24
Views
21
CrossRef citations to date
0
Altmetric
Original Article

Alterations in retinal Na+, K+-ATPase in diabetes: streptozotocin-induced and Zucker diabetic fatty rats

, , &
Pages 1111-1121 | Received 24 Jul 1993, Accepted 21 Oct 1993, Published online: 02 Jul 2009

References

  • Davidson M. B. The continually changing natural history of diabetes mellitus. J. Chronic. Dis. 1981; 34: 5–10
  • Merimee T. J. Diabetic retinopathy. N. Engl. J.Med. 1990; 322: 978-–98
  • Adams A. J. Chromatic and luminosity processing in retinal disease. Am. J. Optom. Physiol. Opt. 1982; 59: 954–960
  • Eisner A. E., Burns S. A., Lobes L. A., Jr, Doft B. H. Cone photopigment bleaching abnormalities in diabetes. Invest. Ophthalmol. Vis. Sci. 1987; 28: 718–724
  • Aylward G. W. The scotopic threshold response in diabetic retinopathy. Eye 1989; 3: 626–637
  • Thomas S., Greenstein V., Blaustein H., Hood D., Carr R. Rod system sensitivity in diabetics. Investig. Ophthalmol. Vis. Sci. 1990; 30(Suppl.)423
  • Ghirlanda G., Di Leo M. A.S., Caputo S., Falsini B., Porciatti V., Marietti G., Greco A. V. Detection of inner retina dysfunction by steady-state focal electroretinogram pattern and flicker in early IDDM. Diabetes 1991; 40: 1122–1127
  • Holopigian A., Seiple W., Lorenzo M., Carr R. A comparison of photopic and scotopic electroretinographic changes in early diabetic retinopathy. Invest. Ophthalmol. Vis. Sci. 1992; 33: 2773–2780
  • Greenstein V., Shapiro A., Zaidi Q., Hood D. C. Psychophysical evidence for post-receptoral sensitivity loss in diabetics. Invest. Ophthalmol. Vis. Sci. 1992; 33: 2781–2790
  • Grimes P. A., Laties A. M. Early morphological alteration of the pigment epithelium in streptozotocin-induced diabetes: Increased surface area of the basal cell membrane. Exp. Eye Res. 1980; 30: 631–639
  • Kirber W. M., Nichols C. W., Grimes P. A., Winegrad A. I., Laties A. M. A permeability defect of the retinal pigment epithelium. Arch. Ophthalmol. 1980; 98: 725–728
  • MacGregor L. C., Matschinsky F. M. Treatment with aldose reductase inhibitor or with myoinositol arrests deterioration of the electroretinogram of diabetic rats. J. Clin. Invest. 1985; 76: 887–889
  • MacGregor L. C., Matschinsky F. M. Altered retinal metabolism in diabetes. II. Measurement of sodium-potassium ATPase and total sodium and potassium in individual retinal layers. J. Biol. Chem. 1986; 261: 4052–4058
  • MacGregor L. C., Rosecan L. R., Laties A. M., Matschinsky F. M. Altered retinal metabolism in diabetes. J. Biol. Chem. 1986; 261: 4046–4051
  • Specht S. C., Martin J., Gaud R. E., Hoyos J. D. Molecular isoforms of Na+/K+-ATPase in the nervous system and kidney of the spontaneously diabetic BB/Wor rat. Biochim. Biophys. Acta 1991; 1118: 77–82
  • Kowluru A., Kowluru R. A., Yamazaki A. Functional alterations of G-proteins in diabetic rat retina: A possible explanation for the early visual abnormalities in diabetes mellitus. Diabetologia 1992; 35: 624–631
  • Greene D. A., Lattimer S. A., Sima A. A.F. Sorbitol, myo-inositol and sodium-potassium ATPase in the pathogenesis of diabetic complications. N. Engl. J. Med. 1987; 316: 599–606
  • Greene D. A., Lattimer S. A. Protein kinase C agonists acutely normalize decreased ouabain-inhibitable respiration in diabetic rabbit nerve. Implications for (Na, K)-ATPass regulation and diabetic complications. Diabetes 1986; 35: 242–245
  • McGrail K. M., Sweadner K. J. Complex expression patterns for Na+,K+-ATPase isoforms in retina and optic nerve. Eur. J. Neurosci. 1989; 2: 170–176
  • Schneider B. G., Kraig E. Na+,K+-ATPase of the photoreceptor. selective expression of a3 and b2 isoforms. Exp. Eye Res. 1990; 51: 553–564
