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Attenuated BMP1 Function Compromises Osteogenesis, Leading to Bone Fragility in Humans and Zebrafish
Author(s) -
P. V. Asharani,
Katharina Keupp,
Oliver Semler,
Wenshen Wang,
Yun Li,
Hölger Thiele,
Gökhan Yigit,
Esther Pohl,
Jutta Becker,
Peter Frommolt,
C. Sonntag,
Janine Altmüller,
Katharina Zimmermann,
Daniel S. Greenspan,
Nurten Akarsu,
Christian Netzer,
Eckhard Schönaü,
Radu Wirth,
Matthias Hammerschmidt,
Peter Nürnberg,
Bernd Wollnik,
Thomas J. Carney
Publication year - 2012
Publication title -
the american journal of human genetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.661
H-Index - 302
eISSN - 1537-6605
pISSN - 0002-9297
DOI - 10.1016/j.ajhg.2012.02.026
Subject(s) - bone morphogenetic protein , biology , zebrafish , mutant , bone morphogenetic protein 2 , microbiology and biotechnology , bone morphogenetic protein 10 , bone morphogenetic protein 5 , mutation , extracellular matrix , genetics , bone morphogenetic protein 7 , gene , in vitro
Bone morphogenetic protein 1 (BMP1) is an astacin metalloprotease with important cellular functions and diverse substrates, including extracellular-matrix proteins and antagonists of some TGFβ superfamily members. Combining whole-exome sequencing and filtering for homozygous stretches of identified variants, we found a homozygous causative BMP1 mutation, c.34G>C, in a consanguineous family affected by increased bone mineral density and multiple recurrent fractures. The mutation is located within the BMP1 signal peptide and leads to impaired secretion and an alteration in posttranslational modification. We also characterize a zebrafish bone mutant harboring lesions in bmp1a, demonstrating conservation of BMP1 function in osteogenesis across species. Genetic, biochemical, and histological analyses of this mutant and a comparison to a second, similar locus reveal that Bmp1a is critically required for mature-collagen generation, downstream of osteoblast maturation, in bone. We thus define the molecular and cellular bases of BMP1-dependent osteogenesis and show the importance of this protein for bone formation and stability.

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