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Renal tubular epithelial cells express osteonectin in vivo and in vitro.

Osteonectin (SPARC, culture shock protein, BM-40) is a widely distributed glycoprotein which binds calcium and several extracellular matrix proteins, including interstitial collagens and thrombospondin, but whose physiologic role remains undefined. In the present studies, we have demonstrated that immunoreactive osteonectin is present in the distal cortical tubule and medullary tubules of murine kidney. We surveyed the renal epithelial cell lines LLC-PK1, MDCK, and OK for the expression of mRNA encoding osteonectin. We found that osteonectin mRNA is expressed by LLC-PK1 and OK cells but not by MDCK cells, as well as by adult kidney from several species. Calcitonin and vasopressin, agents which increase cAMP in these cells, were found to decrease steady-state osteonectin mRNA concentrations. We found that LLC-PK1 cells produced osteonectin protein, that the protein was localized to intracellular granules, and that the protein bound hydroxyapatite in vitro. Pulse-chase analysis revealed that osteonectin was secreted from the cell layer to the medium after a lag time of four to six hours and was secreted preferentially from the basolateral domain of the cell. The preferential secretion of the calcium-binding protein osteonectin from the renal epithelial cell is consistent with several possible functions, including a structural extracellular matrix protein, a participant in transepithelial ion transport, and an inhibitor of extracellular calcification.

Animals↗

Osteonectin mRNA: distribution in normal and transformed cells.

Overlapping cDNA clones encoding bovine osteonectin were isolated from a lambda gt11 expression library constructed from bovine bone cell mRNA. The longest clone, lambda On 17 (insert size 2.0 kb) was studied in detail. The clone was shown to encode osteonectin by hybrid select translation experiments and by DNA sequence analysis. Northern analysis of bone cell RNA showed the length of the osteonectin mRNA to be 2.0 kb. Osteonectin message was found in bone but not in soft tissue (liver and brain) preparations consistent with the distribution of the protein in these tissues. On the other hand, osteonectin message was observed in tendon, a tissue in which little or no osteonectin protein is found in vivo. Hybridization of osteonectin cDNA was detected in cells from a number of species including human, rat, mouse and chick. The level of osteonectin mRNA was drastically decreased in chick embryo fibroblasts transformed by Rous sarcoma virus.

Animals↗

Expression of osteonectin and matrix Gla protein in scleroderma patients with and without calcinosis.

OBJECTIVES: Our aim was to evaluate (i) whether the bone matrix proteins osteonectin and matrix gamma-carboxyglutamic acid protein (MGP) are up-regulated in skin biopsies from patients with systemic sclerosis (SSc) and (ii) whether there is differential expression between patients with and without dermal calcinosis, a distressing and debilitating complication of SSc. METHODS: Skin punch biopsies were taken from the forearms of 38 SSc patients with the limited cutaneous subtype of SSc [17 without calcinosis (lcSSc) and 21 with calcinosis (lcSScCal)] and from 11 healthy control subjects. Immunohistochemistry was performed with antibodies to osteonectin and MGP. Staining was assessed semiquantitatively in the microvascular endothelium and in dermal fibroblasts. The Kruskal-Wallis one-way ANOVA was used to compare the data between patient groups. RESULTS: Both lcSSc and lcSScCal groups showed a statistically significant increase in the percentage of microvessels with osteonectin-positive endothelial cells (EC) (especially the lcSScCal group), whereas lcSScCal alone showed an increase in the percentage of microvessels with MGP-positive EC when compared with controls. In both SSc groups, the percentage of osteonectin and MGP-stained fibroblasts was increased in the reticular dermis (for osteonectin this was more marked in the lcSScCal group). In the papillary dermis, the percentage of osteonectin-stained fibroblasts was increased in both SSc groups but the lcSScCal group alone had a higher percentage of MGP-stained fibroblasts. CONCLUSIONS: When compared with controls, protein expression of osteonectin and MGP was greater in SSc patients generally, and osteonectin expression was significantly higher in EC and fibroblasts of the lcSScCal patients than the lcSSc patients without calcinosis.

Adult↗

Osteopenia and decreased bone formation in osteonectin-deficient mice.

