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D Goltzman

Publications and source records attributed to D Goltzman.

At least 73 records · Page 4Linked to original sources

Expression and action of parathyroid hormone-related peptide in human cervical epithelial cells.

Parathyroid hormone-related peptide (PTHRP) expression and activity were analyzed in normal human ectocervical keratinocytes (HCX) and keratinocytes immortalized by transfection with human papillomavirus (HPV) types 16 and 18 DNAs. In normal cells, trans-retinoic acid (RA) and 2.0 mM Ca2+ significantly stimulated PTHRP mRNA expression and secretion and led to a significant reduction in the rate of proliferation. In contrast, the basal level of PTHRP production decreased sharply in confluent HCX, and induction by Ca2+ or exogenous growth factors was reduced or lost. After stable transfection with HPV16 and HPV18 DNAs, we observed a sharp decrease of PTHRP production in high-passage poorly differentiated HCX. Finally, addition of exogenous PTHRP-(1-141) inhibited proliferation of both normal cells and low-passage well-differentiated HPV16 immortalized cells. High-passage poorly differentiated cells were refractory to PTHRP. These results demonstrate that PTHRP production varies greatly with the degree of cell proliferation and differentiation and suggest that this peptide acts as an autocrine negative growth regulator for cervical keratinocytes.

Calcium↗

Increased PTHRP production by a tyrosine kinase oncogene, Tpr-Met: role of the Ras signaling pathway.

We have used the Tpr-Met oncogene as a model to examine signaling pathways of growth factors and tyrosine kinase oncogenes that can increase parathyroid hormone-related peptide (PTHRP) production. PTHRP production in Tpr-Met transfected cells, when assessed by Northern blot analysis and radioimmunoassay, was increased four- to eightfold. Treatment of these cells with the transcriptional inhibitor actinomycin D and nuclear run-off assays showed that the major cause of increased PTHRP mRNA was enhanced gene transcription. To analyze the intracellular signaling molecules involved in PTHRP production, stable cell lines expressing a Tyr489 Phe mutant of the Tpr-Met oncoprotein were examined. The mutant fails to activate phosphatidylinositol (PI)-3 kinase or associate with the Grb-2 adaptor protein and caused a significant reduction in PTHRP production. Treatment of wild-type Tpr-Met transfected cells with wortmannin, a PI-3 kinase inhibitor, had no effect on PTHRP production; however, treatment of these cells with lovastatin, an inhibitor of p21ran isoprenylation, significantly reduced PTHRP expression. These results show that PTHRP is a downsteam target of the Tpr-Met oncogene and indicate that the PTHRP stimulating activity is mediated via the Ras signaling pathway.

1-Phosphatidylinositol 4-Kinase↗

Programmed cell death of chondrocytes and aberrant chondrogenesis in mice homozygous for parathyroid hormone-related peptide gene deletion.

In previous work we showed that the chondrodysplastic phenotype of mice homozygous for a null mutation of the PTH-related peptide (PTHrP) gene was due in part to reduced proliferation and aberrant differentiation of growth plate chondrocytes. In the present study we have extended those observations by examining chondrocytes for evidence of PTH/PTHrP receptor expression, proliferation, and programmed cell death. Receptor messenger RNA and protein were expressed in chondrocytes in the resting and proliferative zones of both wild-type and mutant mice. In normal animals, expression was abundant in the area of transition between proliferative and hypertrophic chondrocytes and absent from cells in the lower hypertrophic region. On the other hand, the hypertrophic zone in mutant mice contained nonhypertrophic chondrocytes, which exhibited characteristics of proliferating cells, including PTH/PTHrP receptor expression, [3H]thymidine incorporation, and expression of proliferating cell nuclear antigen. In contrast to the situation in normal animals, some cells adjacent to the zone of vascular invasion in mutant growth plates showed biochemical and morphological evidence of programmed cell death. In addition to these alterations in the maturation of growth plate chondrocytes, homozygous mutants demonstrated signs of aberrant differentiation of periosteal precursor cells. In some specimens, clusters of chondrocytes embedded in a cartilaginous matrix were observed between the layers of periosteal osteoblasts and the bony collar in the sterna and tibiae of mice homozygous for a null mutation of the PTHrP gene. Taken together, these observations indicate that PTHrP plays a pivotal role in the orderly progression of chondrocytes through stages of proliferation, differentiation, and programmed cell death in the epiphyseal growth plate and may also facilitate the commitment of precursors to cells of the chondrocytic or osteoblastic lineages.

