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Dudley K Strickland - One of the best experts on this subject based on the ideXlab platform.
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the low density lipoprotein receptor related protein alpha 2 macroglobulin receptor binds and mediates catabolism of bovine milk lipoprotein lipase
Journal of Biological Chemistry, 1992Co-Authors: David A Chappell, M A Waknitz, P H Iverius, Suzanne E Williams, Dudley K StricklandAbstract:Abstract Lipoprotein lipase (LPL), the major lipolytic enzyme involved in the conversion of triglyceride-rich lipoproteins to remnants, was found to compete with binding of activated alpha 2-macroglobulin (alpha 2M*) to the low density lipoprotein receptor-related protein (LRP)/alpha 2-macroglobulin receptor. Bovine milk LPL displaced both 125I-labeled alpha 2M* and 39-kDa alpha 2M receptor-associated protein (RAP) from the surface of cultured mutant fibroblasts lacking LDL receptors with apparent KI values at 4 degrees C of 6.8 and 30 nM, respectively. Furthermore, LPL inhibited the cellular degradation of 125I-alpha 2M* at 37 degrees C. Because both alpha 2M* and RAP interact with LRP, these data suggest that LPL binds specifically to this receptor. This was further supported by observing that an immunoaffinity-isolated polyclonal antibody against LRP blocked cellular degradation of 125I-LPL in a dose-dependent manner. In addition, 125I-LPL bound to highly purified LRP in a solid-phase assay with a KD of 18 nM, and this binding could be partially displaced with alpha 2M* (KI = 7 nM) and RAP (KI = 3 nM). Taken together, these data establish that LPL binds with high affinity to LRP and undergoes LRP-mediated cellular uptake. The implication of these findings for lipoprotein catabolism in vivo may be important if LRP binding is preserved when LPL is attached to lipoproteins. If so, LPL might facilitate LRP-mediated clearance of lipoproteins.
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low density lipoprotein receptor related protein alpha 2 macroglobulin receptor is an hepatic receptor for tissue type plasminogen activator
Proceedings of the National Academy of Sciences of the United States of America, 1992Co-Authors: Suzanne Williams, Dudley K Strickland, Alan L SchwartzAbstract:Tissue-type plasminogen activator (t-PA), a serine protease that catalyzes the initial and rate-limiting step in the fibrinolytic cascade, is cleared rapidly in vivo by the liver. Using chemical crosslinking, we have recently identified a plasminogen-activator inhibitor type 1 (PAI-1)-independent t-PA clearance receptor on rat hepatoma MH1C1 cells with a relative molecular mass of approximately 500 kDa. Another recently identified membrane receptor, low density lipoprotein receptor-related protein/alpha 2-macroglobulin receptor (LRP/alpha 2MR), was also detected on MH1C1 hepatoma cells by using immunoprecipitation with anti-LRP/alpha 2MR antibody. When analyzed by SDS/PAGE, we found the t-PA receptor identified on MH1C1 cells comigrated with the large subunit of LRP/alpha 2MR. The t-PA receptor was immunoprecipitated by an anti-LRP/alpha 2MR antibody after chemical crosslinking of specifically bound 125I-labeled t-PA to its receptor. Through chemical crosslinking studies, we found that t-PA and methylamine-activated alpha 2-macroglobulin could bind to LRP/alpha 2MR simultaneously without competing with one another for binding, suggesting that the two ligands bound to two independent sites on the LRP/alpha 2MR molecule. Furthermore, a 39-kDa protein, which modulates ligand binding to LRP/alpha 2MR, was also found to inhibit t-PA binding to its receptor. These data thus show that the t-PA clearance receptor identified on MH1C1 hepatoma cells is LRP/alpha 2MR.
