TY - JOUR
T1 - Loss of Mpzl3 function causes various skin abnormalities and greatly reduced adipose depots
AU - Leiva, Angel G.
AU - Chen, Anne L.
AU - Devarajan, Priyadharshini
AU - Chen, Zhibin
AU - Damanpour, Shadi
AU - Hall, Jessica A.
AU - Bianco, Antonio C.
AU - Li, Jie
AU - Badiavas, Evangelos V.
AU - Zaias, Julia
AU - Miteva, Mariya
AU - Romanelli, Paolo
AU - Nouri, Keyvan
AU - Cao Wikramanayake, Tongyu
PY - 2014/7
Y1 - 2014/7
N2 - The rough coat (rc) spontaneous mutation causes sebaceous gland (SG) hypertrophy, hair loss, and extracutaneous abnormalities including growth retardation. The rc mice have a missense mutation in the predicted Ig protein Myelin Protein Zero-Like 3 (Mpzl3). In this study, we generated Mpzl3 knockout mice to determine its functions in the skin. Homozygous Mpzl3 knockout mice showed unkempt and greasy hair coat and hair loss soon after birth. Histological analysis revealed severe SG hypertrophy and increased dermal thickness, but did not detect significant changes in the hair cycle. Mpzl3-null mice frequently developed inflammatory skin lesions; however, the early-onset skin abnormalities were not the result of immune defects. The abnormalities in the Mpzl3 knockout mice closely resemble those observed in rc/rc mice, and in mice heterozygous for both the rc and Mpzl3 knockout alleles, indicating that rc and Mpzl3 are allelic. Using a lacZ reporter gene, we detected Mpzl3 promoter activity in the companion layer and inner root sheath of the hair follicle, SG, and epidermis. Loss of MPZL3 function also caused a striking reduction in cutaneous and overall adipose tissue. These data reveal a complex role for Mpzl3 in the control of skin development, hair growth, and adipose cell functions.
AB - The rough coat (rc) spontaneous mutation causes sebaceous gland (SG) hypertrophy, hair loss, and extracutaneous abnormalities including growth retardation. The rc mice have a missense mutation in the predicted Ig protein Myelin Protein Zero-Like 3 (Mpzl3). In this study, we generated Mpzl3 knockout mice to determine its functions in the skin. Homozygous Mpzl3 knockout mice showed unkempt and greasy hair coat and hair loss soon after birth. Histological analysis revealed severe SG hypertrophy and increased dermal thickness, but did not detect significant changes in the hair cycle. Mpzl3-null mice frequently developed inflammatory skin lesions; however, the early-onset skin abnormalities were not the result of immune defects. The abnormalities in the Mpzl3 knockout mice closely resemble those observed in rc/rc mice, and in mice heterozygous for both the rc and Mpzl3 knockout alleles, indicating that rc and Mpzl3 are allelic. Using a lacZ reporter gene, we detected Mpzl3 promoter activity in the companion layer and inner root sheath of the hair follicle, SG, and epidermis. Loss of MPZL3 function also caused a striking reduction in cutaneous and overall adipose tissue. These data reveal a complex role for Mpzl3 in the control of skin development, hair growth, and adipose cell functions.
UR - http://www.scopus.com/inward/record.url?scp=84902551685&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=84902551685&partnerID=8YFLogxK
U2 - 10.1038/jid.2014.94
DO - 10.1038/jid.2014.94
M3 - Article
C2 - 24531688
AN - SCOPUS:84902551685
SN - 0022-202X
VL - 134
SP - 1817
EP - 1827
JO - Journal of Investigative Dermatology
JF - Journal of Investigative Dermatology
IS - 7
ER -