Animals↗

Role of the RET proto-oncogene in sporadic hyperparathyroidism and in hyperparathyroidism of multiple endocrine neoplasia type 2.

Parathyroid tumors occur either sporadically or as part of inherited syndromes such as multiple endocrine neoplasia (MEN) types 2A and 2B. The development of both of these familial syndromes has been related to specific germline gain-of-function mutations predominantly in exons 10 and 11 (MEN 2A) and 16 (MEN 2B) of the RET proto-oncogene. The same mutations have also been implicated in the pathogenesis of sporadic medullary thyroid carcinoma and sporadic pheochromocytoma. The RET mutations are thought to have a transforming effect only in cells of neural crest origin such as thyroid parafollicular (C-cells) and adrenal chromaffin cells, which normally express the RET proto-oncogene. Expression of RET messenger RNA has not yet been studied in the parathyroid, however, we demonstrate in this study by a sensitive, semiquantitative RT-PCR technique and in situ hybridization, that RET is expressed in MEN 2A parathyroid tumors and in sporadic adenomas. Although DNA from a parathyroid tumor of a MEN 2A patient displayed an expected mutation, none of the previously described MEN 2A or 2B mutations were found in DNA of 34 sporadic adenomas. Our data suggest that parathyroid disease is an integral part of the MEN 2A syndrome, but that MEN 2 mutations in RET rarely play a part in the pathogenesis of sporadic parathyroid tumors.

Adenoma↗

Amplification of the parathyroid hormone-related peptide gene in a colonic carcinoma.

PTH-related peptide (PTHrP) is the major factor responsible for humoral hypercalcemia of malignancy. This paraneoplastic syndrome has been described in association with a number of malignancies, but rarely with carcinoma of the colon. Moreover, little is known about the molecular mechanisms that underlie PTHrP overexpression in tumors. Here we report a patient who presented with hypercalcemia 6 months after resection of a neuroendocrine colonic carcinoma (tumor I). At the time of admission, intact PTH was decreased, circulating PTHrP levels were elevated, and there was tumor recurrence (tumor II). Immunohistochemical staining of paraffin-embedded sections from tumor I did not stain for PTHrP, whereas cells from tumor II stained intensely positive. Southern blot analysis and differential PCR of genomic DNAs from tumor specimens and the patient's leukocytes demonstrated amplification of the PTHrP gene in tumor II. Moreover, staining for p53 protein was evident in tumor II, but not in tumor I, consistent with the presence of a mutant form of p53 and associated loss of tumor suppressor function in the recurrent tumor. PTHrP gene amplification was also detected in one of five other tumors associated with humoral hypercalcemia of malignancy. These findings suggest that a potential mechanism contributing to PTHrP overexpression in malignancies is gene amplification, which could arise from increased genomic instability associated with the progressive stages of neoplasia.

Aged↗

Inhibition of processing of parathyroid hormone-related peptide by anti-sense furin: effect in vitro and in vivo on rat Leydig (H-500) tumor cells.

To attain full biological activity, the precursor pro-parathyroid hormone-related peptide (ProPTHRP) must be converted to the mature peptide PTHRP. We have examined the effect of inhibiting expression of the pro-hormone convertase furin in H-500 rat Leydig tumor cells on PTHRP production and action in vitro and in vivo. H-500 Leydig tumor cells were stably transfected with a mammalian expression plasmid containing furin cDNA in an anti-sense orientation. This resulted in inhibition of endogenous furin mRNA expression and of protein production as assessed by immunocytochemistry. These experimental cells secreted extended NH2-terminal PTHRP forms with reduced adenylate cyclase-stimulating activity. This was associated with a marked decrease in the proliferation of these tumor cells in vitro. Transfected and control cells were then implanted into male Fischer rats. Animals implanted with control cells became hypercalcemic. In contrast, animals implanted with experimental cells maintained near normal levels of plasma calcium. Experimental cells inoculated in vivo developed into tumors of significantly decreased volume compared to control cells and animal survival time was prolonged. Our results indicate that alteration of the processing of PTHRP can diminish the hypercalcemic endocrine actions of PTHRP and can reduce autocrine/paracrine effects of PTHRP on tumor cell growth both in vitro and in vivo. Furin may also exert a broader role in processing other factors required for tumor proliferation. Consequently, anti-sense modulation of furin activity may be a potential modality for understanding the mechanism of neoplastic growth and progression.