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the alpha 2 macroglobulin receptor low density lipoprotein receptor related protein binds and internalizes pseudomonas exotoxin a
Journal of Biological Chemistry, 1992Co-Authors: M Z Kounnas, Dudley K Strickland, Randal E Morris, M R Thompson, Desmond J Fitzgerald, Catharine B SaelingerAbstract:The alpha 2-macroglobulin receptor/low density lipoprotein receptor-related protein (alpha 2 MR/LRP) is a large cell-surface glycoprotein consisting of a 515-kDa and an 85-kDa polypeptide; this receptor is thought to be responsible for the binding and endocytosis of activated alpha 2-macroglobulin and apoE-enriched beta-very low density lipoprotein. A similar high molecular weight glycoprotein has been identified as a potential receptor for Pseudomonas exotoxin A (PE). We demonstrate that the alpha 2 MR/LRP and the PE-binding glycoprotein have a similar mobility upon sodium dodecyl sulfate-polyacrylamide gel electrophoresis and are immunologically indistinguishable. Furthermore, affinity-purified alpha 2 MR/LRP binds specifically to PE but not to a mutant toxin defective in its ability to bind cells. The 39-kDa receptor-associated protein, which blocks binding of ligands to alpha 2 MR/LRP, also prevents binding and subsequent toxicity of PE for mouse fibroblasts. The concentration of receptor-associated protein that was required to reduce binding and toxicity to 50% was approximately 14 nM, a value virtually identical to the KD measured for the interaction of receptor-associated protein with the purified receptor. Overall, the studies strongly suggest that the alpha 2 MR/LRP is responsible for internalizing PE.
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39 kda protein modulates binding of ligands to low density lipoprotein receptor related protein alpha 2 macroglobulin receptor
Journal of Biological Chemistry, 1991Co-Authors: Joachim Herz, Dudley K Strickland, Joseph L Goldstein, Michael S BrownAbstract:A 39-kDa protein of unknown function has previously been reported to copurify with the low density lipoprotein receptor-related protein (LRP)/alpha 2-macroglobulin receptor. In this study we demonstrate that a recombinant 39-kDa fusion protein can reversibly bind to the 515-kDa subunit of the LRP/alpha 2-macroglobulin receptor. This interaction inhibits the binding and uptake of the receptor's two known ligands: 1) beta-migrating very low density lipoproteins activated by enrichment with apoprotein E and 2) alpha 2-macroglobulin activated by incubation with plasma proteases or methylamine. A potential in vivo role of the 39-kDa protein is to modulate the uptake of apoE-enriched lipoproteins and activated alpha 2-macroglobulin in hepatic and extrahepatic tissues.
Jorgen Gliemann - One of the best experts on this subject based on the ideXlab platform.
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alpha 2 macroglobulin proteinase complexes plasminogen activator inhibitor type 1 plasminogen activator complexes and receptor associated protein bind to a region of the alpha 2 macroglobulin receptor containing a cluster of eight complement type rep
Journal of Biological Chemistry, 1993Co-Authors: Soren K Moestrup, Lars Sottrupjensen, Thor Las Holtet, Michael Etzerodt, Henning Thogersen, Anders Nykjaer, Peter A Andreasen, Hanne H Rasmussen, Jorgen GliemannAbstract:Abstract A region containing sites for ligand binding was localized in the 4525-amino acid residue alpha 2-macroglobulin receptor/low density lipoprotein receptor-related protein (alpha 2MR/LRP) by ligand- and immunoblotting of proteinase and CNBr digests of the purified human placental protein. 125I-Labeled rat alpha 1-macroglobulin light chain, urokinase-plasminogen activator inhibitor type-1 complex, and alpha 2MR-associated protein all bound to a 75-kDa CNBr-generated fragment (68 kDa after deglycosylation). In addition to the three ligands, the fragment bound a novel monoclonal antibody reacting in the region defined by amino acid residues 1165-1246 as determined by binding to recombinant fragments of alpha 2MR/LRP. The positions of methionine residues in alpha 2MR/LRP suggested that the ligand-binding CNBr fragment contained three disulfide-linked peptides comprising the residues 776-1399. This origin was confirmed by partial amino acid sequencing of the electroblotted fragment and polypeptides generated by reduction of the fragment. The identified region represents 13.6% of the molecular mass (nonglycosylated) of alpha 2MR/LRP and contains one of three large clusters of complement-type repeats.
