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1.
Horm Res Paediatr ; 81(3): 204-10, 2014.
Article in English | MEDLINE | ID: mdl-24356182

ABSTRACT

BACKGROUND/AIMS: Intravenous bisphosphonate therapy is the mainstay of medical treatment in osteogenesis imperfecta (OI) and has been shown to increase bone mass, decrease bone pain, improve mobility, and reduce the incidence of fractures. Sclerotic metaphyseal lines parallel to the growth plate are seen on long bone radiographs following cyclical intravenous therapy. These areas create stress risers within the bone that may act as foci for subsequent fractures as exemplified in this clinical case. METHODS: An 8-year-old girl with OI sustained a distal radial fracture following 3 years of treatment with 6-monthly intravenous zoledronate. Her diagnosis, response to treatment, and subsequent fracture at a sclerotic metaphyseal line is described. RESULTS: Peripheral quantitative computer tomography was used to characterise the presence of multiple stress risers at the distal forearm. Trabecular bone mineral density fluctuated from 34 to 126% compared to neighbouring 2-mm regions. CONCLUSION: There remain many unanswered questions about optimal bisphosphonate treatment regimens in children with OI. The formation of stress risers following intravenous bisphosphonate treatment raises the hypothesis that a more frequent and low-dose bisphosphonate regimen would provide more uniform dosing of bone in the growing child and reduce the likelihood of fractures compared to current treatment practices.


Subject(s)
Bone Density Conservation Agents/adverse effects , Bone Density/drug effects , Diphosphonates/adverse effects , Imidazoles/adverse effects , Osteogenesis Imperfecta , Radius Fractures , Bone Density Conservation Agents/administration & dosage , Child , Child, Preschool , Diphosphonates/administration & dosage , Female , Humans , Imidazoles/administration & dosage , Osteogenesis Imperfecta/diagnostic imaging , Osteogenesis Imperfecta/drug therapy , Osteogenesis Imperfecta/metabolism , Radius Fractures/chemically induced , Radius Fractures/diagnostic imaging , Radius Fractures/metabolism , Tomography, X-Ray Computed , Zoledronic Acid
2.
J Biol Chem ; 283(14): 8969-75, 2008 Apr 04.
Article in English | MEDLINE | ID: mdl-18158286

ABSTRACT

The L-to-D-peptide isomerase from the venom of the platypus (Ornithorhyncus anatinus) is the first such enzyme to be reported for a mammal. In delineating its catalytic mechanism and broader roles in the animal, its substrate specificity was explored. We used N-terminal segments of defensin-like peptides DLP-2 and DLP-4 and natriuretic peptide OvCNP from the venom as substrates. The DLP analogues IMFsrs and ImFsrs (srs is a solubilizing chain; lowercase letters denote D-amino acid) were effective substrates for the isomerase; it appears to recognize the N-terminal tripeptide sequence Ile-Xaa-Phe-. A suite of 26 mutants of these hexapeptides was synthesized by replacing the second residue (Met) with another amino acid, viz. Ala, alpha-aminobutyric acid, Ile, Leu, Lys, norleucine, Phe, Tyr, and Val. It was shown that mutant peptides incorporating norleucine and Phe are substrates and exhibit L- or D-amino acid isomerization, but mutant peptides that contain residues with shorter, beta-branched or long side chains with polar terminal groups, viz. Ala, alpha-aminobutyric acid, Ile, Val, Leu, Lys, and Tyr, respectively, are not substrates. It was demonstrated that at least three N-terminal amino acid residues are absolutely essential for L-to-D-isomerization; furthermore, the third amino acid must be a Phe residue. None of the hexapeptides based on LLH, the first three residues of OvCNP, were substrates. A consistent 2-base mechanism is proposed for the isomerization; abstraction of a proton by 1 base is concomitant with delivery of a proton by the conjugate acid of a second base.


Subject(s)
Amino Acids/chemistry , Isomerases/chemistry , Peptides/chemistry , Platypus , Proteins/chemistry , Venoms/enzymology , Amino Acids/metabolism , Animals , Intercellular Signaling Peptides and Proteins , Isomerases/genetics , Isomerases/metabolism , Mutation , Peptides/genetics , Peptides/metabolism , Proteins/genetics , Proteins/metabolism , Stereoisomerism , Substrate Specificity/physiology , Venoms/genetics
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