Animals↗

Parathyroid hormone and parathyroid hormone-related peptide activate the Na+/H+ exchanger NHE-1 isoform in osteoblastic cells (UMR-106) via a cAMP-dependent pathway.

Parathyroid hormone (PTH) and parathyroid hormone-related peptide (PTHRP) regulate Na+/H+ exchanger activity in osteoblastic cells, although the signaling components involved are not precisely defined. Since these peptide hormones can stimulate production of diverse second messengers (i.e. cAMP and diacylglycerol) that activate protein kinase A (PKA) and protein kinase C (PKC) in target cells, it is conceivable that either one or both of these pathways can participate in modulating exchanger activity. To discriminate among these possibilities, a series of synthetic PTH and PTHRP fragments were used that stimulate adenylate cyclase and/or PKC. In the osteoblastic cell line UMR-106, human PTH(1-34) and PTHRP(1-34) augmented adenylate cyclase activity, whereas PTH(3-34), PTH(28-42), and PTH(28-48) had no effect. Nevertheless, all these peptide fragments were found to enhance PKC translocation from the cytosol to the membrane in a dose-dependent (10(-11) to 10(-7) M) manner. PTHRP(1-16), a biologically inert fragment, was incapable of influencing either the PKA or PKC pathway. PTH(1-34) and PTHRP(1-34), but not PTH(3-34), PTH(28-42), PTH(28-48), or PTHRP(1-16), elevated Na+/H+ exchanger activity, implicating cAMP as the transducing signal. In accordance with this observation, forskolin (10 microM), which directly stimulates adenylate cyclase, also activated Na+/H+ exchanger activity. The involvement of PKA was verified when the highly specific PKA inhibitor, H-89, completely abolished the stimulatory effect of PTH(1-34) and forskolin on Na+/H+ exchange. In addition, Northern blot analysis revealed the presence of only the NHE-1 isoform of the Na+/H+ exchanger in UMR-106 cells. In summary, these results indicated that PTH and PTHRP activate the Na+/H+ exchanger NHE-1 isoform in osteoblastic UMR-106 cells exclusively via a cAMP-dependent pathway.

Animals↗

Parathyroid hormone and parathyroid hormone-related peptide inhibit the apical Na+/H+ exchanger NHE-3 isoform in renal cells (OK) via a dual signaling cascade involving protein kinase A and C.

Parathyroid hormone (PTH) and parathyroid hormone-related peptide (PTHRP) interact with a common G protein-coupled receptor and stimulate production of diverse second messengers (i.e. cAMP, diacylglycerol, and inositol 1,4,5-trisphosphate) that varies depending on the target cell. In renal proximal tubule OK cells, PTH inhibits the activity of the apical membrane Na+/H+ exchanger, although it is unclear whether the signal is transmitted through protein kinase A (PKA) and/or protein kinase C (PKC). To delineate the signaling circuitry, a series of synthetic PTH and PTHRP fragments were used that stimulate the adenylate cyclase-cAMP-PKA and/or phospholipase C-diacylglycerol-PKC pathways. Human PTH-(1-34) and PTHRP-(1-34) stimulated adenylate cyclase and PKC activity, whereas the PTH analogues, PTH-(3-34), PTH-(28-42), and PTH-(28-48), selectively enhanced only PKC activity. However, each peptide fragment inhibited Na+/H+ exchanger activity by 40-50%, suggesting that PKC and possibly PKA were capable of transducing the PTH/PTHRP signal to the transporter. This was corroborated when forskolin and phorbol 12-myristate 13-acetate (PMA), direct agonists of adenylate cyclase and PKC, respectively, both inhibited the Na+/H+ exchanger. The specific PKA antagonist, H-89, abolished the forskolin-mediated suppression of Na+/H+ exchanger activity, but did not prevent the inhibitory effects of PTH-(1-34) or PMA. In comparison, the potent PKC inhibitor, chelerythrine chloride, prevented the inhibition of Na+/H+ exchanger activity mediated by PTH-(28-48) and PMA but did not avert the negative regulation caused by PTH-(1-34) or forskolin. However, inhibition of both PKA and PKC prevented PTH-(1-34)-mediated suppression of Na+/H+ exchanger activity, indicating that PTH-(1-34) acted through both signaling pathways. In addition, Northern blot analysis revealed the presence of only the NHE-3 isoform of the Na+/H+ exchanger in OK cells. In summary, these results demonstrated that NHE-3 is expressed in OK cells and that activation of the PTH receptor can stimulate both the PKA and PKC pathways, each of which can independently lead to inhibition of NHE-3 activity.