Bone continuously remodels in response to mechanical and physiological stresses, allowing vertebrates to renew bone as adults. Bone remodeling consists of the cycled synthesis and resorption of collagenous and noncollagenous extracellular matrix proteins, and an imbalance in this process can lead to disease states such as osteoporosis, or more rarely, osteopetrosis. There is evidence that the extracellular matrix glycoprotein osteonectin or secreted protein acidic and rich in cysteine (BM-40) may be important in bone remodeling. Osteonectin is abundant in bone and is expressed in areas of active remodeling outside the skeleton. In vitro studies indicate that osteonectin can bind collagen and regulate angiogenesis, metalloproteinase expression, cell proliferation, and cell-matrix interactions. In some osteopenic states, such as osteogenesis imperfecta and selected animal models for bone fragility, osteonectin expression is decreased. To determine the function of osteonectin in bone, we used contact x-ray, histomorphometry, and Northern blot analysis to characterize the skeletal phenotype of osteonectin-null mice. We found that osteonectin-null mice have decreased bone formation and decreased osteoblast and osteoclast surface and number, leading to decreased bone remodeling with a negative bone balance and causing profound osteopenia. These data indicate that osteonectin supports bone remodeling and the maintenance of bone mass in vertebrates.

Animals↗

Stromal osteonectin overexpression is associated with poor outcome in patients with ampullary cancer.

BACKGROUND: Osteonectin has been suggested to be important in the progression of pancreatic cancer but has not been correlated with survival. We determined the osteonectin expression and its influence on survival in patients with ampullary carcinoma. METHODS: Tissue microarrays were constructed from the tumors of 56 patients with ampullary cancer undergoing pancreaticoduodenectomy. Immunohistochemical staining for osteonectin was undertaken and compared with staining in chronic pancreatitis (n = 13) and normal pancreas (n = 19). Survival curves were created by the Kaplan-Meier method and compared by log rank analysis. Median follow-up for all living patients with ampullary cancer was 69.6 months. RESULTS: Osteonectin was significantly (P < .05, Fisher's exact test) overexpressed in the stroma of ampullary cancers (90%) relative to chronic pancreatitis (62%) and normal pancreas (0%). Tumors expressing osteonectin were more likely to have nodal metastases than those lacking osteonectin expression (48% vs. 0%, P = .06, Fisher's exact test) and showed decreased survival. Node-negative status, pylorus preservation at the time of pancreaticoduodenectomy, and lack of osteonectin expression were predictors of prolonged survival by multivariate analysis. CONCLUSIONS: Although the importance of tumor-stroma interactions in periampullary cancers is not fully understood, our data suggest that osteonectin is an integral stromal element in ampullary cancers, and its overexpression is associated with decreased survival.

Adenocarcinoma↗

Human platelets contain and secrete osteonectin, a major protein of mineralized bone.

We have developed a solid-phase competitive radioimmunoassay for human osteonectin, using a monoclonal antibody to bovine osteonectin. The assay is both specific and sensitive, being capable of measuring as little as 10 ng of osteonectin. Osteonectin measurements in parallel serum and plasma samples obtained from healthy individuals showed the plasma level to be 0.9 microgram/ml, while that of serum was 3 times higher, 2.6 micrograms/ml. Radioimmunoassay of blood cells indicated that platelets contain osteonectin at 1.9 micrograms per 2 X 10(8) cells. Further, the protein is released after thrombin stimulation of these cells. Immunoblot analyses of washed pelleted human platelets resulted in the identification of a single immunoreactive species. The molecular weight of this immunoreactive species was identical to that obtained for purified bovine bone osteonectin. The isolation procedure developed for bovine bone osteonectin was applied to human platelets and bone. The individual steps of the isolation procedure yielded identical profiles of immunoreactive material for bone and platelet extracts. Results of reverse-phase high-pressure liquid chromatography of bone- and platelet-derived osteonectin are consistent with the conclusion that the two sources yield the identical protein.

Blood Platelets↗

Osteonectin transcript and metastatic behavior in v-Ki-ras transformed fibroblasts.

Osteonectin is one of the major non-collagenous proteins of bone. However, its transcript has been found in many soft, extracellular matrix-producing tissues; an osteonectin-related protein was detected in tumor basement membrane. We have investigated the expression of osteonectin gene in fresh BALB/c fibroblasts transformed by v-Ki-ras. Transformed cells exhibited lower levels of RNA as compared with normal fibroblasts. The transformed cells were cloned after in vivo tumorigenic assay, and 4 clones were analyzed for osteonectin expression by Northern blots. Two of them were selected for high or low osteonectin expression and tested in vivo in spontaneous and artificial metastasis assays. High osteonectin expression was correlated with high lung colonization. When 10(5) cells were injected i.v., median colony value was 55 and 20 in higher expressor vs. lower expressor respectively (p less than 0.005). Spontaneous metastasis indicates a possible reverse correlation. Our data align osteonectin with other matrix-components and adhesion molecules in affecting potential metastatic spreading of transformed cells.

