Role of IGF signaling in catch-up growth and accelerated temporal development in zebrafish embryos in response to oxygen availability

被引:64
作者
Kamei, Hiroyasu [1 ]
Ding, Yonghe [1 ]
Kajimura, Shingo [1 ]
Wells, Michael [1 ]
Chiang, Peter [1 ]
Duan, Cunming [1 ]
机构
[1] Univ Michigan, Dept Mol Cellular & Dev Biol, Ann Arbor, MI 48109 USA
来源
DEVELOPMENT | 2011年 / 138卷 / 04期
关键词
Insulin-like growth factor 1 receptor; Embryogenesis; Developmental timing; Akt; Erk1/2 (Mapk3/1); Hypoxia; Zebrafish; STRESS-INDUCED PHOSPHORYLATION; CAENORHABDITIS-ELEGANS; INSULIN; GENE; INHIBITION; RECEPTOR; HYPOXIA; BINDING; MICE; LIFE;
D O I
10.1242/dev.056853
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Animals respond to adverse environments by slowing down or arresting growth and development. Upon returning to normal conditions, they often show compensatory acceleration in growth and developmental rate. This phenomenon, known as 'catch-up' growth, is widely documented in the animal kingdom. The underlying molecular mechanisms, however, are poorly understood. Using the zebrafish embryo as an experimental model system, we tested the hypothesis that changes in IGF signaling activities play an important role in the accelerated growth and temporal development resulting from re-oxygenation following hypoxia. We show that chronic hypoxia reduced, and re-oxygenation accelerated, embryonic growth and developmental rate. Whereas hypoxia repressed the Igf1 receptor and its downstream Erk1/2 and Akt signaling activities, re-oxygenation restored their activities. Specific inhibition of Igf1 receptor signaling during re-oxygenation by genetic and pharmacological approaches attenuated catch-up growth. Further analysis showed that whereas PI3K-Akt is required in both normal and catch-up growth, Mek1/2-Erk1/2 activation induced by elevated IGF signaling during re-oxygenation is particularly crucial for catch-up growth. These results suggest that the evolutionarily conserved IGF signaling pathway coordinates growth and temporal development in zebrafish embryos in response to oxygen availability.
引用
收藏
页码:777 / 786
页数:10
相关论文
共 43 条
[1]   The RSK family of kinases: emerging roles in cellular signalling [J].
Anjum, Rana ;
Blenis, John .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2008, 9 (10) :747-758
[2]  
BAKER J, 1993, CELL, V75, P73, DOI 10.1016/0092-8674(93)90680-O
[3]   Temporal control of differentiation by the insulin receptor/Tor pathway in Drosophila [J].
Bateman, JM ;
McNeill, H .
CELL, 2004, 119 (01) :87-96
[4]   c-Myc phosphorylation is required for cellular response to oxidative stress [J].
Benassi, B ;
Fanciulli, M ;
Fiorentino, F ;
Porrello, A ;
Chiorino, G ;
Loda, M ;
Zupi, G ;
Biroccio, A .
MOLECULAR CELL, 2006, 21 (04) :509-519
[5]   Catch-up growth and endocrine changes in childhood Celiac disease - Endocrine changes during catch-up growths [J].
Boersma, B ;
Houwen, RHJ ;
Blum, WF ;
van Doorn, J ;
Wit, JM .
HORMONE RESEARCH, 2002, 58 :57-65
[6]   An evolutionarily conserved function of the Drosophila insulin receptor and insulin-like peptides in growth control [J].
Brogiolo, W ;
Stocker, H ;
Ikeya, T ;
Rintelen, F ;
Fernandez, R ;
Hafen, E .
CURRENT BIOLOGY, 2001, 11 (04) :213-221
[7]   BMS-754807, a small molecule inhibitor of insulin-like growth factor-1R/IR [J].
Carboni, Joan M. ;
Wittman, Mark ;
Yang, Zheng ;
Lee, Francis ;
Greer, Ann ;
Hurlburt, Warren ;
Hillerman, Stephen ;
Cao, Carolyn ;
Cantor, Glenn H. ;
Dell-John, Janet ;
Chen, Cliff ;
Discenza, Lorell ;
Menard, Krista ;
Li, Aixin ;
Trainor, George ;
Vyas, Dolatrai ;
Kramer, Robert ;
Attar, Ricardo M. ;
Gottardis, Marco M. .
MOLECULAR CANCER THERAPEUTICS, 2009, 8 (12) :3341-3349
[8]   Adaptation of nutrient supply to fetal demand in the mouse involves interaction between the Igf2 gene and placental transporter systems [J].
Constância, M ;
Angiolini, E ;
Sandovici, I ;
Smith, P ;
Smith, R ;
Kelsey, G ;
Dean, W ;
Ferguson-Smith, A ;
Sibley, CP ;
Reik, W ;
Fowden, A .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (52) :19219-19224
[9]   Placental-specific IGF-II is a major modulator of placental and fetal growth [J].
Constância, M ;
Hemberger, M ;
Hughes, J ;
Dean, W ;
Ferguson-Smith, A ;
Fundele, R ;
Stewart, F ;
Kelsey, G ;
Fowden, A ;
Sibley, C ;
Reik, W .
NATURE, 2002, 417 (6892) :945-948
[10]   Placental-specific Igf2 knockout mice exhibit hypocalcemia and adaptive changes in placental calcium transport [J].
Dilworth, M. R. ;
Kusinski, L. C. ;
Cowley, E. ;
Ward, B. S. ;
Husain, S. M. ;
Constancia, M. ;
Sibley, C. P. ;
Glazier, J. D. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2010, 107 (08) :3894-3899