Duplication of the Hoxd11 gene causes alterations in the axial and appendicular skeleton of the mouse

被引:34
作者
Boulet, AM [1 ]
Capecchi, MR [1 ]
机构
[1] Univ Utah, Sch Med, Howard Hughes Med Inst, Dept Human Genet, Salt Lake City, UT 84112 USA
关键词
Hox genes; gene duplications; limb development; axial skeleton development; gene targeting;
D O I
10.1006/dbio.2002.0755
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
The Hox genes encode a group of transcription factors essential for proper development of the mouse. Targeted mutation of the Hoxd11 gene causes reduced male fertility, vertebral transformation, carpal bone fusions, and reductions in digit length. A duplication of the Hoxd11 gene was created with the expectation that the consequences of restricted overexpression in the appropriate cells would provide further insight into the function of the Hoxd11 gene product. Genetic assays demonstrated that two tandem copies of Hoxd11 were functionally indistinguishable from the normal two copies of the gene on separate chromosomes with respect to formation of the axial and appendicular skeleton. Extra copies of Hoxd11 caused an increase in the lengths of some bones of the forelimb autopod and a decrease in the number of lumbar vertebrae. Further, analysis of the Hoxd11 duplication demonstrated that the Hoxd11 protein can perform some functions supplied by its paralogue Hoxa11. For example, the defects in forelimb bones are corrected when extra copies of Hoxd11 are present in the Hoxa11 homozygous mutant background. Thus, it appears that Hoxd11 can quantitatively compensate for the absence of Hoxa11 protein, and therefore Hoxa11 and Hoxd11 are functionally equivalent in the zeugopod. However, extra copies of Hoxd11 did not improve male or female fertility in Hoxa11 mutants. Interestingly, the insertion of an additional Hoxd11 locus into the HoxD complex does not appear to affect the expression patterns of the neighboring Hoxd10, -d12, or -d13 genes. (C) 2002 Elsevier Science (USA).
引用
收藏
页码:96 / 107
页数:12
相关论文
共 46 条
[21]   In vivo targeted mutagenesis of a regulatory element required for positioning the Hoxd-11 and Hoxd-10 expression boundaries [J].
Gerard, M ;
Chen, JY ;
Gronemeyer, H ;
Chambon, P ;
Duboule, D ;
Zakany, J .
GENES & DEVELOPMENT, 1996, 10 (18) :2326-2334
[22]   Maintenance of functional equivalence during paralogous Hox gene evolution [J].
Greer, JM ;
Puetz, J ;
Thomas, KR ;
Capecchi, MR .
NATURE, 2000, 403 (6770) :661-665
[23]   THE ESTABLISHMENT OF MURINE HOX-1 EXPRESSION DOMAINS DURING PATTERNING OF THE LIMB [J].
HAACK, H ;
GRUSS, P .
DEVELOPMENTAL BIOLOGY, 1993, 157 (02) :410-422
[24]   Engineering chromosomes in mice through targeted meiotic recombination (TAMERE) [J].
Hérault, Y ;
Rassoulzadegan, M ;
Cuzin, F ;
Duboule, D .
NATURE GENETICS, 1998, 20 (04) :381-384
[25]   Hox gene expression in limbs:: Colinearity by opposite regulatory controls [J].
Hérault, Y ;
Beckers, J ;
Gérard, M ;
Duboule, D .
DEVELOPMENTAL BIOLOGY, 1999, 208 (01) :157-165
[26]   MUTATIONS IN PARALOGOUS HOX GENES RESULT IN OVERLAPPING HOMEOTIC TRANSFORMATIONS OF THE AXIAL SKELETON - EVIDENCE FOR UNIQUE AND REDUNDANT FUNCTION [J].
HORAN, GSB ;
KOVACS, EN ;
BEHRINGER, RR ;
FEATHERSTONE, MS .
DEVELOPMENTAL BIOLOGY, 1995, 169 (01) :359-372
[27]  
HSIEHLI HM, 1995, DEVELOPMENT, V121, P1373
[28]   A B-CELL-DEFICIENT MOUSE BY TARGETED DISRUPTION OF THE MEMBRANE EXON OF THE IMMUNOGLOBULIN MU-CHAIN GENE [J].
KITAMURA, D ;
ROES, J ;
KUHN, R ;
RAJEWSKY, K .
NATURE, 1991, 350 (6317) :423-426
[29]   Breaking colinearity in the mouse HoxD complex [J].
Kondo, T ;
Duboule, D .
CELL, 1999, 97 (03) :407-417
[30]  
MANSOUR SL, 1993, DEVELOPMENT, V117, P13