Carotenoid metabolism in mammals, including man: formation, occurrence, and function of apocarotenoids

被引:144
作者
Eroglu, Abdulkerim [1 ]
Harrison, Earl H. [1 ]
机构
[1] Ohio State Univ, Dept Human Nutr, Columbus, OH 43210 USA
基金
美国国家卫生研究院;
关键词
retinoids; vitamin A; beta-carotene; lycopene; RETINOIC ACID RECEPTOR; VITAMIN-A METABOLISM; CELL LINE HL-60; GROWTH IN-VITRO; BETA-CAROTENE; INTESTINAL-ABSORPTION; ALL-TRANS; X-RECEPTOR; APO-10'-LYCOPENOIC ACID; SUBSTRATE-SPECIFICITY;
D O I
10.1194/jlr.R039537
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Vitamin A was recognized as an essential nutrient 100 years ago. In the 1930s, it became clear that dietary beta-carotene was cleaved at its central double to yield vitamin A (retinal or beta-apo-15'-carotenal). Thus a great deal of research has focused on the central cleavage of provitamin A carotenoids to form vitamin A (retinoids). The mechanisms of formation and the physiological role(s) of noncentral (eccentric) cleavage of both provitamin A carotenoids and nonprovitamin A carotenoids has been less clear. It is becoming apparent that the apocarotenoids exert unique biological activities themselves. These compounds are found in the diet and thus may be absorbed in the intestine, or they may form from enzymatic or nonenzymatic cleavage of the parent carotenoids. The mechanism of action of apocarotenoids in mammals is not fully worked out. However, as detailed in this review, they have profound effects on gene expression and work, at least in part, through the modulation of ligand-activated nuclear receptors. Understanding the interactions of apocarotenoids with other lipid-binding proteins, chaperones, and metabolizing enzymes will undoubtedly increase our understanding of the biological roles of these carotenoid metabolites.
引用
收藏
页码:1719 / 1730
页数:12
相关论文
共 136 条
  • [1] Vitamin A and retinoid signaling: genomic and nongenomic effects
    Al Tanoury, Ziad
    Piskunov, Aleksandr
    Rochette-Egly, Cecile
    [J]. JOURNAL OF LIPID RESEARCH, 2013, 54 (07) : 1761 - 1775
  • [2] Alpha-Tocopherol Beta Carotene Cancer Prevention Study Group, 1994, N Engl J Med, V330, P1029, DOI 10.1056/NEJM199404143301501
  • [3] A mitochondrial enzyme degrades carotenoids and protects against oxidative stress
    Amengual, Jaume
    Lobo, Glenn P.
    Golczak, Marcin
    Li, Hua Nan M.
    Klimova, Tatyana
    Hoppel, Charles L.
    Wyss, Adrian
    Palczewski, Krzysztof
    von Lintig, Johannes
    [J]. FASEB JOURNAL, 2011, 25 (03) : 948 - 959
  • [4] β-Carotene is converted primarily to retinoids in rats in vivo
    Barua, AB
    Olson, JA
    [J]. JOURNAL OF NUTRITION, 2000, 130 (08) : 1996 - 2001
  • [5] CAROTENOID VITAMIN-A PRECURSORS AND ANALOGS IN FOODS AND FEEDS
    BAUERNFEIND, JC
    [J]. JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1972, 20 (03) : 456 - +
  • [6] Ben-Dor A, 2001, ARCH BIOCHEM BIOPHYS, V391, P295, DOI 10.1006/abbi.2001.2412
  • [7] CAROTENE EPOXIDES OF LYCOPERSICON-ESCULENTUM
    BENAZIZ, A
    BRITTON, G
    GOODWIN, TW
    [J]. PHYTOCHEMISTRY, 1973, 12 (11) : 2759 - 2764
  • [8] Retinoic acid receptors inhibit AP1 activation by regulating extracellular signal-regulated kinase and CBP recruitment to an AP1-responsive promoter
    Benkoussa, M
    Brand, C
    Delmotte, MH
    Formstecher, P
    Lefebvre, P
    [J]. MOLECULAR AND CELLULAR BIOLOGY, 2002, 22 (13) : 4522 - 4534
  • [9] BLOMHOFF R, 1994, NUTR REV, V52, P13
  • [10] VITAMIN-A METABOLISM - NEW PERSPECTIVES ON ABSORPTION, TRANSPORT, AND STORAGE
    BLOMHOFF, R
    GREEN, MH
    GREEN, JB
    BERG, T
    NORUM, KR
    [J]. PHYSIOLOGICAL REVIEWS, 1991, 71 (04) : 951 - 990