woodburn L, Connell JM C, Fraser R. Stimulation of cortisol production in isolated bovine zona fasciculata cells by phorbol ester: role of ion fluxes. J Endocrinol 1988; 117: 423–429
  • Yanagibashi K, Kawamura M, Hall P F. Voltage-dependent Ca2+ channels are involved in regulation of steroid synthesis by bovine but not rat fasciculata cells. Endocrinology 1990; 126: 311–348
  • Tabares L, Ureña J, López-Barneo J. Properties of calcium and potassium currents of clonal adrenocortical cells. J Gen Physiol 1989; 93: 495–510
  • Mlinar B, Biagi B, Enyeart J. Voltage-gated transient currents in bovine adrenal fasciculata cells. J Gen Physiol 1993; 102: 217–237
  • Hescheler J, Rosenthal W, Hinsch K, Wulfern M, Trautwein W, Schultz G. Angiotensin II induced stimulation of voltage-dependent Ca2+ currents in an adrenal cortical cell line. EMBO J 1988; 7: 619–624
  • Coyne M, Pinkney L. Adrenocorticotrtopin activates barium-conducting channels from bovine adrenocortical zona fasciculata cells in lipid bilayers. Endocrinology 1991; 129: 263–269
  • Durroux T, Gallo-Payet N, Payet M. Effects of adrenocorticotropin on action potential and calcium current in cultured rat and bovine glomerulosa cells. Endocrinology 1991; 129: 2139–2147
  • Barbara J-G, Takeda K. Voltage-dependent currents and modulation of calcium channel expression in zona fasciculata cells from rat adrenal gland. J Physiol (London) 1995; 488: 609–622
  • Mlinar B, Biagi B, Enheart J. A novel K+ current inhibited by adrenocorticotropic hormone and Angiotensin I. I. in adrenal cortical cells. J Biol Chem 1993; 268: 8640–8644
  • Brauneis U, Vassilev P, Quinn S, Williams G, Tillotson D. ANG II blocks potassium currents in zona glomerulosa cells from rat, bovine, and human adrenals. Amer J Physiol 1991; 260: E772–E779
  • Payet M, Benabderrazik M, Gallo-Payet N. Exitation-secretion coupling: ionic currents in glomerulosa cells: effects of Adrenocorticotropin and K+ channel blockers. Endocrinology 1987; 121: 875–882
  • Vassilev P, Kanazirska M, Quinn S, Tillotson D, Williams G. K+ channels in adrenal zona glomerulosa cells I. Characterization of distinct channel types. Am J Physiol 1992; 263((Endocrinol Metab 260))E752–759
  • Gallo-Payet N, Payet M. Excitation-secretion coupling: involvement of potassium channels in ACTH-stimulated rat adrenocortical cells. J Endocrinol 1989; 120: 409–421
  • Kowal J, Fiedler R. Adrenal cells in tissue culture: I. Assay of steroid products; steroidogenic responses to peptide hormones. Archiv Biochem Biophys 1968; 128: 406–421
  • Schimmer B P. The adrenocortical tumor cell line, Y1. Functionally Differentiated Cell Lines, G Sato. A.R. Liss, Inc., New York 1981; pp. 61–92
  • Widmaier E P, Osawa S, Hall P F. Phosphorylation of three proteins in the plasma membrane of Y-1 adrenal cells by a membrane-bound adenosine 3′,5′-monophosphate-dependent protein kinase. Endocrinology 1986; 118: 701–708
  • Kuo T H, Ou C T, Tchen T. The effect of calcium on the stimulation of corticosterone synthesis by dibutyryl-cAMP in cultures of ATCC cell line. Biochem Biophys Res Comm 1975; 65: 190–195
  • Hall P F, Osawa S, Thomasson C L. A role for calmodulin in the regulation of steroidogenesis. J Cell Biol 1981; 90: 402–407
  • Kawaoi A, Uchida T, Okano T, Matsumoto K, Shikata T. Morphology and function of Y-1 cells. Round-up phenomenon and steroidogenesis. Cell Struct Funct 1977; 2: 297–306
  • Kawaoi A, Uchida T, Okano T. Transmission and scanning electron microscopic observations of mouse adrenocortical adenoma cells (Y-1) in non-stimulated and stimulated states. Acta Pathol Jpn 1977; 27: 841–856
  • Papadopoulos V, Hall P F. Isolation and characterization of protein kinase C from Y-1 adrenal cell cytoskeleton. J Cell Biol 1989; 108: 553–567
