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Publication : Collagen (I) homotrimer potentiates the osteogenesis imperfecta (oim) mutant allele and reduces survival in male mice.

First Author  Lee KJ Year  2022
Journal  Dis Model Mech Volume  15
Issue  9 PubMed ID  36106514
Mgi Jnum  J:330568 Mgi Id  MGI:7367023
Doi  10.1242/dmm.049428 Citation  Lee KJ, et al. (2022) Collagen (I) homotrimer potentiates the osteogenesis imperfecta (oim) mutant allele and reduces survival in male mice. Dis Model Mech 15(9):dmm049428
abstractText  The osteogenesis imperfecta murine (oim) model with solely homotrimeric (alpha1)3 type I collagen, owing to a dysfunctional alpha2(I) collagen chain, has a brittle bone phenotype, implying that the (alpha1)2(alpha2)1 heterotrimer is required for physiological bone function. Here, we comprehensively show, for the first time, that mice lacking the alpha2(I) chain do not have impaired bone biomechanical or structural properties, unlike oim homozygous mice. However, Mendelian inheritance was affected in male mice of both lines, and male mice null for the alpha2(I) chain exhibited age-related loss of condition. Compound heterozygotes were generated to test whether gene dosage was responsible for the less-severe phenotype of oim heterozygotes, after allelic discrimination showed that the oim mutant allele was not downregulated in heterozygotes. Compound heterozygotes had impaired bone structural properties compared to those of oim heterozygotes, albeit to a lesser extent than those of oim homozygotes. Hence, the presence of heterotrimeric type I collagen in oim heterozygotes alleviates the effect of the oim mutant allele, but a genetic interaction between homotrimeric type I collagen and the oim mutant allele leads to bone fragility.
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