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Biomedical subjects

B B Aggarwal

Publications and source records attributed to B B Aggarwal.

At least 163 records · Page 9Linked to original sources

In vivo induction of nitrite and nitrate by tumor necrosis factor, lymphotoxin, and interleukin-1: possible roles in malaria.

Tumor necrosis factor and related cytokines are thought to be implicated in cell-mediated immunity and pathophysiology in malaria, but their mechanism of action has not been ascertained. Tumor necrosis factor has been reported to generate nitric oxide in vitro, so we have measured levels of this molecule and its products in the plasma of mice after they have received an injection of tumor necrosis factor, lymphotoxin, interleukin-1, gamma interferon, or interleukin-6, all of which have been reported to be increased in malaria. Total reactive nitrogen intermediate levels in plasma were assayed spectrophotometrically after exposing plasma to a copper-cadmium-zinc catalyst to convert nitrate to nitrite and then to Griess reagent. Tumor necrosis factor, lymphotoxin, and interleukin-1 all induced reactive nitrogen intermediates in vivo, with interleukin-1 showing the most activity. Tumor necrosis factor was then examined more closely. It induced more reactive nitrogen intermediates in malaria-infected mice than in normal mice, and appreciably more was in the form of nitrate than was in the form of nitrite. NG-methyl-L-arginine inhibited the in vivo generation of reactive nitrogen intermediates by tumor necrosis factor in a dose-dependent manner, implying that these molecules were arginine derived. These results are consistent with the possibility that tumor necrosis factor, lymphotoxin, and interleukin-1 may contribute to host pathology and parasite suppression through generation of nitric oxide.

Animals↗

Down-modulation of cell surface expression of p80 form of the tumor necrosis factor receptor by human immunodeficiency virus-1 tat gene.

Tumor necrosis factor-alpha (TNF-alpha) induces the expression of human immunodeficiency virus type-1 (HIV-1) in vitro in chronically infected cells of T and monocytic origin. The tat protein from the HIV-1 virus has been shown to be essential for HIV replication and in the immunosuppression associated with the virus infection. Previous studies in our laboratory have shown that HIV-1 tat gene induces TNF-beta (lymphotoxin) in human B-lymphoblastoid cells (Sastry et al., 1990, J. Biol. Chem. 265, 20091-20093). In an attempt to characterize further the relationship between the host and HIV-1, we investigated the effect of the functional HIV-1 tat gene on the expression of TNF receptors in a human B lymphoblastoid cell line (Raji). We report here that Raji cells transfected with HIV-1 tat gene express fewer cell surface TNF receptors than control cells. At least a 5-fold decrease in the receptor number without any significant change in receptor affinity was observed. The decrease in TNF receptors in tat-transfected Raji cells (Raji-tat cells) was found not to be due to receptor occupancy by the autocrine production of TNF-beta. The decrease in the cell surface expression of TNF receptors in Raji-tat cells was also found to be not due to a decrease in the gene expression of the receptor. The kinetics, amount of TNF binding and its internalization were temperature dependent, and it was different in Raji-tat cells than in the control cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Cell Line↗

Resistance of Ha-ras oncogene-induced progressor tumor variants to tumor necrosis factor and interferon-gamma.

To elucidate the mechanisms by which tumor cells escape the immune defenses of the normal host, we have isolated progressor tumor variants from a regressor tumor cell line by transfection with an activated Ha-ras oncogene. We previously found that the progressor phenotype of Ha-ras-induced variants was not due to loss of tumor-specific or major histocompatibility complex antigens. In this study, we investigated whether there is any correlation between in vivo tumor growth and in vitro sensitivity of regressor and progressor tumor cells to tumor necrosis factor (TNF). The regressor UV-2240 tumor cells, which do not grow in normal syngeneic mice, were sensitive to killing by TNF, whereas the Ha-ras oncogene-induced progressor tumor variants of UV-2240, which produce tumors in normal syngeneic hosts, were resistant to killing by TNF. Interferon-gamma (IFN-gamma) enhanced TNF-induced cytotoxicity of the regressor tumor cells, but it had no effect on Ha-ras-induced progressor tumor variants. The resistance of the Ha-ras-induced progressor variants to TNF and IFN-gamma could be attributed to a decrease in the number of TNF receptors on their cell surface. However, there was no correlation between TNF and IFN-gamma sensitivity of tumor cells and sensitivity to killing by activated macrophages, NK or NC cells. These results indicate that in some murine tumor cells, there may be a relationship between in vivo tumor growth and in vitro resistance to cytolysis by TNF and IFN-gamma. Although the response of the Ha-ras-induced progressor variants to TNF and IFN-gamma produced endogenously in immunocompetent mice is unknown, one can infer that some tumors escape the immune defenses of the normal host by becoming resistant to certain cytokines produced by the immune system.