  • Hammil O, Marty A, Neher E, Sakmann B, Sigworth F. Improved patch clamp techniques for high resolution current recording from cells and cell-free membrane patches. Pflugers Arch 1981; 389: 284–297
  • Fox A P, Nowycky M, Tsien R W. Kinetic and pharmacological properties distinguish three types of calcium currents in chick sensory neurones. J Physiol (London) 1987; 394: 149–172
  • Fedulova S, Kostyuk P, Veselovsky N. Two types of calcium channels in the somatic membrane of new-born rat dorsal root ganglion neurones. J Physiol (London) 1985; 431: 431–446
  • Tang C, Presser F, Morad M. Amiloride selectively blocks the low threshold (T) calcium channel. Science 1988; 240: 213–215
  • Wang G, Ming-Xing J, Coyne M D, Lemos J R. Comparison of effects of tetrandrine on ionic channels of isolated rat neurohypophysial terminals and Y1 mouse adrenocortical tumor cells. Acta Pharmacol Sinica 1993; 14: 101–106
  • Enyeart J, Mlinar B, Enyeart J. T-type Ca2+ channels are required for Adrenocorticotropin-stimulated cortisol production by bovine adrenal zona fasciculata cells. Molecular Endocrinology 1993; 7: 1031–1040
  • Carbone E, Swandulla D. Neuronal calcium channels: kinetics blockade and modulation. Prog Biophys Molec Biol 1989; 54: 31–58
  • Bean B P. Classes of calcium channels in vertebrate cells. Ann Rev Physiol 1989; 51: 367–84
  • Llinas R, Sugimori M, Lin J W, Cherksey B. Blocking and isolation of a calcium channel from neurons in mammals and cephalopods utilizing a toxin fraction (FTX) from funnel-web spider poison. Proc Natl Acad Sci U.S.A 1991; 86: 1689–1693
  • Mintz I, Adams M, Bean B. P-Type calcium channels in rat central and peripheral neurons. Neuron 1992; 9: 85–95
  • Cohen C, McCarthy R, Barrett P, Rasmussen H. Ca channels in adrenal giomerulosa cells: K+ and angiotensin II increase T-type Ca channel current. Proc Natl Acad Sci U.S.A 1988; 85: 2412–2416
  • McCarthy R, Isales C, Rasmussen H. T-type calcium channels in adrenal glomerulosa cells: GTP-dependent modulation by angiotensin II. Proc Natl Acad Sci U.S.A 1993; 90: 3260–3264
  • Payet M, Durroux T, Bilodeau L, Guillon G, Gallo-Payet N. Characterization of K+ and Ca2+ ionic currents in glomerulosa cells from human adrenal glands. Endocrinology 1994; 134: 2589–2598
  • Tabares L, Lopez-Barneo J. Calcium action potentials in cultured adrenocortical cells. Pflugers Arch 1986; 407: 163–165
  • Rossier M, Python C, Capponi A, Schlegel W, Kwan C, Vallotton M. Blocking T-type calcium channels with tetrandrine inhibits steroidogenesis in bovine adrenal glomerulosa cells. Endocrinology 1993; 132: 1035–1043
  • Hess P, Lansman J B, Tsien R W. Different modes of Ca channel gating behaviour favoured by dihydropyridine Ca agonists and antagonists. Nature 1984; 311: 538–544
  • Suzuki N, Yoshioka T. Differential blocking action of synthetic ω-conotoxin on components of Ca2+ channel current in clonal GH3 cell. Neurosci Letters 1987; 75: 235–239
  • Wang G, Lemos J. Effects of funnel web spider toxin on calcium currents in neurohypophysial terminals. Brain Res 1992; 663: 215–222
  • Snutch T, Reiner P. Ca2+ channels: diversity of form and function. Curr Opin Neurobiol 1992; 2: 247–253
  • Bilbaut A, Chorvatova A, Ojeda C, Rougier O. The transient outward current of isolated bovine adrenal zona fasciculata cells: comparison between standard and perforated patch recording methods. J Membr Biol 1996; 149: 233–247
  • Tabares L, Lopez-Barneo J, de Miguel C. Calcium- and voltage-activated potassium channels in adrenocortical cell membranes. Biochim Biophys Acta 1985; 814: 96–102
  • Rudy B. Diversity and ubiquity of K channels. Neuroscience 1988; 25: 729–749
  • Coyne M, Wang G, Lemos J. Calcium channels do not play a role in the steroid response to ACTH in Y-1 adrenocortical cells. Endocrine Res 1996; 22: 551–556

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