Cyp26 enzymes generate the retinoic acid response pattern necessary for hindbrain development

被引:174
作者
Hernandez, Rafael E.
Putzke, Aaron P.
Myers, Jonathan P.
Margaretha, Lilyana
Moens, Cecilia B. [1 ]
机构
[1] Univ Wisconsin, Med Sci Training Program, Madison, WI 53706 USA
[2] Univ Wisconsin, Mol & Cellular Biol Program, Madison, WI 53706 USA
[3] Fred Hutchinson Canc Res Ctr, HHMI, Seattle, WA 98109 USA
[4] Fred Hutchinson Canc Res Ctr, Div Basic Sci, Seattle, WA 98109 USA
来源
DEVELOPMENT | 2007年 / 134卷 / 01期
关键词
retinoic acid; hindbrain; Cyp26; Hox; morphogen; zebrafish;
D O I
10.1242/dev.02706
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Retinoic acid ( RA) is essential for normal vertebrate development, including the patterning of the central nervous system. During early embryogenesis, RA is produced in the trunk mesoderm through the metabolism of vitamin A derived from the maternal diet and behaves as a morphogen in the developing hindbrain where it specifies nested domains of Hox gene expression. The loss of endogenous sources of RA can be rescued by treatment with a uniform concentration of exogenous RA, indicating that domains of RA responsiveness can be shaped by mechanisms other than the simple diffusion of RA from a localized posterior source. Here, we show that the cytochrome p450 enzymes of the Cyp26 class, which metabolize RA into polar derivatives, function redundantly to shape RA-dependent gene-expression domains during hindbrain development. In zebrafish embryos depleted of the orthologs of the three mammalian CYP26 genes CYP26A1, CYP26B1 and CYP26C1, the entire hindbrain expresses RA-responsive genes that are normally restricted to nested domains in the posterior hindbrain. Furthermore, we show that Cyp26 enzymes are essential for exogenous RA to rescue hindbrain patterning in RA-depleted embryos. We present a 'gradient-free' model for hindbrain patterning in which differential RA responsiveness along the hindbrain anterior-posterior axis is shaped primarily by the dynamic expression of RA-degrading enzymes.
引用
收藏
页码:177 / 187
页数:11
相关论文
共 65 条
[1]   The retinoic acid-metabolizing enzyme, CYP26A1, is essential for normal hindbrain patterning, vertebral identity, and development of posterior structures [J].
Abu-Abed, S ;
Dollé, P ;
Metzger, D ;
Beckett, B ;
Chambon, P ;
Petkovich, M .
GENES & DEVELOPMENT, 2001, 15 (02) :226-240
[2]   Differential expression of the retinoic acid-metabolizing enzymes CYP26A1 and CYP26B1 during murine organogenesis [J].
Abu-Abed, S ;
MacLean, G ;
Fraulob, V ;
Chambon, P ;
Petkovich, M ;
Dollé, P .
MECHANISMS OF DEVELOPMENT, 2002, 110 (1-2) :173-177
[3]   TGIF inhibits retinoid signaling [J].
Bartholin, L ;
Powers, SE ;
Melhuish, TA ;
Lasse, S ;
Weinstein, M ;
Wotton, D .
MOLECULAR AND CELLULAR BIOLOGY, 2006, 26 (03) :990-1001
[4]   Nuclear retinoid receptors and the transcription of retinoid-target genes [J].
Bastien, J ;
Rochette-Egly, C .
GENE, 2004, 328 :1-16
[5]  
Begemann G, 2001, DEVELOPMENT, V128, P3081
[6]   Beyond the neckless phenotype:: influence of reduced retinoic acid signaling on motor neuron development in the zebrafish hindbrain [J].
Begemann, G ;
Marx, M ;
Mebus, K ;
Meyer, A ;
Bastmeyer, M .
DEVELOPMENTAL BIOLOGY, 2004, 271 (01) :119-129
[7]  
Cang Yong, CELL, V127, P929, DOI [10.1016/j.cell.2006.09.045, DOI 10.1016/J.CELL.2006.09.045]
[8]   Nuclear re-organisation of the Hoxb complex during mouse embryonic development [J].
Chambeyron, S ;
Da Silva, NR ;
Lawson, KA ;
Bickmore, WA .
DEVELOPMENT, 2005, 132 (09) :2215-2223
[9]  
Costaridis P, 1996, DEV DYNAM, V205, P41
[10]   Feedback mechanisms regulate retinoic acid production and degradation in the zebrafish embryo [J].
Dobbs-McAuliffe, B ;
Zhao, QS ;
Linney, E .
MECHANISMS OF DEVELOPMENT, 2004, 121 (04) :339-350