A genetic basis of variation in eccrine sweat gland and hair follicle density.

Proc Natl Acad Sci U S A
Authors
Keywords
Abstract

Among the unique features of humans, one of the most salient is the ability to effectively cool the body during extreme prolonged activity through the evapotranspiration of water on the skin's surface. The evolution of this novel physiological ability required a dramatic increase in the density and distribution of eccrine sweat glands relative to other mammals and a concomitant reduction of body hair cover. Elucidation of the genetic underpinnings for these adaptive changes is confounded by a lack of knowledge about how eccrine gland fate and density are specified during development. Moreover, although reciprocal changes in hair cover and eccrine gland density are required for efficient thermoregulation, it is unclear if these changes are linked by a common genetic regulation. To identify pathways controlling the relative patterning of eccrine glands and hair follicles, we exploited natural variation in the density of these organs between different strains of mice. Quantitative trait locus mapping identified a large region on mouse Chromosome 1 that controls both hair and eccrine gland densities. Differential and allelic expression analysis of the genes within this interval coupled with subsequent functional studies demonstrated that the level of En1 activity directs the relative numbers of eccrine glands and hair follicles. These findings implicate En1 as a newly identified and reciprocal determinant of hair follicle and eccrine gland density and identify a pathway that could have contributed to the evolution of the unique features of human skin.

Year of Publication
2015
Journal
Proc Natl Acad Sci U S A
Volume
112
Issue
32
Pages
9932-7
Date Published
2015 Aug 11
ISSN
1091-6490
URL
DOI
10.1073/pnas.1511680112
PubMed ID
26195765
PubMed Central ID
PMC4538659
Links
Grant list
R01 AR055256 / AR / NIAMS NIH HHS / United States
R21 AR066289 / AR / NIAMS NIH HHS / United States
AR055256 / AR / NIAMS NIH HHS / United States
R37 HD032443 / HD / NICHD NIH HHS / United States
DP2 OD006514 / OD / NIH HHS / United States