  • Peterson R. G., Shaw W. N., Neel M -A., Little L. A., Eichberg J. Zucker diabetic fatty rat as a model for non-insulin dependent diabetes mellitus. ILAR News 1990; 32: 16–19
  • Fox D. A., Rubinstein S. D., Hsu P. Developmental lead exposure inhibits adult rat retinal, but not kidney, Na+,K+-ATPase. Toxicol. Appl. Pharmacol. 1991; 109: 482–493
  • Winkler B. S., Riley M. V. Na+-K+ and HCO3 ATPase in retina: Dependence on calcium and sodium. Invest. Ophthalmol. Vis. Sci. 1977; 16: 1151–1154
  • Bradford M. M. A rapid and sensitive method for the quantitation of microgram quantities of protein. Anal. Biochem. 1976; 72: 248–254
  • Fox D. A., Rubinstein S. D., Hsu P. Lead exposure preferentially inhibits the a(+)-high affinity ouabain isozyme of rat retinal Na+,K+-ATPase. Invest. Ophthalmol. Vis. Sci. 1990; 31(Suppl.)298
  • Marks M. J., Seeds N. W. Development of ion metabolism in reaggregated brain cell cultures. J. Neurochem. 1982; 38: 101–111
  • Atterwill C. K., Reid J., Athayde C. M. Effect of thyroid status on the development of the different molecular forms of Na, K-ATPase in rat brain. Molec. Cell. Endocrinol. 1985; 40: 149–158
  • Lotfield R. B., Eigner E. A. Molecular order of participation of inhibitors (or activators) in biological systems. Science 1969; 164: 305–308
  • Cohen M. P., Klepser H., Shapiro E. Insulin stimulates renal glomerular sodium-potassium adenosine triphosphate activity. Biochim. Biophys. Acta 1986; 856: 182–184
  • Lytton J. Insulin affects the sodium affinity of the rat adipocyte Na+, K+-ATPase. J. Biol. Chem. 1985; 260: 10075–10080
  • Lattimer S. A., Sima A. A.F., Green D. A. In vitro correction of impaired Na+JK+-ATPase in diabetic nerve by protein kinase C agonists. Endocrinol. Metab. 1989; 19: E264–E269
  • Lee T. S., MacGregor L. C., Fluharty S. J., King G. L. Differential regulation of protein kinase C and (Na, K)-adenosine triphosphatase activities by elevated glucose levels in retinal capillary endothelial cells. J. Clin. Invest. 1989; 83: 90–94
  • Kowluru R., Bitensky M. W., Kowluru A., Dembo M., Keaton P. A., Buican T. Reversible sodium pump defect and swelling in the diabetic rat erythrocytes: Effects on filterability and implications for microangiopathy. Proc. Natl. Acad. Sci. U.S.A. 1989; 86: 3327–3331
  • Schrama L. H., Berti-Mattera L. N., Eichberg J. Altered protein phosphorylation in sciatic nerve from rats with streptozotocin-induced diabetes. Diabetes 1987; 36: 1254–1260
  • Hermenegildo C., Felipo V., Minana M. D., Grisolia S. Inhibition of protein kinase C restores Na+, K+-ATPase activity in sciatic nerve of diabetic mice. J. Neurochem. 1992; 58: 1246–1249
  • Tomlinson D. R., Ettlinger C. B., Lockett M. J. Modulation of the sodium/potassium pump of peripheral nerve -pharmacological manipulation of protein kinase C. Mol. Neuropharmacol. 1993, in press
  • Zhu X., Eichberg J. 1,2-Diacylglycerol content and its arachidonyl-containing molecular species are reduced in sciatic nerve from streptozotocin-induced diabetic rats. J. Neurochem. 1990; 55: 1087–1090
  • Zhu X., Eichberg J. Molecular species composition of glycerophospholipids in rat sciatic nerve and its alteration in streptozotocin-induced diabetes. Biochim. Biophys. Acta 1993, in press
  • Garner M. H., Spector A. A glucose-6-phosphate modification of bovine renal Na, K-ATPase: a model for changes occurring in the human renal medulla in diabetes. Biochem. Biophys. Res. Commun. 1985; 131: 206–211
  • Garner M. H., Spector A. ATP hydrolysis kinetics by Na, K,-ATPase in cataract. Exp. Eye Res. 1986; 42: 339–348
  • Garner M. H., Bahador A., Sachs G. Nonenzymatic glycation of Na, K-ATPase. J. Biol. Chem. 1990; 265: 15058–15-–66

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.