Animals↗

Insulinlike growth factor 1 regulates mRNA levels of osteonectin and pro-alpha 1(I)-collagen in clonal preosteoblastic calvarial cells.

A nontransformed rat clonal cell line (UMR-201) with phenotypic characteristics of osteoblastic precursor cells was found to respond to insulinlike growth factor 1 (IGF-1) by increased osteonectin and pro-alpha 1(I)-collagen mRNA expression. Cells were treated for 24 h with insulin, growth hormone, or IGF-1 to study the regulation of messenger RNA for osteonectin and pro-alpha 1(I)-collagen using Northern blot hybridization. UMR-201 cells possess specific high-affinity receptors for growth hormone, although there were no significant effects of growth hormone (10(-9)-10(-7) M) or insulin (10(-9)-10(-6) M) on mRNA species for osteonectin or pro-alpha 1(I)-collagen. However, IGF-1 increased both mRNA species from a concentration of 10(-9) M. The effect on osteonectin mRNA expression was likely due to increased transcription; when 5' flanking osteonectin (ON) genomic fragments were linked to the bacterial reporter gene chloramphenicol acetyltransferase (CAT) and introduced by transfection into UMR-201 cells, the transcriptional activity of the ON-CAT construct was increased 235 and 270% by 10(-8) and 10(-7) M IGF-1, respectively. In contrast, growth hormone did not change the transcriptional activity of the ON-CAT construct. In confirmation of other work, transforming growth factor beta (TGF-beta, 0.1-2.5 ng/ml) increased mRNA for osteonectin and pro-alpha 1(I)-collagen in a dose-dependent manner. Transforming growth factor alpha (TGF-alpha) at 0.1-10 ng/ml had no consistent effects in repeated experiments on osteonectin and pro-alpha 1(I)-collagen mRNA.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Role of N-linked glycosylation in human osteonectin. Effect of carbohydrate removal by N-glycanase and site-directed mutagenesis on structure and binding of type V collagen.

In this study we demonstrate that the binding region of recombinant truncated human bone osteonectin (tHON) for type V collagen resides between amino acids 1 and 146. After removal of oligosaccharide chain structures from tHON, bovine bone osteonectin (BBON) and human platelet osteonectin (HPON) by N-glycanase, their ability to bind to type V collagen is increased, and HPON affinity to collagen V is the same as that of BBON. These data suggest that glycosylation of osteonectin has a direct or regulatory effect on osteonectin binding to collagen V and that the increase in tHON binding upon removal of carbohydrate is the result of a loss of a down-regulation site or direct interference of the carbohydrate at the binding site. To determine the specific role of each N-glycosylation site in tHON, Asn71 and Asn99 were mutated to Gln (N71Q, N99Q) and Thr73 and Thr101 mutated to Ala (T73A, T101A) to selectively inhibit oligosaccharide attachment. The binding affinity of N99Q and T101Q to collagen V is markedly increased over wild-type tHON, whereas N71Q and T73A are the same as wild-type tHON. The doubled mutant (N71,99Q) binds identically to collagen V as N99Q and T101A. These data suggest that only the position 99 glycosylation site (Asn99-X-Thr101) in tHON is important in the reduction of binding of osteonectin to collagen V. Consistent with the binding data is the observation that both the N71Q and T73A mutant proteins migrate on SDS-polyacrylamide gel electrophoresis gels identically to wild-type tHON, suggesting that there is little or no N-glycosylation of residue 71 in wild-type osteonectin.

Amidohydrolases↗

Basic fibroblast growth factor destabilizes osteonectin mRNA in osteoblasts.

Osteonectin (secreted protein acidic and rich in cysteine, 40-kDa basement membrane) is a glycoprotein abundantly expressed in bone and in other tissues undergoing active remodeling. Fibroblast growth factors (FGFs) are important in skeletal development and fracture repair, events associated with extracellular matrix remodeling. We used the murine osteoblastic cell line MC3T3 to determine whether basic FGF (bFGF) regulates osteonectin expression in bone. Northern blot analysis showed that bFGF decreased osteonectin transcripts in a dose- and time-dependent manner. This regulation was independent of the mitogenic effect of bFGF but was dependent on new protein synthesis. Immunoprecipitation of [35S]methionine-cysteine osteoblast-conditioned medium and cell layer proteins showed that bFGF decreased osteonectin synthesis. Nuclear runoff assays failed to reveal regulation of osteonectin gene transcription by bFGF. However, bFGF dramatically decreased the stability of osteonectin mRNA in transcriptionally arrested osteoblasts. This destabilization of osteonectin mRNA may be one means by which bFGF regulates extracellular matrix remodeling.

