Metabolic differentiation in the embryonic retina

被引:137
作者
Agathocleous, Michalis [1 ,2 ]
Love, Nicola K. [1 ]
Randlett, Owen [1 ]
Harris, Julia J. [3 ]
Liu, Jinyue [1 ]
Murray, Andrew J. [1 ]
Harris, William A. [1 ]
机构
[1] Univ Cambridge, Dept Physiol Dev & Neurosci, Cambridge CB2 3DY, England
[2] Univ Cambridge Gonville & Caius Coll, Cambridge CB2 1TA, England
[3] UCL, Dept Neurosci Physiol & Pharmacol, London WC1E 6BT, England
基金
英国惠康基金;
关键词
AEROBIC GLYCOLYSIS; STEM-CELL; GLYCOGEN; PROLIFERATION; XENOPUS; TISSUE; COMPARTMENTALIZATION; PROGENITORS; EXPRESSION; LIVER;
D O I
10.1038/ncb2531
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Unlike healthy adult tissues, cancers produce energy mainly by aerobic glycolysis instead of oxidative phosphorylation(1). This adaptation, called the Warburg effect, may be a feature of all dividing cells, both normal and cancerous(2), or it may be specific to cancers(3). It is not known whether, in a normally growing tissue during development, proliferating and postmitotic cells produce energy in fundamentally different ways. Here we show in the embryonic Xenopus retina in vivo, that dividing progenitor cells depend less on oxidative phosphorylation for ATP production than non-dividing differentiated cells, and instead use glycogen to fuel aerobic glycolysis. The transition from glycolysis to oxidative phosphorylation is connected to the cell differentiation process. Glycolysis is indispensable for progenitor proliferation and biosynthesis, even when it is not used for ATP production. These results suggest that the Warburg effect can be a feature of normal proliferation in vivo, and that the regulation of glycolysis and oxidative phosphorylation is critical for normal development.
引用
收藏
页码:859 / U180
页数:12
相关论文
共 33 条
[11]  
GOTTLIEB TA, 1982, J BIOL CHEM, V257, P95
[12]   Assessing the physiological concentration and targets of nitric oxide in brain tissue [J].
Hall, Catherine N. ;
Attwell, David .
JOURNAL OF PHYSIOLOGY-LONDON, 2008, 586 (15) :3597-3615
[13]   Understanding the Warburg Effect: The Metabolic Requirements of Cell Proliferation [J].
Heiden, Matthew G. Vander ;
Cantley, Lewis C. ;
Thompson, Craig B. .
SCIENCE, 2009, 324 (5930) :1029-1033
[14]   CELLULAR DETERMINATION IN THE XENOPUS RETINA IS INDEPENDENT OF LINEAGE AND BIRTH DATE [J].
HOLT, CE ;
BERTSCH, TW ;
ELLIS, HM ;
HARRIS, WA .
NEURON, 1988, 1 (01) :15-26
[15]   The bHLH factors Xath5 and XNeuroD can upregulate the expression of XBrn3d, a POU-homeodomain transcription factor [J].
Hutcheson, DA ;
Vetter, ML .
DEVELOPMENTAL BIOLOGY, 2001, 232 (02) :327-338
[16]   The mechanism and pattern of yolk consumption provide insight into embryonic nutrition in Xenopus [J].
Jorgensen, Paul ;
Steen, Judith A. J. ;
Steen, Hanno ;
Kirschner, Marc W. .
DEVELOPMENT, 2009, 136 (09) :1539-1548
[17]   Acyl ureas as human liver glycogen phosphorylase inhibitors for the treatment of type 2 diabetes [J].
Klabunde, T ;
Wendt, KU ;
Kadereit, D ;
Brachvogel, V ;
Burger, HJ ;
Herling, AW ;
Oikonomakos, NG ;
Kosmopoulou, MN ;
Schmoll, D ;
Sarubbi, E ;
von Roedern, E ;
Schönafinger, K ;
Defossa, E .
JOURNAL OF MEDICINAL CHEMISTRY, 2005, 48 (20) :6178-6193
[18]   Hedgehog signaling and the retina: insights into the mechanisms controlling the proliferative properties of neural precursors [J].
Locker, Morgane ;
Agathocleous, Michalis ;
Amato, Marcos A. ;
Parain, Karine ;
Harris, William A. ;
Perron, Muriel .
GENES & DEVELOPMENT, 2006, 20 (21) :3036-3048
[19]   Energy Metabolic Phenotype of the Cardiomyocyte During Development, Differentiation, and Postnatal Maturation [J].
Lopaschuk, Gary D. ;
Jaswal, Jagdip S. .
JOURNAL OF CARDIOVASCULAR PHARMACOLOGY, 2010, 56 (02) :130-140
[20]   A rapid beta-NADH-linked fluorescence assay for lactate dehydrogenase in cellular death [J].
Moran, JH ;
Schnellmann, RG .
JOURNAL OF PHARMACOLOGICAL AND TOXICOLOGICAL METHODS, 1996, 36 (01) :41-44