1 How Dietary Deficiency Studies Have Illuminated the Many Roles …
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Noy N (2016) Vitamin A transport and cell signaling by the retinol-binding protein receptor STRA6.
Subcell Biochem 81:77–93
O’Byrne SM, Wongsiriroj N, Libien J, Vogel S, Goldberg IJ, Baehr W, Palczewski K, Blaner WS
(2005) Retinoid absorption and storage is impaired in mice lacking lecithin:retinol acyltransferase
(LRAT). J Biol Chem 280:35647–35657
Okayasu I, Hana K, Nemoto N, Yoshida T, Saegusa M, Yokota-Nakatsuma A, Song SY, Iwata
M (2016) Vitamin A inhibits development of dextran sulfate sodium-induced colitis and colon
cancer in a mouse model. Biomed Res Int 2016:4874809
Oliveira LM, Teixeira FME, Sato MN (2018) Impact of retinoic acid on immune cells and
inflammatory diseases. Mediat Inflamm 2018:3067126
Omori M, Chytil F (1982) Mechanism of vitamin A action. Gene expression in retinol-deficient
rats. J Biol Chem 257:14370–14374
Osborne TB, Mendel LB (1913) The relation of growth to the chemical constitutents of the diet. J
Biol Chem 15:311–326
Oztokatli H, Hornberg M, Berghard A, Bohm S (2012) Retinoic acid receptor and CNGA2 channel
signaling are part of a regulatory feedback loop controlling axonal convergence and survival of
olfactory sensory neurons. FASEB J 26:617–627
Palmer LS (1919) Growth and reproduction in fowls in the absence of carotinoids and the
physiological relation of yellow pigmentation to egg laying. Proc Natl Acad Sci USA 5:582–587
Parrish DB, Zimmerman RA, Sanford PE, Hung E (1963) Utilization of alfalfa carotene and vitamin
A by growing chicks. J Nutr 79:9–17
Paschaki M, Cammas L, Muta Y, Matsuoka Y, Mak SS, Rataj-Baniowska M, Fraulob V, Dolle
P, Ladher RK (2013) Retinoic acid regulates olfactory progenitor cell fate and differentiation.
Neural Dev 8:13
Penny HL, Prestwood TR, Bhattacharya N, Sun F, Kenkel JA, Davidson MG, Shen L, Zuniga LA,
Seeley ES, Pai R, Choi O, Tolentino L, Wang J, Napoli JL, Engleman EG (2016) Restoring
retinoic acid attenuates intestinal inflammation and tumorigenesis in APCMin/+ mice. Cancer
Immunol Res 4:917–926
Petkovich M, Brand NJ, Krust A, Chambon P (1987) A human retinoic acid receptor which belongs
to the family of nuclear receptors. Nature 330:444–450
Piskunov A, Al TZ, Rochette-Egly C (2014) Nuclear and extra-nuclear effects of retinoid acid
receptors: how they are interconnected. Subcell Biochem 70:103–127
Quadro L (2016) A gold standard to accurately assess vitamin a status: are we there yet? J Nutr
146:1929–1930
Reeves PG, Nielsen FH, Fahey GC Jr (1993) AIN-93 purified diets for laboratory rodents: final
report of the American Institute of Nutrition ad hoc writing committee on the reformulation of
the AIN-76A rodent diet. J Nutr 123:1939–1951
Reza Dorosty-Motlagh A, Mohammadzadeh HN, Sedighiyan M, Abdolahi M (2016) The molecular
mechanisms of vitamin A deficiency in multiple sclerosis. J Mol Neurosci 60:82–90
Rindi G, Ventura U, Ceriani T, Zelaschi F (1970) Action potential modifications in rat myocardial
cells during vitamin A deficiency. Q J Exp Physiol Cogn Med Sci 55:329–337
Rochette-Egly C (2015) Retinoic acid signaling and mouse embryonic stem cell differentiation:
Cross talk between genomic and non-genomic effects of RA. Biochim Biophys Acta 1851:66–75
Rochette-Egly C, Lutz Y, Saunders M, Scheuer I, Gaub MP, Chambon P (1991) Retinoic acid
receptor gamma: specific immunodetection and phosphorylation. J Cell Biol 115:535–545
Rosenfeld L (1997) Vitamine–vitamin. The early years of discovery. Clin Chem 43:680–685
Ross AC (2010) Diet in vitamin A research. Methods Mol Biol 652:295–313
Sauvant P, Feart C, Atgie C (2012) Vitamin A supply to mothers and children: challenges and
opportunities. Curr Opin Clin Nutr Metab Care 15:310–314
See AW, Kaiser ME, White JC, Clagett-Dame M (2008) A nutritional model of late embryonic
vitamin A deficiency produces defects in organogenesis at a high penetrance and reveals new
roles for the vitamin in skeletal development. Dev Biol 316:171–190
Semba RD (2012) On the “discovery” of vitamin A. Ann Nutr Metab 61:192–198
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