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distribution of the alpha 2 macroglobulin receptor low density lipoprotein receptor related protein in human tissues
Cell and Tissue Research, 1992Co-Authors: Soren K Moestrup, Jorgen Gliemann, G PallesenAbstract:The hepatic alpha 2-macroglobulin receptor (alpha 2MR)/low density lipoprotein receptor-related protein (LRP) binds and endocytoses alpha 2-macroglobulin-proteinase complexes in plasma. In addition, it binds lipoproteins, a novel 40 kDa protein, and complexes between plasminogen activators and plasminogen activator inhibitor type-1. This study shows, for the first time, the tissue distribution of alpha 2MR/LRP as determined by immunohistochemistry with specific monoclonal antibodies. The analysis revealed alpha 2MR/LRP-expression in a restricted spectrum of cell types, including neurons and astrocytes in the central nervous system, epithelial cells of the gastrointestinal tract, smooth muscle cells, fibroblasts, Leydig cells in testis, granulosa cells in ovary, and dendritic interstitial cells of kidney. Monocyte-derived cells displayed marked alpha 2MR/LRP expression in the phagocytes of liver, lung and lymphoid tissues, but no or low expression in antigen-presenting cells including Langerhans' cells of the skin. The high abundance of alpha 2MR/LRP in certain cell types of most organs suggests two main routes for alpha 2MR/LRP-mediated ligand clearance: (1) systemic removal in liver of circulating ligands, and (2) non-hepatic interstitial removal in different organs, including the brain.
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analysis of ligand recognition by the purified alpha 2 macroglobulin receptor low density lipoprotein receptor related protein evidence that high affinity of alpha 2 macroglobulin proteinase complex is achieved by binding to adjacent receptors
Journal of Biological Chemistry, 1991Co-Authors: Soren K Moestrup, Jorgen GliemannAbstract:Abstract The molecular basis for binding of alpha-macroglobulin-proteinase complexes to the human two-chain 500/85-kDa (alpha/beta) alpha 2-macroglobulin (alpha 2M) receptor (alpha 2MR)/low density lipoprotein receptor-related protein was analyzed. Ligand blotting experiments showed that a 40-kDa protein, present in the affinity-purified alpha 2MR preparation, is bound to the alpha 2MR alpha-chain and released by heparin. Removal of the 40-kDa protein resulted in a 3-5-fold increase in binding of alpha 2M-trypsin. Nitrocellulose-immobilized pure two-chain alpha 2MR was incubated with human alpha 2M-trypsin, containing four identical subunits, and two monovalent ligands: rat alpha 1-inhibitor-3-chymotrypsin and the 18-kDa receptor binding fragment of the alpha 2M subunit. Binding of alpha 2M-trypsin to the alpha-chain of immobilized alpha 2MR was composed of a high (Kd = 40 pM at 4 degrees C) and a low (Kd = 2 nM) affinity component. alpha 1-Inhibitor-3-chymotrypsin bound to the same sites but with one component (Kd = 0.4 nM). Competition-inhibition experiments and dissociation experiments, using ligands with different valences, as well as experiments with alpha 2MR immobilized at different densities, led to the following model. The low (Kd = 2 nM) affinity of alpha 2M-proteinase is prevalent when only one of the four domains binds to alpha 2MR, i.e. when the receptor density is low or when neighboring receptors are occupied. The high (Kd = 40 pM) affinity is achieved by binding of at least two domains to adjacent receptors.
Soren K Moestrup - One of the best experts on this subject based on the ideXlab platform.
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alpha 2 macroglobulin proteinase complexes plasminogen activator inhibitor type 1 plasminogen activator complexes and receptor associated protein bind to a region of the alpha 2 macroglobulin receptor containing a cluster of eight complement type rep
Journal of Biological Chemistry, 1993Co-Authors: Soren K Moestrup, Lars Sottrupjensen, Thor Las Holtet, Michael Etzerodt, Henning Thogersen, Anders Nykjaer, Peter A Andreasen, Hanne H Rasmussen, Jorgen GliemannAbstract:Abstract A region containing sites for ligand binding was localized in the 4525-amino acid residue alpha 2-macroglobulin receptor/low density lipoprotein receptor-related protein (alpha 2MR/LRP) by ligand- and immunoblotting of proteinase and CNBr digests of the purified human placental protein. 125I-Labeled rat alpha 1-macroglobulin light chain, urokinase-plasminogen activator inhibitor type-1 complex, and alpha 2MR-associated protein all bound to a 75-kDa CNBr-generated fragment (68 kDa after deglycosylation). In addition to the three ligands, the fragment bound a novel monoclonal antibody reacting in the region defined by amino acid residues 1165-1246 as determined by binding to recombinant fragments of alpha 2MR/LRP. The positions of methionine residues in alpha 2MR/LRP suggested that the ligand-binding CNBr fragment contained three disulfide-linked peptides comprising the residues 776-1399. This origin was confirmed by partial amino acid sequencing of the electroblotted fragment and polypeptides generated by reduction of the fragment. The identified region represents 13.6% of the molecular mass (nonglycosylated) of alpha 2MR/LRP and contains one of three large clusters of complement-type repeats.
