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Mutations in FKBP10, which result in Bruck syndrome and recessive forms of osteogenesis imperfecta, inhibit the hydroxylation of telopeptide lysines in bone collagen

成骨不全 错义突变 遗传学 Ⅰ型胶原 单倍率不足 突变 前胶原肽酶 化学 生物 内分泌学 表型 内科学 基因 医学 解剖
作者
U. Schwarze,Tim Cundy,Shawna M. Pyott,H. E. Christiansen,Madhuri Hegde,Ruud A. Bank,Gerard Pals,Arunkanth Ankala,Karen N. Conneely,Laurie H. Seaver,Suzanne M. Yandow,Ellen M. Raney,Dusica Babovic‐Vuksanovic,Joan M. Stoler,Ziva Ben‐Neriah,Reeval Segel,Sari Lieberman,Liesbeth Siderius,Aida I. Al‐Aqeel,Mark Hannibal
出处
期刊:Human Molecular Genetics [Oxford University Press]
卷期号:22 (1): 1-17 被引量:139
标识
DOI:10.1093/hmg/dds371
摘要

Although biallelic mutations in non-collagen genes account for <10% of individuals with osteogenesis imperfecta, the characterization of these genes has identified new pathways and potential interventions that could benefit even those with mutations in type I collagen genes. We identified mutations in FKBP10, which encodes the 65 kDa prolyl cis-trans isomerase, FKBP65, in 38 members of 21 families with OI. These include 10 families from the Samoan Islands who share a founder mutation. Of the mutations, three are missense; the remainder either introduce premature termination codons or create frameshifts both of which result in mRNA instability. In four families missense mutations result in loss of most of the protein. The clinical effects of these mutations are short stature, a high incidence of joint contractures at birth and progressive scoliosis and fractures, but there is remarkable variability in phenotype even within families. The loss of the activity of FKBP65 has several effects: type I procollagen secretion is slightly delayed, the stabilization of the intact trimer is incomplete and there is diminished hydroxylation of the telopeptide lysyl residues involved in intermolecular cross-link formation in bone. The phenotype overlaps with that seen with mutations in PLOD2 (Bruck syndrome II), which encodes LH2, the enzyme that hydroxylates the telopeptide lysyl residues. These findings define a set of genes, FKBP10, PLOD2 and SERPINH1, that act during procollagen maturation to contribute to molecular stability and post-translational modification of type I procollagen, without which bone mass and quality are abnormal and fractures and contractures result.
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