TY - JOUR
T1 - Development of a new radioimmunoassay for human osteocalcin
T2 - Evidence for a midmolecule epitope
AU - Taylor, Arch K.
AU - Linkhart, Susan G.
AU - Mohan, Subburaman
AU - Baylink, David J.
N1 - Funding Information:
From the Jerry Pettis VA Hospital, Departments of Biochemistry, Physiology, and Medicine, Loma Linda University, Loma Linda, CA. Supported by the National institute of Biogerontology. Madison, WI; Veterans Administration Research Support; National Institutes of Health Grant No. AR31062; and Department of Medicine. Loma Linda University. Address reprint requests to Arch K. Taylor, PhD, Mineral Metabolism Unit. Research Service (151). Jerry L. Pettis Veterans Hospital, 11201 Benton St, Loma Linda, CA 92357. o 1988 by Grune & Stratton, Inc. 0026-0495/88/3709-0012$03.00/0
PY - 1988/9
Y1 - 1988/9
N2 - Osteocalcin is a vitamin K-dependent bone-specific protein that can be found circulating in the serum. The circulating levels of osteocalcin have been shown to be an index of bone turnover. Existing radioimmunoassays for osteocalcin have been shown to be specific for C-terminal epitopes, a region that is identical in the human and bovine osteocalcin. There are, however, five amino acids different in the N-terminal region of the molecule. We describe here an immunoassay for a midmolecule epitope of osteocalcin using osteocalcin purified from human femoral head bone powder. Antibody specificity was determined using tryptic digests and a synthetic fragment of human osteocalcin. This assay has only a partial crossreactivity with bovine osteocalcin. This is the first report of an assay against a midmolecular epitope of osteocalcin involving a region in which the human and bovine osteocalcins differ. Osteocalcin levels determined by this assay have a significant correlation with both the total serum alkaline phosphatase and the serum skeletal alkaline phosphatase levels in normal adult human serum and, to a greater degree, in sera of patients with conditions associated with increased bone turnover (Paget's disease, hyperparathyroidism, and newborn sera). These correlations are greater than those previously reported for C-terminal assays, suggesting the possibility that different regions of the molecule may elicit different information concerning bone turnover.
AB - Osteocalcin is a vitamin K-dependent bone-specific protein that can be found circulating in the serum. The circulating levels of osteocalcin have been shown to be an index of bone turnover. Existing radioimmunoassays for osteocalcin have been shown to be specific for C-terminal epitopes, a region that is identical in the human and bovine osteocalcin. There are, however, five amino acids different in the N-terminal region of the molecule. We describe here an immunoassay for a midmolecule epitope of osteocalcin using osteocalcin purified from human femoral head bone powder. Antibody specificity was determined using tryptic digests and a synthetic fragment of human osteocalcin. This assay has only a partial crossreactivity with bovine osteocalcin. This is the first report of an assay against a midmolecular epitope of osteocalcin involving a region in which the human and bovine osteocalcins differ. Osteocalcin levels determined by this assay have a significant correlation with both the total serum alkaline phosphatase and the serum skeletal alkaline phosphatase levels in normal adult human serum and, to a greater degree, in sera of patients with conditions associated with increased bone turnover (Paget's disease, hyperparathyroidism, and newborn sera). These correlations are greater than those previously reported for C-terminal assays, suggesting the possibility that different regions of the molecule may elicit different information concerning bone turnover.
UR - https://www.scopus.com/pages/publications/0023677689
UR - https://www.scopus.com/pages/publications/0023677689#tab=citedBy
U2 - 10.1016/0026-0495(88)90122-9
DO - 10.1016/0026-0495(88)90122-9
M3 - Article
C2 - 2458519
SN - 0026-0495
VL - 37
SP - 872
EP - 877
JO - Metabolism
JF - Metabolism
IS - 9
ER -