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distribution of the alpha 2 macroglobulin receptor low density lipoprotein receptor related protein in human tissues
Cell and Tissue Research, 1992Co-Authors: Soren K Moestrup, Jorgen Gliemann, G PallesenAbstract:The hepatic alpha 2-macroglobulin receptor (alpha 2MR)/low density lipoprotein receptor-related protein (LRP) binds and endocytoses alpha 2-macroglobulin-proteinase complexes in plasma. In addition, it binds lipoproteins, a novel 40 kDa protein, and complexes between plasminogen activators and plasminogen activator inhibitor type-1. This study shows, for the first time, the tissue distribution of alpha 2MR/LRP as determined by immunohistochemistry with specific monoclonal antibodies. The analysis revealed alpha 2MR/LRP-expression in a restricted spectrum of cell types, including neurons and astrocytes in the central nervous system, epithelial cells of the gastrointestinal tract, smooth muscle cells, fibroblasts, Leydig cells in testis, granulosa cells in ovary, and dendritic interstitial cells of kidney. Monocyte-derived cells displayed marked alpha 2MR/LRP expression in the phagocytes of liver, lung and lymphoid tissues, but no or low expression in antigen-presenting cells including Langerhans' cells of the skin. The high abundance of alpha 2MR/LRP in certain cell types of most organs suggests two main routes for alpha 2MR/LRP-mediated ligand clearance: (1) systemic removal in liver of circulating ligands, and (2) non-hepatic interstitial removal in different organs, including the brain.
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analysis of ligand recognition by the purified alpha 2 macroglobulin receptor low density lipoprotein receptor related protein evidence that high affinity of alpha 2 macroglobulin proteinase complex is achieved by binding to adjacent receptors
Journal of Biological Chemistry, 1991Co-Authors: Soren K Moestrup, Jorgen GliemannAbstract:Abstract The molecular basis for binding of alpha-macroglobulin-proteinase complexes to the human two-chain 500/85-kDa (alpha/beta) alpha 2-macroglobulin (alpha 2M) receptor (alpha 2MR)/low density lipoprotein receptor-related protein was analyzed. Ligand blotting experiments showed that a 40-kDa protein, present in the affinity-purified alpha 2MR preparation, is bound to the alpha 2MR alpha-chain and released by heparin. Removal of the 40-kDa protein resulted in a 3-5-fold increase in binding of alpha 2M-trypsin. Nitrocellulose-immobilized pure two-chain alpha 2MR was incubated with human alpha 2M-trypsin, containing four identical subunits, and two monovalent ligands: rat alpha 1-inhibitor-3-chymotrypsin and the 18-kDa receptor binding fragment of the alpha 2M subunit. Binding of alpha 2M-trypsin to the alpha-chain of immobilized alpha 2MR was composed of a high (Kd = 40 pM at 4 degrees C) and a low (Kd = 2 nM) affinity component. alpha 1-Inhibitor-3-chymotrypsin bound to the same sites but with one component (Kd = 0.4 nM). Competition-inhibition experiments and dissociation experiments, using ligands with different valences, as well as experiments with alpha 2MR immobilized at different densities, led to the following model. The low (Kd = 2 nM) affinity of alpha 2M-proteinase is prevalent when only one of the four domains binds to alpha 2MR, i.e. when the receptor density is low or when neighboring receptors are occupied. The high (Kd = 40 pM) affinity is achieved by binding of at least two domains to adjacent receptors.
