Repression of the hindbrain developmental program by Cdx factors is required for the specification of the vertebrate spinal cord

被引:59
作者
Skromne, Isaac [1 ]
Thorsen, Dean [1 ]
Hale, Melina [1 ]
Prince, Victoria E. [1 ]
Ho, Robert K. [1 ]
机构
[1] Univ Chicago, Dept Organ Biol & Anat, Chicago, IL 60637 USA
来源
DEVELOPMENT | 2007年 / 134卷 / 11期
关键词
Cdx; caudal; Hox; retinoic acid; segmentation; rhombomeres; hindbrain; spinal cord; central nervous system; chordates; vertebrates; evolution;
D O I
10.1242/dev.002980
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
The spinal cord is a unique vertebrate feature that originates, together with the hindbrain, from the caudal neural plate. Whereas the hindbrain subdivides into rhombomeres, the spinal cord remains unsegmented. We have identified Cdx transcription factors as key determinants of the spinal cord region in zebrafish. Loss of Cdx1a and Cdx4 functions causes posterior expansion of the hindbrain at the expense of the unsegmented spinal cord. By contrast, cdx4 overexpression in the hindbrain impairs rhombomere segmentation and patterning and induces the expression of spinal cord-specific genes. Using cell transplantation, we demonstrate that Cdx factors function directly within the neural ectoderm to specify spinal cord. Overexpression of 5' Hox genes fails to rescue hindbrain and spinal cord defects associated with cdx1a/cdx4 loss-of-function, suggesting a Hox-independent mechanism of spinal cord specification. In the absence of Cdx function, the caudal neural plate retains hindbrain characteristics and remains responsive to surrounding signals, particularly retinoic acid, in a manner similar to the native hindbrain. We propose that by preventing the posterior-most region of the neural plate from following a hindbrain developmental program, Cdx factors help determine the size of the prospective hindbrain and spinal cord territories.
引用
收藏
页码:2147 / 2158
页数:12
相关论文
共 92 条
[11]   Cdx2 is essential for axial elongation in mouse development [J].
Chawengsaksophak, K ;
de Graaff, W ;
Rossant, J ;
Deschamps, J ;
Beck, F .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (20) :7641-7645
[12]   Notch activation regulates the segregation and differentiation rhombomere boundary cells in the zebrafish hindbrain [J].
Cheng, YC ;
Amoyel, M ;
Qiu, XH ;
Jiang, YJ ;
Xu, QL ;
Wilkinson, DG .
DEVELOPMENTAL CELL, 2004, 6 (04) :539-550
[13]   EDhA4 is required for cell adhesion and rhombomere-boundary formation in the zebrafish [J].
Cooke, JE ;
Kemp, HA ;
Moens, CB .
CURRENT BIOLOGY, 2005, 15 (06) :536-542
[14]  
Cooke JE, 2001, DEVELOPMENT, V128, P571
[15]   Ancestral role of caudal genes in axis elongation and segmentation [J].
Copf, T ;
Schröder, R ;
Averof, M .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (51) :17711-17715
[16]   cdx4 mutants fail to specify blood progenitors and can be rescued by multiple hox genes [J].
Davidson, AJ ;
Ernst, P ;
Wang, Y ;
Dekens, MPS ;
Kingsley, PD ;
Palis, J ;
Korsmeyer, SJ ;
Daley, GQ ;
Zon, LI .
NATURE, 2003, 425 (6955) :300-306
[17]   The caudal-related homeobox genes cdx1a and cdx4 act redundantly to regulate hox gene expression and the formation of putative hematopoietic stem cells during zebrafish embryogenesis [J].
Davidson, AJ ;
Zon, LI .
DEVELOPMENTAL BIOLOGY, 2006, 292 (02) :506-518
[18]   Developmental regulation of the Hox genes during axial morphogenesis in the mouse [J].
Deschamps, J ;
van Nes, J .
DEVELOPMENT, 2005, 132 (13) :2931-2942
[19]   An experimental study of spinal nerve segmentation in Amblystoma with reference to the plurisegimental contribution to the brachial plexus [J].
Detwiler, SR .
JOURNAL OF EXPERIMENTAL ZOOLOGY, 1934, 67 (03) :395-441
[20]   Zebraf ish fgf24 functions with fgf8 to promote posterior mesodermal development [J].
Draper, BW ;
Stock, DW ;
Kimmel, CB .
DEVELOPMENT, 2003, 130 (19) :4639-4654