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  4. The Transcriptional Regulator Prdm1 Is Essential for the Early Development of the Sensory Whisker Follicle and Is Linked to the Beta-Catenin First Dermal Signal
 
research article

The Transcriptional Regulator Prdm1 Is Essential for the Early Development of the Sensory Whisker Follicle and Is Linked to the Beta-Catenin First Dermal Signal

Manti, Pierluigi G.
•
Darbellay, Fabrice
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Leleu, Marion  
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October 1, 2022
Biomedicines

Prdm1 mutant mice are one of the rare mutant strains that do not develop whisker hair follicles while still displaying a pelage. Here, we show that Prdm1 is expressed at the earliest stage of whisker development in clusters of mesenchymal cells before placode formation. Its conditional knockout in the murine soma leads to the loss of expression of Bmp2, Shh, Bmp4, Krt17, Edar, and Gli1, though leaving the beta-catenin-driven first dermal signal intact. Furthermore, we show that Prdm1 expressing cells not only act as a signaling center but also as a multipotent progenitor population contributing to the several lineages of the adult whisker. We confirm by genetic ablation experiments that the absence of macro vibrissae reverberates on the organization of nerve wiring in the mystacial pads and leads to the reorganization of the barrel cortex. We demonstrate that Lef1 acts upstream of Prdm1 and identify a primate-specific deletion of a Lef1 enhancer named Leaf. This loss may have been significant in the evolutionary process, leading to the progressive defunctionalization and disappearance of vibrissae in primates.

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Type
research article
DOI
10.3390/biomedicines10102647
Web of Science ID

WOS:000872154900001

Author(s)
Manti, Pierluigi G.
Darbellay, Fabrice
Leleu, Marion  
Coughlan, Aisling Y.
Moret, Bernard  
Cuennet, Julien
Droux, Frederic
Stoudmann, Magali
Mancini, Gian-Filippo  
Hautier, Agnes  
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Date Issued

2022-10-01

Published in
Biomedicines
Volume

10

Issue

10

Article Number

2647

Subjects

Biochemistry & Molecular Biology

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Medicine, Research & Experimental

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Pharmacology & Pharmacy

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Biochemistry & Molecular Biology

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Research & Experimental Medicine

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Pharmacology & Pharmacy

•

sensory vibrissae

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barrel cortex

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prdm1

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lef1

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leaf

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non-conserved enhancer

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terminal differentiation

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progenitor cells

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hair-follicles

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expression

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blimp-1

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stem

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repressor

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cortex

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organization

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architecture

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCDS
BICC  
PTH  
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Available on Infoscience
November 7, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/192038
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