Animals↗

Interleukin 4 potentiates the antiproliferative effects of tumor necrosis factor on various tumor cell lines.

In response to a given stimulus, usually a number of cytokines are secreted simultaneously by the immune system. Whether these cytokines are meant to function as a single agent or in combination with others is not understood. Tumor necrosis factor (TNF) has been shown to exhibit antiproliferative effects against a wide variety of tumor cell lines in vitro. In the present report, we investigated the effects of a T-cell-derived cytokine, interleukin 4 (IL-4), on the antiproliferative effects of TNF against different tumor cell lines. The growth characteristics of human breast cancer cells (MDA-MB-330) were minimally affected when the cells were exposed to either TNF or IL-4 alone. However, together these 2 cytokines inhibited cell growth in a dose-dependent manner. The enhancement of the cytotoxic effects of TNF by IL-4 were not just limited to breast tumor cells, but were also observed with human epidermoid carcinoma cells (A-431) and human histiocytic lymphoma cells (U-937). The enhancement of the cytotoxic effect of TNF by IL-4 against various tumor cell lines was found comparable with that by gamma-interferon (IFN-gamma). Interestingly, for certain tumor cell types, IL-4 alone was found to enhance cell proliferation. IL-4 had no effect on the growth-stimulatory activity of TNF on normal human foreskin fibroblasts. Pre-exposure of U-937 cells to IFN-gamma led to a greater than 2-fold induction in TNF receptors, but no modulation of TNF receptors by IL-4 was observed. Moreover, the presence of IFN-gamma was found to further potentiate the antiproliferative effects of TNF and IL-4. These results clearly suggest that IL-4 potentiates the antiproliferative responses of TNF by a mechanism different from that of IFN-gamma. Although it is well known that IL-4 can modulate the production of TNF from macrophages, this is the first report to suggest that IL-4 can also modulate TNF-dependent antiproliferative responses.

Breast Neoplasms↗

Ovarian actions of tumor necrosis factor-alpha (TNF alpha): pleiotropic effects of TNF alpha on differentiated functions of untransformed swine granulosa cells.

We have examined interactions between tumor necrosis factor-alpha (TNF alpha), a product of the immune system, and ovarian cells using serum-free monolayer cultures of untransformed swine granulosa cells. Recombinant human TNF alpha, a potent cytoactive product of activated macrophages, bound specifically and with high affinity to intact granulosa cells. Binding sites had an apparent Kd of 0.17 nM (95% confidence interval, 0.065-0.31), and a binding capacity of 80 nmol/micrograms DNA (95% confidence interval, 52-110). The binding capacity of granulosa cells for TNF alpha (but not the binding affinity) was increased approximately 2-fold by treatment with FSH and insulin. The biological effects of TNF alpha on pig granulosa cells were expressed after 48 and 96 h in culture. At the latter time, TNF alpha significantly suppressed insulin- and insulin- plus FSH-stimulated progesterone accumulation, with respective ID50 values of 0.08 +/- 0.008 and 0.06 +/- 0.014 nM, but did not affect basal progesterone accumulation or DNA content. TNF alpha also significantly attenuated the stimulatory effect of combined treatment with FSH and insulin on cAMP generation during 48-96 h of culture. TNF alpha inhibited the stimulatory effects of forskolin, cholera toxin, and the cAMP analog 8-bromo-cAMP on progesterone accumulation, indicating multiple sites of action of this immune modulator. Inhibition of progestin biosynthesis was observed even in the presence of 25-hydroxycholesterol, a soluble oxygenated sterol substrate for the cholesterol side-chain cleavage reaction, and was accompanied by decreased concentrations of specific cellular mRNA encoding cholesterol side-chain cleavage enzyme. There were no changes in the amounts of a constitutively expressed enzyme, phosphoglyceraldehyde dehydrogenase. Inhibitory actions of TNF alpha were specific to de novo steroid hormone biosynthesis, since nanomolar concentrations of this cytokine stimulated accumulation of prostaglandin E2 and prostaglandin F2 alpha basally and during treatment with FSH, cholera toxin, or 8-bromo-cAMP. In contrast, prostaglandin accumulation was not enhanced by interferon-gamma or interleukin-2. In summary, untransformed porcine granulosa cells exhibit specific, high affinity, low capacity saturable binding sites for TNF alpha, and the number of such binding sites can be regulated by combined treatment with insulin and FSH. Granulosa cells are susceptible to the inhibitory actions of TNF alpha on FSH- and insulin-supported progesterone biosynthesis and cAMP accumulation. One important locus of TNF alpha action is blockade of hormonally stimulated increases in specific mRNA encoding the cholesterol side-chain cleavage cytochrome P450 enzyme.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

