TY - JOUR
T1 - BMP1-like proteinases are essential to the structure and wound healing of skin
AU - Muir, Alison M.
AU - Massoudi, Dawiyat
AU - Nguyen, Ngon
AU - Keene, Douglas R.
AU - Lee, Se Jin
AU - Birk, David E.
AU - Davidson, Jeffrey M.
AU - Marinkovich, M. Peter
AU - Greenspan, Daniel S.
N1 - Funding Information:
The authors are grateful to Alexander Nyström and Leena Bruckner-Tuderman, Larry Fisher, and to Sarah Pogue of Teva Pharmaceuticals, for their kind gifts of antibodies. This work was supported by funding from the Department of Veterans Affairs (JMD), by Debra International Epidermolysis Bullosa Medical Research Foundation and the Palo Alto VA Office of Research and Development (MPM), and by National Institutes of Health grants AR060636 and AR059685 (S-JL), AR044745 (DEB), AR055914 (MPM), and AR047746 and AI084853 (DSG).
Publisher Copyright:
© 2016 International Society of Matrix Biology
PY - 2016/12/1
Y1 - 2016/12/1
N2 - Closely related extracellular metalloproteinases bone morphogenetic protein 1 (BMP1) and mammalian Tolloid-like 1 (mTLL1) are co-expressed in various tissues and have been suggested to have overlapping roles in the biosynthetic processing of extracellular matrix components. Early lethality of mice null for the BMP1 gene Bmp1 or the mTLL1 gene Tll1 has impaired in vivo studies of these proteinases. To overcome issues of early lethality and functional redundancy we developed the novel BTKO mouse strain, with floxed Bmp1 and Tll1 alleles, for induction of postnatal, simultaneous ablation of the two genes. We previously showed these mice to have a skeletal phenotype that includes elements of osteogenesis imperfecta (OI), osteomalacia, and deficient osteocyte maturation, observations validated by the finding of BMP1 mutations in a subset of human patients with OI-like phenotypes. However, the roles of BMP1-like proteinase in non-skeletal tissues have yet to be explored, despite the supposed importance of putative substrates of these proteinases in such tissues. Here, we employ BTKO mice to investigate potential roles for these proteinases in skin. Loss of BMP1-like proteinase activity is shown to result in markedly thinned and fragile skin with unusually densely packed collagen fibrils and delayed wound healing. We demonstrate deficits in the processing of collagens I and III, decorin, biglycan, and laminin 332 in skin, which indicate mechanisms whereby BMP1-like proteinases affect the biology of this tissue. In contrast, lack of effects on collagen VII processing or deposition indicates this putative substrate to be biosynthetically processed by non-BMP1-like proteinases.
AB - Closely related extracellular metalloproteinases bone morphogenetic protein 1 (BMP1) and mammalian Tolloid-like 1 (mTLL1) are co-expressed in various tissues and have been suggested to have overlapping roles in the biosynthetic processing of extracellular matrix components. Early lethality of mice null for the BMP1 gene Bmp1 or the mTLL1 gene Tll1 has impaired in vivo studies of these proteinases. To overcome issues of early lethality and functional redundancy we developed the novel BTKO mouse strain, with floxed Bmp1 and Tll1 alleles, for induction of postnatal, simultaneous ablation of the two genes. We previously showed these mice to have a skeletal phenotype that includes elements of osteogenesis imperfecta (OI), osteomalacia, and deficient osteocyte maturation, observations validated by the finding of BMP1 mutations in a subset of human patients with OI-like phenotypes. However, the roles of BMP1-like proteinase in non-skeletal tissues have yet to be explored, despite the supposed importance of putative substrates of these proteinases in such tissues. Here, we employ BTKO mice to investigate potential roles for these proteinases in skin. Loss of BMP1-like proteinase activity is shown to result in markedly thinned and fragile skin with unusually densely packed collagen fibrils and delayed wound healing. We demonstrate deficits in the processing of collagens I and III, decorin, biglycan, and laminin 332 in skin, which indicate mechanisms whereby BMP1-like proteinases affect the biology of this tissue. In contrast, lack of effects on collagen VII processing or deposition indicates this putative substrate to be biosynthetically processed by non-BMP1-like proteinases.
KW - Biglycan
KW - Bone morphogenetic protein 1 (BMP1) mammalian tolloid-like 1
KW - Collagen
KW - Decorin
KW - Skin
KW - Wound healing
UR - http://www.scopus.com/inward/record.url?scp=85000460233&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=85000460233&partnerID=8YFLogxK
U2 - 10.1016/j.matbio.2016.06.004
DO - 10.1016/j.matbio.2016.06.004
M3 - Article
C2 - 27363389
AN - SCOPUS:85000460233
SN - 0945-053X
VL - 56
SP - 114
EP - 131
JO - Matrix Biology
JF - Matrix Biology
ER -