Animals↗

Infrared analysis of the mineral and matrix in bones of osteonectin-null mice and their wildtype controls.

Osteonectin function in bone was investigated by infrared analysis of bones from osteonectin-null (KO) and wildtype mice (four each at 11, 17, and 36 weeks). An increase in mineral content and crystallinity in newly formed KO bone and collagen maturity at all sites was found using FTIR microspectroscopy and imaging; consistent with osteonectin's postulated role in regulating bone formation and remodeling. Mineral and matrix properties of tibias of osteonectin-null mice and their age- and background-matched wildtype controls were compared using Fourier-transform infrared microspectroscopy (FTIRM) and infrared imaging (FTIRI) at 10- and 7-mm spatial resolution, respectively. The bones came from animals that were 11, 17, and 36 weeks of age. Individual FTIRM spectra were acquired from 20 x 20 microm areas, whereas 4096 simultaneous FTIRI spectra were acquired from 400 x 400 microm areas. The FTIRM data for mineral-to-matrix, mineral crystallinity, and collagen maturity were highly correlated with the FTIRI data in similar regions. In general, the osteonectin-null mice bones had higher mineral contents and greater crystallinity (crystal size and perfection) than the age-matched wildtype controls. Specifically, the mineral content of the newly forming periosteal bone was increased in the osteonectin-null mice; the crystallinity of the cortical bone was decreased in all but the oldest animals, relative to the wildtype. The most significant finding, however, was increased collagen maturity in both the cortical and trabecular bone of the osteonectin-null mice. These spectroscopic data are consistent with a mechanism of decreased bone formation and remodeling.

Animals↗

Isolation and characterization of native adult osteonectin.

Noncollagenous bovine bone proteins were obtained from EDTA-solubilized extracts of adult bovine bone in the absence of denaturants. Native osteonectin was isolated from the noncollagenous bone proteins by ion-exchange chromatography using DEAE-Sephadex A-50 and DEAE-Sephadex A-25, followed by gel filtration on Sephadex G-100. Comparison of the physical and chemical properties (i.e. electrophoric mobility, amino acid composition and pI) of this protein with those reported by Termine et al. (Termine, J.D., Belcourt, A.B., Conn, K.M., and Kleinman, H.K. (1981) J. Biol. Chem. 256, 10403-10408) indicate that this protein is osteonectin. Sedimentation equilibrium analyses in the presence of 6 M guandinium chloride, 10 mM Ca2+, 10 mM EDTA, or 0.15 M NaCl all yielded a molecular weight of 29,100 +/- 900. 125I-Osteonectin underwent saturable and exchangeable binding to hydroxyapatite and calf skin collagen. Eleven mg of 125I-osteonectin bound to 1.0 g of hydroxyapatite with a Kd of 8 X 10(-8) M. The intrinsic fluorescence of bovine osteonectin was partially quenched when micromolar Ca2+ was added, indicating a high affinity Ca2+ interaction. Native osteonectin was found to reduce the rate of hydroxyapatite crystal seeded growth by 50% (1 IU) at a concentration of 1.6 X 10(-7) M at pH 7.4, 37 degrees C in 0.15 M NaCl. This makes osteonectin one of the most potent inhibitors of hydroxyapatite formation presently known and more than 5 times as effective as bone Gla protein (1 IU = 8 X 10(-7) M).

Amino Acids↗

Osteonectin (SPARC) expression in human liver and in cultured human liver myofibroblasts.

Osteonectin/SPARC is a glycoprotein involved in the regulation of cell shape, adhesion, migration, and proliferation. It also has complex effects on extracellular matrix synthesis and turnover. We found that osteonectin mRNA was very abundant in a human liver myofibroblast library. Using Northern and Western blot, immunoprecipitation, and radioimmunoassay, we found that cultured liver myofibroblasts actively secreted osteonectin. Myofibroblasts are very rare in normal liver but proliferate during liver fibrosis where they synthesize extracellular matrix components. Thus, we studied the distribution of osteonectin in normal and fibrotic human liver using in situ hybridization. Osteonectin mRNA expression was weak in normal liver but very high in fibrotic liver within fibrous septae and scattered sinusoidal cells. Serial sectioning and double staining experiments with an antibody to smooth muscle alpha-actin showed that osteonectin transcripts were mostly co-localized with myofibroblasts. In conclusion, osteonectin is highly expressed in human liver myofibroblasts in culture as well as in human liver fibrosis in vivo. The many biological properties of osteonectin make it a candidate effector of human liver fibrogenesis.

Actins↗

Radioimmunoassay for osteonectin. Concentrations in bone, nonmineralized tissues, and blood.