In vitro selection of NIH-3T3 cells for resistance to lymphotoxin induces resistance to activated macrophages and enhances tumorigenicity in vivo.

It is well known that expression of certain growth factors leads to tumorigenesis. However, the role of growth inhibitory molecules in this process is less certain. During the last few years several cytokines with growth inhibitory properties have been identified. In spite of the production of these cytokines by the body's immune system, the growth and progression of the tumor continue. In order to understand the mechanisms by which tumor escapes the host defense system, we have used lymphotoxin (LT), a lymphocyte-derived cytokine that is known to selectively inhibit the growth of certain tumor cells. The effect of LT was investigated on NIH-3T3 mouse fibroblast cells that are highly sensitive to its cytotoxic effects and are also tumorigenic in nude mice. On exposure to 10 units/ml of LT, 50% of these cells are killed within 24 h. A stable variant of NIH-3T3 cells that is completely resistant (LT-R) to even 10,000-fold higher concentration of the cytokine than that of sensitive cells (LT-S) was isolated in vitro by repeated exposure to LT. Both LT-S and LT-R displayed similar characteristics when grown both as a monolayer and in soft agar. No significant difference in LT receptor number or affinity between the two cell types was observed. It was not possible to overcome the resistance to LT by the addition of interferon-gamma but the resistance could be overcome by the presence of various chemotherapeutic agents suggesting a difference in the mechanism of action of these two agents.(ABSTRACT TRUNCATED AT 250 WORDS)

3T3 Cells↗

HIV-1 tat gene induces tumor necrosis factor-beta (lymphotoxin) in a human B-lymphoblastoid cell line.

The tat protein from human immunodeficiency virus type 1 (HIV-1) activates viral gene expression and is essential for HIV replication in vitro. It has also been shown that the tat gene product specifically inhibits antigen-induced proliferation of human peripheral blood lymphocytes. In order to understand the growth and immunomodulatory roles of HIV-1 tat, we have examined the effect of the tat gene on the expression of tumor necrosis factors in a human B-lymphoblastoid cell line (Raji). We report here that the HIV-1 tat gene introduced into Raji cells by retroviral-mediated transformation induces production of tumor necrosis factor-beta (TNF-beta). The tat-mediated induction of TNF-beta seems to be both at the transcriptional and post-transcriptional levels because, concurrent with a 30-fold increase in the levels of TNF-beta protein, an approximate 8-fold increase in mRNA was observed in tat-transformed Raji cells. It is recently reported that tat protein of HIV-1 stimulates growth of cells derived from Kaposi's sarcoma lesions of AIDS patients (Ensoli, B., Barillari, G., Salahuddin, S.Z., Gallo, R.C., and Wong-Staal, F. (1990) Nature 345, 84-86). Since TNF has been shown to function as a growth factor for several cell types, our results showing induction of TNF-beta by tat indicate the possibility that a growth-stimulatory role of HIV-1 tat on Kaposi's sarcoma cells is mediated through TNF-beta.

B-Lymphocytes↗

Muramyl dipeptide induces production of hemopoietic growth factors in vivo by a mechanism independent of tumor necrosis factor.

