Muir Alison M, Massoudi Dawiyat, Nguyen Ngon, Keene Douglas R, Lee Se-Jin, Birk David E, Davidson Jeffrey M, Marinkovich M Peter, Greenspan Daniel S
Department of Cell and Regenerative Biology, University of Wisconsin School of Medicine and Public Health, Madison, WI 53705, USA.
Program in Epithelial Biology and Department of Dermatology, Stanford University School of Medicine, Stanford, CA, 94305, USA; Dermatology, VA Medical Center, Palo Alto, CA 94304, USA.
Matrix Biol. 2016 Dec;56:114-131. doi: 10.1016/j.matbio.2016.06.004. Epub 2016 Jun 27.
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 BT 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 BT 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.
密切相关的细胞外金属蛋白酶骨形态发生蛋白1(BMP1)和哺乳动物类Tolloid样蛋白1(mTLL1)在多种组织中共同表达,并且在细胞外基质成分的生物合成加工过程中被认为具有重叠作用。BMP1基因Bmp1或mTLL1基因Tll1缺失的小鼠早期致死,这损害了对这些蛋白酶的体内研究。为了克服早期致死和功能冗余的问题,我们开发了新型BT小鼠品系,其Bmp1和Tll1等位基因带有loxP位点,用于诱导出生后同时敲除这两个基因。我们之前发现这些小鼠具有骨骼表型,包括成骨不全(OI)、骨软化和骨细胞成熟缺陷等特征,在一部分具有OI样表型的人类患者中发现BMP1突变证实了这些观察结果。然而,尽管这些蛋白酶的假定底物在非骨骼组织中具有重要作用,但BMP1样蛋白酶在非骨骼组织中的作用尚未得到探索。在这里,我们利用BT小鼠来研究这些蛋白酶在皮肤中的潜在作用。结果表明,BMP1样蛋白酶活性的丧失导致皮肤明显变薄且脆弱,胶原纤维异常密集堆积,伤口愈合延迟。我们证明了皮肤中I型和III型胶原蛋白、核心蛋白聚糖、双糖链蛋白聚糖和层粘连蛋白332的加工存在缺陷,这表明了BMP1样蛋白酶影响该组织生物学特性的机制。相比之下,对VII型胶原蛋白加工或沉积缺乏影响表明该假定底物是由非BMP1样蛋白酶进行生物合成加工的。