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Summary Expression Phenotypes Gene Literature (221) GO Terms (9) Nucleotides (126) Proteins (29) Interactants (873) Wiki
XB--1012407

Papers associated with rpe



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referenced by:


Xenopus Pax-6 and retinal development., Hirsch N, Harris WA., J Neurobiol. January 1, 1997; 32 (1): 45-61.            


Genesis of the frog retinal pigment epithelium., Beazley LD, Tennant M, Tomlin TL, Preuss JM, Coleman LA, Dunlop SA., Brain Res Dev Brain Res. October 23, 1996; 96 (1-2): 290-4.


Isolation of a cDNA encoding a taurine transporter in the human retinal pigment epithelium., Miyamoto Y, Liou GI, Sprinkle TJ., Curr Eye Res. March 1, 1996; 15 (3): 345-9.


Development of the interphotoreceptor matrix in Xenopus laevis., Lahiri D, Landers RA, Hollyfield JG., J Morphol. March 1, 1995; 223 (3): 325-39.


Membrane polarity of the Na(+)-K+ pump in primary cultures of Xenopus retinal pigment epithelium., Defoe DM, Ahmad A, Chen W, Hughes BA., Exp Eye Res. November 1, 1994; 59 (5): 587-96.


Reattachment of retinas to cultured pigment epithelial monolayers from Xenopus laevis., Defoe DM, Easterling KC., Invest Ophthalmol Vis Sci. April 1, 1994; 35 (5): 2466-76.


Identification and developmental expression of a novel low molecular weight neuronal intermediate filament protein expressed in Xenopus laevis., Charnas LR, Szaro BG, Gainer H., J Neurosci. August 1, 1992; 12 (8): 3010-24.                      


Effects of retinal detachment on rod disc membrane assembly in cultured frog retinas., Hale IL, Fisher SK, Matsumoto B., Invest Ophthalmol Vis Sci. October 1, 1991; 32 (11): 2873-81.


Immunolocalization of N-acetylgalactosaminylphosphotransferase in the adult retina and subretinal space., Sweatt AJ, Balsamo J, Lilien J., Exp Eye Res. October 1, 1991; 53 (4): 479-87.      


Membrane skeleton protein 4.1 in developing Xenopus: expression in postmitotic cells of the retina., Spencer M, Giebelhaus DH, Kelly GM, Bicknell J, Florio SK, Milam AH, Moon RT., Dev Biol. June 1, 1990; 139 (2): 279-91.          


Increased levels of leukotriene C4 in retinal pigment epithelium are correlated with early events in photoreceptor shedding in Xenopus laevis., Birkle DL, Rossowska M, Woodland J, Bazan NG., Curr Eye Res. June 1, 1989; 8 (6): 557-61.


Cytochalasin D inhibits L-glutamate-induced disc shedding without altering L-glutamate-induced increase in adhesiveness., Defoe DM, Matsumoto B, Besharse JC., Exp Eye Res. May 1, 1989; 48 (5): 641-52.


Cytoskeletons of retinal pigment epithelial cells: interspecies differences of expression patterns indicate independence of cell function from the specific complement of cytoskeletal proteins., Owaribe K, Kartenbeck J, Rungger-Brändle E, Franke WW., Cell Tissue Res. November 1, 1988; 254 (2): 301-15.


Membrane turnover in rod photoreceptors: ensheathment and phagocytosis of outer segment distal tips by pseudopodia of the retinal pigment epithelium., Matsumoto B, Defoe DM, Besharse JC., Proc R Soc Lond B Biol Sci. April 22, 1987; 230 (1260): 339-54.


Prevention of rod disk shedding by detachment from the retinal pigment epithelium., Williams DS, Fisher SK., Invest Ophthalmol Vis Sci. January 1, 1987; 28 (1): 184-7.


Immunocytochemical localization of two retinoid-binding proteins in vertebrate retina., Bunt-Milam AH, Saari JC., J Cell Biol. September 1, 1983; 97 (3): 703-12.


Rod photoreceptor disc shedding in eye cups: relationship to bicarbonate and amino acids., Besharse JC, Dunis DA., Exp Eye Res. April 1, 1983; 36 (4): 567-79.

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