Amino Acid Sequence↗

Gene expression of epimorphin in rat incisor ameloblasts.

Epimorphin has been recently identified as an important factor in the morphogenesis of epithelial cells. A cDNA encoding epimorphin from skin of newborn mice was cloned by the polymerase chain-reaction technique before the preparation of digoxigenin-labelled cRNA probes. In situ hybridization of longitudinal sections of rat incisors revealed a distinct pattern of expression of epimorphin mRNA in the ameloblast layer. Epimorphin mRNA was detected from the presecretory stage up to the beginning of the maturation stage of amelogenesis. With the identification of this expression by epithelial-derived cells, i.e. ameloblasts, it is thought likely that epimorphin is one of the factors that modulate the differentiation cascade of ameloblasts in the course of amelogenesis.

Ameloblasts↗

Immunoreactive parathyroid hormone-related protein: its association with preterm labor.

OBJECTIVE: Parathyroid hormone-related protein (PTHrP) is a 141 amino acid protein which contains a 1-36 N-terminal domain resembling parathyroid hormone which has smooth muscle relaxant activity and a mid (67-86) domain which reportedly alters placental calcium transport. Using specific antibodies to these regions of PTHrP, the objective of this study was to determine changes in the levels and localization of the peptides in placenta and membranes that might be indicative of their biological activity and role during term and preterm labor. STUDY DESIGN: Placenta and fetal membranes were collected from patients with preterm delivery (PTL) (n = 16), term cesarean section in the absence of labor (n = 10) and term vaginal delivery (n = 5). Immunohistochemistry was performed with specific antisera visualized by the avidin-biotin peroxidase method and the staining intensity was quantified with an image analysis system MCID. RESULTS: Immunoreactive (ir)-PTHrP(1-34) and ir-PTHrP(67-86) were localized to the amnionic epithelium chorionic trophoblasts, decidual cells and placental syncytiotrophoblast. Intense immunostaining was observed for ir-PTHrP(67-86) but not for ir-PTHrP(1-34) in the endothelial lining of the villous capillaries. Ir-PTHrP(1-34) staining was lower in placenta and fetal membranes of PTL patients compared with term cesarean section in the absence of labor (P < 0.05 Mann-Whitney test). In contrast, there was no difference in ir-PTHrP [67-86] staining intensity between delivery categories. CONCLUSION: These results showing differential localization of PTHrP(1-34) and PTHrP(67-86) suggest cell specific processing of PTHrP precursor in the human placenta. Moreover, the changes in ir-PTHrP(1-34) but not ir-PTHr(67-86) with labor are indicative of a particular role for this peptide in the delivery process.

Amnion↗

Nucleolar localization of parathyroid hormone-related peptide enhances survival of chondrocytes under conditions that promote apoptotic cell death.

Parathyroid hormone-related peptide (PTHrP) is a mediator of cellular growth and differentiation as well as a cause of malignancy-induced hypercalcemia. Most of the actions of PTHrP have been attributed to its interaction with a specific cell surface receptor that binds the N-terminal domain of the protein. Here we present evidence that PTHrP promotes some of its cellular effects by translocating to the nucleolus. Localization of transiently expressed PTHrP to the nucleolus was dependent on the presence of a highly basic region at the carboxyl terminus of the molecule that bears homology to nucleolar targeting sequences identified within human retroviral (human immunodeficiency virus type 1 and human T-cell leukemia virus type 1) regulatory proteins. Endogenous PTHrP also localized to the nucleolus in osseous cells in vitro and in vivo. Moreover, expression of PTHrP in chondrocytic cells (CFK2) delayed apoptosis induced by serum deprivation, and this effect depended on the presence of an intact nucleolar targeting signal. The present findings demonstrate a unique intracellular mode of PTHrP action and a novel mechanism by which this peptide growth factor may modulate programmed cell death.

Amino Acid Sequence↗

Processing of pro-PTHRP by the prohormone convertase, furin: effect on biological activity.