Monocyte products including TNF and IL-1 can stimulate hemopoietic growth factor production in vitro and in vivo. Endotoxin-resistant C3H/HeJ mice have a cellular defect in the regulation of TNF production and provide a model in which to examine the relative importance of TNF and IL-1. To assess the relative role of TNF and IL-1, we injected the synthetic bacterial cell wall derivative muramyl dipeptide (MDP) or LPS into C3H/HeJ mice. Both MDP and LPS stimulated hemopoietic growth factor production in a dose-dependent manner. Northern blot analysis of splenic and lung mRNA revealed that MDP treatment induced granulocyte-macrophage CSF and macrophage-CSF transcripts, whereas LPS treatment induced macrophage-CSF transcripts. Messenger RNA for granulocyte-CSF, IL-3, IL-4, and IL-5 was not detected in control or treated mice. MDP treatment induced IL-1 mRNA but not TNF mRNA, and TNF bioactivity was not detected in the serum of MDP-treated mice. In contrast, LPS treatment induced TNF production. These results identify the hemopoietic growth factors induced by MDP and LPS in vivo, and suggest that MDP stimulates growth factor production by a mechanism independent of TNF.

Acetylmuramyl-Alanyl-Isoglutamine↗

Tumor necrosis factor-alpha exhibits greater proinflammatory activity than lymphotoxin in vitro.

Tumor necrosis factor-alpha/cachectin (TNF-alpha) and lymphotoxin (LT, TNF-beta) are primarily products of monocytes and lymphocytes, respectively. The proteins are 51% homologous in their primary structure, cause necrosis of Meth A sarcoma in vivo, are toxic to selected tumor cells in vitro, and bind to the same receptor on cells in vitro. However, some recent studies have indicated both qualitative and quantitative differences between recombinant human (rh) LT and rhTNF with respect to inducing human umbilical vein endothelial cell (HEC) adhesiveness for neutrophils and release of hematopoietic growth factor and interleukin-1 (IL-1) from HEC. The rhLT used in these studies was expressed in bacteria and was consequently not glycosylated, whereas natural LT is glycosylated. Therefore, we have compared various preparations of glycosylated and nonglycosylated rhLT with two preparations of rhTNF with respect to their proinflammatory characteristics. We now report that the same LT cDNA, when expressed in mammalian cell line and appropriately glycosylated, is also markedly less potent than rhTNF on a molar basis in inducing endothelial adhesiveness for neutrophils and in directly activating neutrophil adherence to albumin-coated plastic. All recombinant proteins, however, were equipotent on a molar basis in producing cytotoxicity in L929 cells. We conclude that differences in the primary structure of rhTNF and rhLT, rather than alterations induced by prokaryote protein processing, account for the disparate proinflammatory activity in vitro.

Animals↗

Characterization of receptors for recombinant human tumor necrosis factor-alpha from human placental membranes.

High affinity receptors for recombinant human tumor necrosis factor-alpha (rhTNF-alpha) were identified on membranes prepared from full term human placenta. Highly purified rhTNF-alpha iodinated by the iodogen method was found to bind placental membranes in a displaceable manner with an approximate dissociation constant (KD) of 1.9 nM. The membrane bound TNF-alpha receptor could be solubilized by several detergents with optimum extraction being obtained with 1% Triton X-100. The binding of 125I-rhTNF-alpha to the solubilized receptor was found to be time and temperature dependent, yielding maximum binding within 1 h, 24 h and 48 h at 37 degrees C, 24 degrees C and 4 degrees C, respectively. However, the maximum binding obtainable at 4 degrees C was only 40% of that at 37 degrees C. The binding 125I-rhTNF-alpha to solubilized placental membrane extracts was displaceable by unlabeled rhTNF-alpha, but not by a related protein recombinant human tumor necrosis factor-beta (rhTNF-beta; previously called lymphotoxin). This is similar to the behavior of TNF-alpha receptors derived from detergent-solubilized cell extracts, although on intact cells, both rhTNF-alpha and rhTNF-beta bind with equal affinity to TNF receptors. The Scatchard analysis of the binding data of the solubilized receptor revealed high affinity binding sites with a KD of approximately 0.5 nM and a receptor concentration of about 1 pmole/mg protein. Gel filtration of the solubilized receptor-ligand complexes on Sephacryl S-300 revealed two different peaks of radioactivity at approximate molecular masses of 50,000 Da and 400,000 Da. The 400,000 dalton peak corresponded to the receptor-ligand complex. Overall, our results suggest that high affinity receptors for TNF-alpha are present on human placental membranes and provide evidence that these receptors may be different from that of rhTNF-beta.

