Related Experiment Video
Updated: Aug 14, 2026

Flat Mount Imaging of Mouse Skin and Its Application to the Analysis of Hair Follicle Patterning and Sensory Axon Morphology
Published on: June 25, 2014
Disturbed epidermal structure in mice with temporally controlled fatp4 deficiency
Thomas Herrmann1, Hermann-Josef Gröne, Lutz Langbein
1Department of Internal Medicine IV, University of Heidelberg, Heidelberg, Germany. thomas_herrmann@med.uni-heidelberg.de
Abstract:
So far, little is known about the physiological role of fatty acid transport protein 4 (Fatp4, Slc27a4). Mice with a targeted disruption of the Fatp4 gene display features of a human neonatally lethal restrictive dermopathy with a hyperproliferative hyperkeratosis, a disturbed epidermal barrier, a flat dermal-epidermal junction, a reduced number of pilo-sebaceous structures, and a compact dermis, demonstrating that Fatp4 is necessary for the formation of the epidermal barrier. Because Fatp4 is widely expressed, it is unclear whether intrinsic Fatp4 deficiency in the epidermis alone can cause changes in the epidermal structure or whether the abnormalities observed are secondary to the loss of Fatp4 in other organs. To evaluate the functional role of Fatp4 in the skin, we generated a mouse line with Fatp4 deficiency inducible in the epidermis. Mice with epidermal keratinocyte-specific Fatp4 deficiency developed a hyperproliferative hyperkeratosis with a disturbed epidermal barrier. These changes resemble the histological abnormalities in the epidermis of newborn mice with total Fatp4 deficiency. We conclude that Fatp4 in epidermal keratinocytes is essential for the maintenance of a normal epidermal structure.
Insights
Fatty acid transport protein 4 (Fatp4) is crucial for skin barrier formation. Epidermal Fatp4 deficiency in mice causes hyperkeratosis and barrier defects, confirming its essential role in skin structure.
Area of Science:
- Biochemistry
- Dermatology
- Genetics
Background:
- The physiological role of fatty acid transport protein 4 (Fatp4, Slc27a4) is largely unknown.
- Global Fatp4 deficiency in mice leads to neonatal lethal restrictive dermopathy, characterized by epidermal and dermal abnormalities, indicating Fatp4's importance for epidermal barrier formation.
Purpose of the Study:
- To investigate the specific role of Fatp4 within the epidermis.
- To determine if epidermal Fatp4 deficiency alone can recapitulate the observed skin abnormalities.
Main Methods:
- Generation of a mouse model with inducible, epidermis-specific Fatp4 deficiency.
- Histological analysis of skin from mutant mice.
Main Results:
- Mice with keratinocyte-specific Fatp4 deficiency exhibited hyperproliferative hyperkeratosis and a compromised epidermal barrier.
- These epidermal changes closely mimicked those seen in mice with global Fatp4 deficiency.
Conclusions:
- Fatty acid transport protein 4 (Fatp4) is essential for maintaining normal epidermal structure.
- Fatp4 function in epidermal keratinocytes is critical for proper skin barrier formation and integrity.