Bo Åkerström - One of the best experts on this subject based on the ideXlab platform.
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increased levels of cell free hemoglobin oxidation markers and the antioxidative heme scavenger alpha 1 microglobulin in preeclampsia
Free Radical Biology and Medicine, 2010Co-Authors: Magnus G Olsson, Jorgen Larsson, Magnus Centlow, Sigurbjorg Rutardottir, Irene Stenfors, Bahram Hosseinimaaf, Martin L Olsson, Stefan R Hansson, Bo ÅkerströmAbstract:Preeclampsia is a major cause of morbidity and mortality during pregnancy. To date, the pathogenesis of the disease is not fully understood. Recent studies show that preeclampsia is associated with overexpression of the hemoglobin genes alpha2 and gamma and accumulation of the protein in the vascular lumen of the placenta. Hypothesizing that cell-free hemoglobin leaks from the placenta into the maternal circulation and contributes to the endothelial damage and symptoms by inducing oxidative stress, we analyzed fetal and adult hemoglobin (HbF, HbA), haptoglobin, oxidation markers, and the heme scavenger and antioxidant alpha(1)-microglobulin in plasma, urine, and placenta in preeclamptic women (n=28) and women with normal pregnancy (n=27). The mean plasma concentrations of HbF, HbA, protein carbonyl groups, membrane peroxidation capacity, and alpha(1)-microglobulin were significantly increased in preeclamptic women. The levels of total plasma Hb correlated strongly with the systolic blood pressure. The plasma haptoglobin concentrations of women with preeclampsia were significantly depressed. Increased amounts of alpha(1)-microglobulin mRNA and protein were found in placenta from preeclamptic women, and the levels of plasma and placenta alpha(1)-microglobulin correlated with the plasma Hb concentrations. The heme-degrading form t-alpha(1)-microglobulin was significantly increased in urine in preeclampsia. These results support the idea that hemoglobin-induced oxidative stress is a pathogenic factor in preeclampsia. (Less)
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increased levels of cell free hemoglobin oxidation markers and the antioxidative heme scavenger alpha 1 microglobulin in preeclampsia
Free Radical Biology and Medicine, 2010Co-Authors: Magnus G Olsson, Jorgen Larsson, Magnus Centlow, Sigurbjorg Rutardottir, Irene Stenfors, Bahram Hosseinimaaf, Martin L Olsson, Stefan R Hansson, Bo ÅkerströmAbstract:Preeclampsia is a major cause of morbidity and mortality during pregnancy. To date, the pathogenesis of the disease is not fully understood. Recent studies show that preeclampsia is associated with overexpression of the hemoglobin genes alpha2 and gamma and accumulation of the protein in the vascular lumen of the placenta. Hypothesizing that cell-free hemoglobin leaks from the placenta into the maternal circulation and contributes to the endothelial damage and symptoms by inducing oxidative stress, we analyzed fetal and adult hemoglobin (HbF, HbA), haptoglobin, oxidation markers, and the heme scavenger and antioxidant alpha(1)-microglobulin in plasma, urine, and placenta in preeclamptic women (n=28) and women with normal pregnancy (n=27). The mean plasma concentrations of HbF, HbA, protein carbonyl groups, membrane peroxidation capacity, and alpha(1)-microglobulin were significantly increased in preeclamptic women. The levels of total plasma Hb correlated strongly with the systolic blood pressure. The plasma haptoglobin concentrations of women with preeclampsia were significantly depressed. Increased amounts of alpha(1)-microglobulin mRNA and protein were found in placenta from preeclamptic women, and the levels of plasma and placenta alpha(1)-microglobulin correlated with the plasma Hb concentrations. The heme-degrading form t-alpha(1)-microglobulin was significantly increased in urine in preeclampsia. These results support the idea that hemoglobin-induced oxidative stress is a pathogenic factor in preeclampsia.
