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  4. Modeling Hox gene regulation in digits: reverse collinearity and the molecular origin of thumbness
 
research article

Modeling Hox gene regulation in digits: reverse collinearity and the molecular origin of thumbness

Montavon, T.
•
Le Garrec, J. F.
•
Kerszberg, M.
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2008
Genes & Development

During the development of mammalian digits, clustered Hoxd genes are expressed following a collinear regulatory strategy, leading to both the growth of digits and their morphological identities. Because gene dosage is a key parameter in this system, we used a quantitative approach, associated with a collection of mutant stocks, to investigate the nature of the underlying regulatory mechanism(s). In parallel, we elaborated a mathematical model of quantitative collinearity, which was progressively challenged and validated by the experimental approach. This combined effort suggested a two-step mechanism, which involves initially the looping and recognition of the cluster by a complex including two enhancer sequences, followed by a second step of microscanning of genes located nearby. In this scenario, the respective rank of the genes, with respect to the 5' extremity of the cluster, is primordial, as well as different gene-specific affinities. This model accounts for the quantitative variations observed in our many mutant strains, and reveals the molecular constraint leading to thumbness; i.e., why a morphological difference must occur between the most anterior digit and the others. We also show that the same model applies to the collinear regulation of Hox genes during the emergence of external genitalia, though with some differences likely illustrating the distinct functionalities of these structures in adults.

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Type
research article
DOI
10.1101/gad.1631708
Web of Science ID

WOS:000253170400009

Author(s)
Montavon, T.
Le Garrec, J. F.
Kerszberg, M.
Duboule, D.  
Date Issued

2008

Published in
Genes & Development
Volume

22

Issue

3

Start page

346

End page

59

Subjects

Limbs

•

genitals

•

regulatory landscapes

•

modeling

•

looping

Note

National Research Centre "Frontiers in Genetics," School of Life Sciences, Ecole Polytechnique Federale, CH-1015 Lausanne, Switzerland

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPDUB  
Available on Infoscience
February 25, 2008
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/19256
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