Searchable abstracts of presentations at key conferences on calcified tissues

ba0003pp17 | Bone biomechanics and quality | ECTS2014

Bone fragility and matrix hypermineralization is rescued in homozygous OI Brtl mice mutants

Fratzl-Zelman Nadja , Kozloff Kenneth M , Meganck Jeff , Reich Adi , Roschger Paul , Cabral Wayne , Klaushofer Klaus , Marini Joan

Classical osteogenesis imperfecta (OI) is caused by mutations in the two genes encoding type I collagen. OI is associated with low bone mass and abnormally high bone matrix mineralization. The Brtl/+ OI mouse is a knock-in model caused by a glycine substitution in one COL1A1 allele. Brtl/+ pups display 30% perinatal lethality; survivors have small size and brittle bone. Unexpectedly, homozygous Brtl/Brtl pups, producing only mutant collagen, have normal survival rates...

ba0005oc6.2 | Development and differentiation (or Aging) | ECTS2016

Bone with uncleavable type I collagen C-propeptide has abnormal development of multiple bone cell populations and increased bone mineral density with age

Barnes Aileen M , Perosky Joseph E , Blouin Stephane , Rajpar M Helen , Khoury Basma , Klaushofer Klaus , Roschger Paul , Fratzl-Zelman Nadja , Kozloff Kenneth M , Marini Joan C

Mutations in the C-propeptide cleavage site of both COL1A1 and COL1A2 cause dominant high bone mass (HBM) osteogenesis imperfecta (OI), characterized by bone hypermineralization. To elucidate the role of C-propeptide processing in bone formation, we generated heterozygous HBM mice in which both residues of the COL1A1 cleavage site were mutated to prevent cleavage by BMP1. HBM mice are smaller than WT in both weight and length and have extremely brittle bones....

ba0006oc22 | (1) | ICCBH2017

Type I collagen C-propeptide cleavage deficiency increases bone mineralization and alters bone cell differentiation

Barnes Aileen , Perosky Joseph , Blouin Stephane , Rajpar M. Helen , Khoury Basma , Weis MaryAnn , Klaushofer Klaus , Roschger Paul , Eyre David , Fratzl-Zelman Nadja , Kozloff Kenneth , Marini Joan

High Bone Mass (HBM) osteogenesis imperfecta (OI) is caused by dominant mutations in the C-propeptide cleavage site of COL1A1 or COL1A2, characterized by bone hypermineralization. To elucidate the role of C-propeptide processing in bone mineralization and development, we generated heterozygous HBM mice with both residues (Ala-Asp) of the COL1A1 cleavage site substituted (Thr-Asn) to prevent processing by BMP1. Two, 6- and 12-month WT and HBM bones were examin...