We have examined the conversion of parathyroid hormone-related peptide (PTHRP) from its NH2-terminally extended precursor pro-PTHRP. Within pro-PTHRP, an amino acid sequence exists that can serve as a substrate for the prohormone convertase, furin. To evaluate the potential role of furin in processing of this entity, we expressed pro-PTHRP in COS-7 cells, which normally produce this enzyme. Transiently transfected COS-7 cells secreted high levels of PTHRP into conditioned culture medium. Cotransfection of these cells with antisense furin cDNA resulted in marked inhibition of furin mRNA expression and secretion of an NH2-terminal fragment of pro-PTHRP, which comigrated with synthetic pro-PTHRP-(-12-->+36) on gel-permeation high-pressure liquid chromatography. In an adenylate cyclase bioassay, condition medium containing this fragment and synthetic pro-PTHRP-(-12-->+36) both exhibited lower potency than synthetic PTHRP-(1-36) and conditioned medium containing PTHRP produced by COS-7 cells in the absence of antisense furin. These results demonstrate the capacity of furin to convert pro-PTHRP to a more active product and suggest a role for this enzyme in the normal intracellular processing of this hormone.

Amino Acid Sequence↗

A compilation of partial sequences of randomly selected cDNA clones from the rat incisor.

The formation of tooth organs is regulated by a series of developmental programs. We have initiated a genome project with the ultimate goal of identifying novel genes important for tooth development. As an initial approach, we constructed a unidirectional cDNA library from the non-calcified portion of incisors of 3- to 4-week-old rats, sequenced cDNA clones, and classified their sequences by homology search through the GenBank data base and the PIR protein data base. Here, we report partial DNA sequences obtained by automated DNA sequencing on 400 cDNA clones randomly selected from the library. Of the sequences determined, 51% represented sequences of new genes that were not related to any previously reported gene. Twenty-six percent of the clones strongly matched genes and proteins in the data bases, including amelogenin, alpha 1(I) and alpha 2(I) collagen chains, osteonectin, and decorin. Nine percent of clones revealed partial sequence homology to known genes such as transcription factors and cell surface receptors. A significant number of the previously identified genes were expressed redundantly and were found to encode extracellular matrix proteins. Identification and cataloging of cDNA clones in these tissues are the first step toward identification of markers expressed in a tissue- or stage-specific manner, as well as the genetic linkage study of tooth anomalies. Further characterization of the clones described in this paper should lead to the discovery of novel genes important for tooth development.

Amelogenesis↗

Regulation in vivo of the growth of Leydig cell tumors by antisense ribonucleic acid for parathyroid hormone-related peptide.

PTH-related peptide (PTHrP) has been shown to be the major mediator of hypercalcemia of malignancy, but may also exert effects on cell growth and differentiation. The Leydig cell tumor H-500, when implanted in Fischer rats, produces abundant PTHrP and eventually causes the death of the host animal. In the present study we have used antisense RNA technology to block the effects of PTHrP in H-500 Leydig tumor cells in vivo. The full-length rat PTHrP complementary DNA encoding amino acid -36-->141 was subcloned as an EcoRI-BglII insert in the antisense orientation into the mammalian expression vector pRc/CMV to produce the plasmid pRc-PAS. This plasmid was then stably transfected into the H-500 Leydig tumor cells with a Lipofectin reagent. After selection with the neomycin derivative G-418, a stable cell line, H-500-PTHrP-AS, was obtained which showed 80% inhibition of endogenous PTHrP messenger RNA compared to wild-type or vector-only transfected H-500 cells. Conditioned culture medium from these experimental cells showed a marked decrease in PTHrP immunoreactivity and in the ability of the medium to stimulate adenylate cyclase in UMR-106 rat osteosarcoma cells. Furthermore, inhibition of PTHrP production resulted in a significant increase in the doubling time of the H-500 cells. Transfection of the experimental plasmid into Rat-2 fibroblasts, which do not produce PTHrP, had no effect on cell growth. Control and experimental cells were then implanted sc into male Fischer rats. Animals were killed at timed intervals, and their tumor volumes were determined. Experimental animals receiving cells transfected with antisense PTHrP plasmid showed near-normal levels of plasma calcium and decreased expression of tumoral PTHrP messenger RNA. These animals also showed a 30-70% lower tumor volume during the course of the experiment compared to control animals. These studies have demonstrated that PTHrP can play a role as a promoter of tumor growth in vitro and in vivo.

Animals↗

Comparison of the pharmacokinetics of parenteral parathyroid hormone-(1-34) [PTH-(1-34)] and PTH-related peptide-(1-34) in healthy young humans.