Binding Sites↗

Characterization of recombinant human lymphotoxin (tumor necrosis factor-beta) produced by a mammalian cell line.

Lymphotoxin (LT) was purified from serum-free conditioned media of a recombinant mammalian cell line transfected with human lymphotoxin cDNA. The purification scheme consisted of controlled pore glass chromatography, Q-Sepharose ion-exchange chromatography, and concanavalin A-Sepharose chromatography. The purified protein was found to be homogeneous by reverse-phase high-performance liquid chromatography and had an approximate specific activity of 130 X 10(6) units per milligram protein as determined by the L-929 cytotoxicity assay. Purified LT had an isoelectric point of approximately 6.85 and an apparent molecular weight of 50,000 by gel permeation high-pressure liquid chromatography. However, when analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, two distinct bands at approximate molecular sizes of 25 and 20 kDa were observed. Both the bands were immunoreactive by Western blot analysis and found to be associated with biological activity. The two forms of lymphotoxin differed from each other with respect to protein structure. Amino-terminal amino acid sequence analysis revealed that the 25-kDa LT sequence starts with Leu-Pro-Gly-residues whereas that of the 20-kDa LT begins with His-Leu-Ala; thus the latter form is truncated by 20 amino acid residues from the amino terminal. Two species of LT also differed from each other with respect to carbohydrate structure. Enzymatic removal of sialic acid reduced the molecular weight of 25 kDa by approximately 5 kDa whereas that of the 20-kDa LT was unchanged. A reduction in an apparent molecular size by approximately 4 kDa of both species of LT was observed on removal of N-linked oligosaccharides. Treatment with O-Glycanase had minimal effect on either form of LT. The recombinant lymphotoxin described here was found superior in its solubility behavior as compared to bacterial cell derived LT. Overall, mammalian cell line derived recombinant LT appears closer in its properties to natural LT than does bacterial cell derived recombinant LT.

Amino Acid Sequence↗

Characterization and affinity cross-linking of receptors for human recombinant lymphotoxin (tumor necrosis factor-beta) on a human histiocytic lymphoma cell line, U-937.

Recombinant human lymphotoxin (rhLT) expressed in a mammalian cell line was purified and used to examine its receptors on the human histiocytic lymphoma cell line U-937. rhLT was radioiodinated by the IODO-GEN method to a specific activity of 60 microCi/micrograms; the labeled protein was biologically active in the cytolytic assay, and displaceable binding to U-937 cells was observed. The specific binding reached a plateau within 10, 60, and 180 min at 37, 23, and 4 degrees C, respectively. Scatchard analysis of the binding data revealed the presence of a single class of high affinity receptors with an apparent Kd of 0.6 nM and a capacity of 33,000 +/- 7,000 binding sites/cell. The binding of 125I-rhLT to U-937 cells could be inhibited by excess unlabeled rhLT or recombinant human tumor necrosis factor (rhTNF), suggesting a common receptor for both molecules. As competitive inhibitor of the binding, rhTNF was equal in its potency to rhLT. Bacterial derived rhLT lacking carbohydrate was also found equipotent to cell line-derived rhLT for cell binding, indicating that carbohydrate plays no significant role in receptor interaction. Additionally, 125I-rhLT was covalently attached to the cell surface via a bifunctional cross-linking reagent, ethylene glycol bis(succinimidyl succinate), solubilized, and analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The cross-linking of the receptor to rhLT revealed two distinct bands at approximate molecular masses of 100,000 and 120,000 daltons. Both bands were absent when unlabeled rhLT or rhTNF was used for competition, indicating the specificity. Affinity cross-linking of U-937 cells with 125I-rhTNF, however, provided only a single band with a molecular mass of about 100,000 daltons. These results suggest that the manner in which rhLT interacts with its receptor is perhaps somewhat different from that of rhTNF.

Affinity Labels↗

Purification and characterization of early pregnancy factor from human pregnancy sera.