We describe a double antibody radioimmunoassay for the bone protein osteonectin using a polyclonal antibody raised against bovine fetal bone osteonectin. This assay, which cross-reacts with human osteonectin, was used to explore the tissue distribution of the protein. Osteonectin was detected in extracts of nonmineralized tissues from bovine fetuses, with concentrations ranging from 10 ng/100 micrograms of proteins in the lens to about 80 ng/100 micrograms in collagen-rich tissues (e.g., tendon), which represents respectively from 0.01% to 0.5% of the concentrations found in bone extracts. Osteonectin is thus a widespread component of extracellular matrix, although its concentration is minute in tissues other than bone and dentin. Adult human serum contains 200 ng/ml of osteonectin and values obtained in plasma prepared without platelet activation are about one-third of those in matched sera. This platelet-independent fraction might be used as a marker for bone metabolism.

Amino Acids↗

Cloning of a fragment of the osteonectin gene from goldfish, Carassius auratus: its expression and potential regulation by estrogen.

During reproduction, female teleost fish display increased plasma estrogen and greatly increased total plasma calcium concentrations; the main source of this calcium seems to be the scale. Osteonectin, a collagen-binding glycoprotein, is a major noncollagenous constituent of mammalian bone and is a product mainly of the osteoblasts. RT-PCT has been applied to clone and sequence part of the osteonectin gene from the goldfish, Carassius auratus. The use of a goldfish scale cell line (GFS) and a specific probe to goldfish osteonectin mRNA has allowed the study of the potential effects of estrogen and other calcitropic hormones on the cells derived from the scales. Osteonectin mRNA was detected in teleost bone, scale, and GFS cells by Northern blot analysis, hybridising to a transcript of approximately 1.6 kb. Expression of osteonectin mRNA was markedly down-regulated by 17beta-estradiol (10(-8) to 10(-11) M) in a dose-dependent fashion but was unaffected by calcitriol, TGFbeta, IL-1beta, calcitonin, and PTHrP. Down-regulation of osteonectin by estrogen is further evidence that estrogen participates in calcium homeostasis during vitellogenesis, acting directly on the cells responsible for matrix and mineral fluxes in scales.

Amino Acid Sequence↗

Immunohistological demonstration of osteonectin in normal bone tissue and in bone tumors.

Osteonectin is a noncollagenous protein of bone which is believed to be bone specific, since its concentration in bone tissue is 500- to 1000-fold higher than in other connective tissues. Immunohistochemistry with polyclonal osteonectin antibodies shows a highly specific marking of actively matrix-producing osteoblasts. Osteonectin is involved in the process of osteoid maturation and mineralization. Immunohistochemistry of osteonectin antibodies proved to be a valuable tool in the diagnosis of bone tumors. Since osteonectin production seems to be an early event in the differentiation of cells of the osteoblastic lineage, immunoreactivity of osteonectin antibodies is observed in types of osteosarcoma lacking osteoid production (anaplastic, fibroblastic) while corresponding types of soft tissue tumors remain unstained.

Bone Neoplasms↗

The role of osteonectin in human tooth development: an immunohistological study.

We investigated immunohistologically 160 teeth and dental germs in various stages of tooth development taken from human individuals (13th week of pregnancy to the 24th year of life) to study the osteonectin expression in dental hard tissue. In the course of dentinogenesis, the predentin, the odontoblasts, and their cell processes show a positive osteonectin staining reaction. During cementogenesis, osteonectin is synthesized by cement-producing fibroblasts, cementoblasts, and cementocytes. The expression of osteonectin during dentinogenesis and cementogenesis is closely related to the development of the respective calcified tissue. All cells of the inner and outer enamel epithelium, the cells of the stratum reticulare and stratum intermedium, the ameloblasts, and the enamel substance are osteonectin negative, just as dentin and cement are. The results of this study indicate one important physiological role of osteonectin as a protein associated with the formation of collagen containing mineralizing tissues like human bone, as well as human dentin and cement.

Adolescent↗

Osteonectin gene expression in fibrotic liver.

Osteonectin is an extracellular matrix (ECM) protein which is secreted by various cell types, and regulates tissue remodeling and cell proliferation. In the present study, we have examined the expression of osteonectin in fibrotic liver. Osteonectin transcripts were undetectable in normal liver, however, the abundant expression of the osteonectin gene was detected in fibrotic liver. The transcripts of osteonectin were only detected in hepatic lipocytes and the number of lipocytes was increased in fibrotic liver. These results suggested that in fibrotic liver, enhanced osteonectin expression may play an important role in liver fibrosis.

Animals↗