The amino-terminal fragments of human PTH [hPTH-(1-34)] and PTH-related peptide [PTHrP-(1-34)] appear to be equipotent in several rodent models. However, continuous i.v. infusions of these peptides to young human volunteers suggested that a 10-fold higher molar dose of PTHrP was required to produce comparable circulating levels of the peptide and biochemical responses similar to PTH. As PTHrP has a wide variety of target tissues in mammalian species and may, therefore, play a paracrine, rather than an endocrine, hormonal role in vivo, we evaluated whether enhanced metabolic clearance of injected PTHrP might explain its apparently reduced potency as a PTH-like hormone. Ten healthy subjects [age, 25 +/- 9 (+/- SD) yr] received in random order either hPTH-(1-34) or hPTHrP-(1-34) given by bolus i.v. injections in a dose of 10.7 nmol. Measurements of plasma immunoreactive peptide indicated a comparable volume of distribution for each, but the apparent t1/2 (8.3 +/- 1.6 min) and plasma clearance (4.0 +/- 1.4 L/min) for hPTHrP were significantly (P < 0.05) accelerated compared to those of hPTH (t1/2, 10.2 +/- 0.5 min; clearance, 2.0 +/- 0.4 L/min). Peak plasma cAMP levels were 9-fold lower in response to hPTHrP (29.5 +/- 19 vs. 190 +/- 63 pmol/L; P < 0.01), and increases in urinary cAMP excretion were 5-fold lower (2.1 +/- 1.1 vs. 11.2 +/- 3.7 nmol/mmol creatinine; P < 0.01). No major differences were observed in the urinary excretion of phosphate, calcium, or sodium between the two peptides. Although hPTHrP-(1-34) has a 2-fold higher MCR than hPTH-(1-34), this may not explain the more than 5-fold lower plasma or urinary cAMP response to PTHrP in humans. The comparable effects of PTH and PTHrP on urinary phosphate, calcium, and sodium may indicate a non-cAMP-dependent pathway for these responses, although the intracellular pool of cAMP generated to either peptide, and thus the local target tissue response, could not be estimated in the present study.

Adult↗

Vitamin D analogs: new therapeutic agents for the treatment of squamous cancer and its associated hypercalcemia.

We have examined the in vitro effects of 1,25 dihydroxy-vitamin D3 [1,25(OH)2D3] and of two side-chain modified analogs of 1,25(OH)2D3 (EB1089 and MC903) on cell growth and parathyroid hormone related peptide (PTHRP) production in immortalized (HPK1A) and neoplastic (HPK1A-ras) keratinocytes. Cell proliferation was strongly inhibited by 1,25(OH)2D3 and its analogs in HPK1A cells, and in this system EB1089 was 10-100 times more potent than 1,25(OH)2D3 or MC903. A similar effect on cell proliferation was observed in HPK1A-ras cells; however, 10-fold higher concentrations of 1,25(OH)2D3 or its analogs were required. We also observed a strong and dose-dependent inhibitory effect of these compounds on PTHRP secretion and gene expression. In both immortalized and neoplastic keratinocytes, EB1089 was 10-100 times more potent than 1,25(OH)2D3 or MC903 on inhibiting PTHRP production. However, although effective in HPK1A-ras cells, 10-fold higher concentrations of 1,25(OH)2D3 or its analogs were required to produce similar actions in this neoplastic model. These studies therefore demonstrate that a 1,25(OH)2D3 analog with low calcemic potency in vivo (EB1089) can inhibit keratinocyte proliferation and PTHRP production by such cells with greater potency than 1,25(OH)2D3. The observed effects of such analogs in neoplastic keratinocytes predicts their potential usefulness in vivo in inhibiting squamous cancer growth and its associated hypercalcemia.

Animals↗

A mammalian serine/threonine kinase receptor specifically binds BMP-2 and BMP-4.

Bone morphogenetic proteins (BMPs) are a class of related growth and differentiation factors within the TGF-beta superfamily of proteins which are known to induce cartilage and bone formation in adult animals and to be involved in many inductive events throughout embryonic development. Here we describe the molecular cloning and characterization of a mammalian receptor, CFK-43a, which specifically binds BMP-2 and BMP-4. This molecule is a member of the serine/threonine kinase receptor family which includes receptors for other TGF-beta superfamily members. CFK-43a binds other BMP family members with lower affinity, but does not bind TGF-beta. During embryogenesis, in situ hybridization analysis indicates that CFK-43a mRNA is localized in developing skeletal tissues in a complementary fashion to the transcripts for its ligands.

Amino Acid Sequence↗