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alpha 1 microglobulin a yellow brown lipocalin
Biochimica et Biophysica Acta, 2000Co-Authors: Bo Åkerström, Lennart Lögdberg, Tord Berggård, Peter Osmark, Annika LindqvistAbstract:alpha(1)-Microglobulin, also called protein HC, is a lipocalin with immunosuppressive properties. The protein has been found in a number of vertebrate species including frogs and fish. This review summarizes the present knowledge of its structure, biosynthesis, tissue distribution and immunoregulatory properties. alpha(1)-Microglobulin has a yellow-brown color and is size and charge heterogeneous. This is caused by an array of small chromophore prosthetic groups, attached to amino acid residues at the entrance of the lipocalin pocket. A gene in the lipocalin cluster encodes alpha(1)-microglobulin together with a Kunitz-type proteinase inhibitor, bikunin. The gene is translated into the alpha(1)-microglobulin-bikunin precursor, which is subsequently cleaved and the two proteins secreted to the blood separately. alpha(1)-Microglobulin is found in blood and in connective tissue in most organs. It is most abundant at interfaces between the cells of the body and the environment, such as in lungs, intestine, kidneys and placenta. alpha(1)-Microglobulin inhibits immunological functions of white blood cells in vitro, and its distribution is consistent with an anti-inflammatory and protective role in vivo.
Joachim Herz - One of the best experts on this subject based on the ideXlab platform.
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effect of the 39 kda receptor associated protein on the hepatic uptake and endocytosis of chylomicron remnants and low density lipoproteins in the rat
Journal of Biological Chemistry, 1994Co-Authors: Hiroshi Mokuno, Sandra Brady, Joachim Herz, Leila Kotite, Richard J. HavelAbstract:Abstract The low density lipoprotein (LDL) receptor-related protein, which serves as the cell surface receptor for several proteins including alpha 2-macroglobulin-protease complexes, has been proposed to be a candidate hepatocytic receptor for chylomicron remnants through its recognition of apolipoprotein E. We have studied the effect of two ligands for this receptor, activated alpha 2-macroglobulin and the recently described 39-kDa protein that copurifies with the LDL receptor-related protein (receptor-associated protein), on the uptake and endocytosis of chylomicrons in intact rats and in isolated, perfused rat livers. Both of these ligands were rapidly taken up and endocytosed into the liver of rats. Chylomicrons from normal rats were injected in vivo and chylomicrons from estradiol-treated rats that were enriched in apolipoprotein E were added to liver perfusates. Prior administration of amounts of activated alpha 2-macroglobulin that saturated hepatic uptake mechanisms did not inhibit hepatic uptake or endocytosis of endogenously labeled cholesteryl esters of chylomicron particles in vivo or in perfused livers over a period of 15 min. By contrast, prior administration of saturating amounts of the receptor-associated protein (expressed in bacteria as a fusion protein with glutathione S-transferase) reduced hepatic uptake by about 30% and virtually abolished endocytosis. The receptor-associated protein inhibited hepatic uptake of human LDL in vivo by 70% and endocytosis by 81%. Our results show that receptor-associated protein-sensitive processes predominate in the overall pathways by which chylomicron remnants are endocytosed by rat liver. Furthermore, they show that the receptor-associated protein binds to and inhibits the function of the LDL receptor as well as the LDL receptor-related protein.
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39 kda protein modulates binding of ligands to low density lipoprotein receptor related protein alpha 2 macroglobulin receptor
Journal of Biological Chemistry, 1991Co-Authors: Joachim Herz, Dudley K Strickland, Joseph L Goldstein, Michael S BrownAbstract:A 39-kDa protein of unknown function has previously been reported to copurify with the low density lipoprotein receptor-related protein (LRP)/alpha 2-macroglobulin receptor. In this study we demonstrate that a recombinant 39-kDa fusion protein can reversibly bind to the 515-kDa subunit of the LRP/alpha 2-macroglobulin receptor. This interaction inhibits the binding and uptake of the receptor's two known ligands: 1) beta-migrating very low density lipoproteins activated by enrichment with apoprotein E and 2) alpha 2-macroglobulin activated by incubation with plasma proteases or methylamine. A potential in vivo role of the 39-kDa protein is to modulate the uptake of apoE-enriched lipoproteins and activated alpha 2-macroglobulin in hepatic and extrahepatic tissues.