Early pregnancy factor (EPF) is a pregnancy-associated protein detected in the maternal serum by using the rosette inhibition assay and by evaluating the suppression of adoptive transfer of contact sensitivity. Because of its inhibitory effect on the functional reactivity of immunocompetent cells, EPF is thought to be involved in immunoregulation of the maternal immune system during early pregnancy. EPF was purified six million-fold from the serum of pregnant women between 5 and 12 weeks of gestation. The specific activity of purified EPF was approximately 8 x 10(8) units/mg. The purification scheme involved sequential DEAE-cellulose chromatography, S-Sepharose chromatography, concanavalin A-Sepharose chromatography, heparin-Sepharose chromatography, Mono S fast protein liquid chromatography, and preparative sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The purified protein has an apparent molecular weight of 21,500 as analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and 28,000 by gel permeation high pressure liquid chromatography. The isoelectric point of purified EPF moiety is 6.5. The biological activity was susceptible to the proteolytic enzyme trypsin, acidic pH conditions, organic solvents, and sodium dodecyl sulfate, but stable to heat treatment at 56 degrees C for 30 min and the reducing agent dithiothreitol. The biological and physicochemical properties of EPF appear to be distinct from other pregnancy-associated and immunoregulatory proteins.

Chaperonin 10↗

Binding and biological effects of tumor necrosis factor alpha on cultured human neonatal foreskin keratinocytes.

Tumor necrosis factor alpha (TNF alpha) localizes to the epidermis when injected in vivo, but its role in the skin has heretofore not been evaluated. As a first approach to assessing the role of TNF alpha in the skin, we evaluated the binding and biological effects of TNF alpha on human neonatal foreskin keratinocytes maintained in culture. We found that TNF alpha at 0.3-1.0 nM inhibited proliferation of keratinocytes in a reversible fashion as demonstrated by a reduction in total DNA content and clonal growth. The antiproliferative effects were most marked when TNF alpha was added in the preconfluent stages of cell growth. Accompanying this antiproliferative effect was a stimulation by TNF alpha of differentiation of keratinocytes as indicated by the stimulation of cornified envelope formation. Keratinocytes specifically bound TNF alpha, reaching maximal binding in 2 h at 34 degrees C or 8 h at 4 degrees C. Much of the apparent binding at 34 degrees C was due to internalization of the TNF alpha. At 4 degrees C the rate of internalization was much less. Confluent keratinocytes showed a single class of high-affinity receptors with 1,250 receptors/cell and a Kd of 0.28 nM. These data suggest a role for TNF alpha in the growth and differentiation of the epidermis.

Cell Differentiation↗

Human tumor necrosis factor-alpha receptor. Purification by immunoaffinity chromatography and initial characterization.

The receptor for human tumor necrosis factor-alpha (TNF-alpha) was isolated from a subclone of the human histiocytic lymphoma cell line U937. These cells exhibit a single class of high affinity receptors (Kd = 0.51 +/- 0.25 nM) with an average density of 55,000 +/- 5,000 binding sites/cell. After solubilization with detergent, the receptor retained its ability to bind free TNF-alpha but failed to bind to TNF-alpha immobilized on various solid supports. For receptor purification, 125I-TNF-alpha was covalently attached to the receptor on intact cells by the bifunctional cross-linking reagents ethylene glycolbis(succinimidylsuccinate) or 3,3-dithiobis(sulfosuccinimidylpropionate). The cells were then solubilized with the nonionic detergent Triton X-100, and the supernatants, clarified by centrifugation, were passed over an IgG-Sepharose column prepared from TNF-alpha antiserum. The receptor-rich fraction from the antibody column was further purified by preparative sodium dodecyl sulfate-polyacrylamide gel electrophoresis. These two steps together provided approximately 165,000-fold purification of the TNF-alpha receptor. The TNF-alpha receptor-ligand complex obtained by this method had a subunit molecular weight of 100,000 +/- 5,000 when examined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis but on gel filtration the complex migrated with an apparent molecular weight of 480,000 +/- 32,000. However, the receptor showed a molecular weight of 65,000 +/- 32,000 when gel filtration was performed in the absence of ligand. Additional characteristics of the receptor are discussed.

Binding, Competitive↗