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T Inuzuka

Publications and source records attributed to T Inuzuka.

90 records · Page 5Linked to original sources

Myelin-associated glycoprotein in the central and peripheral nervous system of quaking mice.

The myelin-associated glycoprotein (MAG) was quantitated in the CNS and PNS of quaking mice and the levels compared to the levels of myelin basic protein (MBP) and 2':3'-cyclic nucleotide 3'-phosphodiesterase (CNPase) activity. In the brainstems of 36-day-old quaking mice, MBP, MAG, and CNPase were reduced to 12, 16, and 29% of control levels, respectively. In the sciatic nerves of the 36-day-old quaking mice, MBP and CNPase were 38 and 75% of control levels, respectively, whereas the concentration of MAG was unchanged or slightly increased. Similar quantitative results were obtained for the sciatic nerves and spinal roots of 7-month-old quaking mice. Immunoblots showed that the principal MAG band from the brainstems, sciatic nerves, and spinal roots of the quaking mice had a higher than normal apparent Mr. In addition, there was a minor component reacting with anti-MAG antiserum in the brainstems of the quaking mice that had a slightly lower Mr than control MAG and was not detected in the normal mice. The results for the quaking mice are compared with those from similar studies on other mutants with dysmyelination of the CNS and PNS.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

Neutral protease in cerebrospinal fluid from patients with multiple sclerosis and other neurological diseases.

Neutral protease activity was significantly elevated in the cerebro-spinal fluid of patients with multiple sclerosis (MS) in exacerbation and in the acute phase of acute viral meningoencephalitis (AME) compared with that of MS in remission, amyotrophic lateral sclerosis or psychosomatic disease. Since in each relapse of MS, protease activity was higher in exacerbation than in remission, this activity may be one good marker of disease activity in MS. One hundred micro molar of FOY305, synthetic protease inhibitor, inhibited in vitro increased neutral protease activity in MS in exacerbation, which suggests the possibility of a clinical application of this protease inhibitor for MS.

Amyotrophic Lateral Sclerosis↗

Degradation of myelin basic protein in myelin by protease in cerebrospinal fluid and effects of protease inhibitors.

Neutral protease is shown to be present in cell-free human cerebrospinal fluid. Incubation of heated human myelin with CSF at 25 degrees C resulted in a marked reduction of myelin basic protein (MBP) with time. Degradation products appeared at apparent mol wt 14 KDa and 12 KDa on polyacrylamide gel electrophoresis. Optimal pH of the protease was 7.0. This protease was activated by calcium ion. Degradation of MBP was inhibited by FOY305 (camostat mesilate), Trasylol, and Leupeptin, but not a specific calcium-activated neutral protease inhibitor, E-64-a. FOY305, which is a synthesized specific serine protease inhibitor, was the strongest inhibitor of all. The role of this protease in CSF has not been elucidated. In may be related to the physiological turnover of MBP, and may affect myelin maintenance in pathological conditions such as demyelination.

Humans↗

Characterization of the antigenic determinant on HSB-2 cells shared with myelin-associated glycoprotein (MAG) using monoclonal antibodies.

The existence of cross-antigenicity between myelin-associated glycoprotein (MAG) and natural killer cells has been reported previously. In this study, we have characterized the antigenic determinant on HSB-2 cells which is shared with MAG using two types of mouse monoclonal anti-MAG antibodies, one recognizing the peptide molecule (IgG-P) and the other recognizing the carbohydrate molecule of MAG (IgM-C). Enzyme-linked immunosorbent assay (ELISA) revealed that IgM-C was absorbed by cell homogenate of HSB-2, and some bands were stained by IgM-C on the immunoblot of HSB-2 cell homogenate, while IgG-P was not absorbed by HSB-2 cell homogenate and no band was stained by IgG-P on the immunoblot of HSB-2 cell homogenate. Therefore it is suggested that the shared antigenic determinant between MAG and HSB-2 cells is not in the peptide molecule but in the carbohydrate molecule.

Antibodies, Monoclonal↗

Quantitation of the myelin-associated glycoprotein in human nervous tissue from controls and multiple sclerosis patients.

Myelin-associated glycoprotein (MAG) was measured by radioimmunoassay in the human CNS and peripheral nervous system (PNS). The level of MAG, expressed as ng/microgram of total protein, was approximately 20-fold higher in whole homogenates of cerebral white matter (4.7 +/- 0.60) than of peripheral nerve (0.12-0.28). MAG concentrations were only slightly higher in the isolated myelin fractions from these tissues: CNS myelin, 5.6 ng/microgram; PNS myelin, 0.37 ng/microgram. The levels of MAG were measured in nine plaques, periplaque regions, and areas of macroscopically normal-appearing white matter (NAWM) from six separate multiple sclerosis brains and compared with the levels of other myelin proteins in the same samples. MAG and other myelin proteins were reduced to very low levels in plaques. The levels of MAG and basic protein (BP) and the activity of 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNP) in periplaque areas were significantly lower than those in control white matter, and MAG and BP levels were also significantly reduced in NAWM. In a periplaque region and NAWM from the most rapidly progressing case of multiple sclerosis examined, the MAG content was between 30 and 35% of the control level, whereas BP and PLP levels and CNP activity were between 50 and 85% of control values. The reduction of MAG content in periplaque regions from all nine multiple sclerosis plaques examined was significantly greater than the reductions of BP level and CNP activity. In NAWM samples, the mean reduction of MAG content was also greater than the reductions of BP level and CNP activity, but the difference was only statistically significant in comparison to CNP.(ABSTRACT TRUNCATED AT 250 WORDS)

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

Production and characterization of monoclonal antibodies against myelin-associated glycoprotein.

Monoclonal antibodies against myelin-associated glycoprotein were generated by fusing mouse myeloma cells with spleen lymphocytes from BALB/c mice immunized with human myelin-associated glycoprotein purified from CNS myelin. Three groups of antibodies were identified: IgG antibodies recognizing the polypeptide moiety and IgG and IgM antibodies recognizing the carbohydrate moiety of the intact molecule. Properties of these antibodies were examined with sodium dodecyl sulfate-polyacrylamide gel electrophoresis and the immunostaining technique using human CNS and peripheral nerve myelin, and ganglioside fractions isolated from human brain and peripheral nerve, and with immunohistochemical staining of human peripheral nerves. Part of human peripheral blood mononuclear cells was stained with the antibodies against the carbohydrate moiety, but not with IgG antibodies recognizing the polypeptide moiety. Natural killer activity was partially reduced after treatment of human peripheral blood lymphocytes with an IgM antibody and complement in vitro. The possibility that anti-myelin-associated glycoprotein antibodies might play a role in the pathogenesis of demyelinating diseases through modification of natural killer activity is discussed.

Animals↗

Anti-myelin-associated glycoprotein antibody in sera from patients with demyelinating diseases.

An enzyme-linked immunosorbent assay (ELISA) was developed for quantitating anti-myelin-associated glycoprotein (MAG) IgM antibody in human sera. Absorbance values of anti-MAG antibody were higher than 0.2 at 1:80 of serum dilution in sera from some patients with demyelinating diseases of the central or peripheral nervous systems including multiple sclerosis, subacute sclerosing panencephalitis, Guillain-Barré syndrome, chronic relapsing polyradiculoneuritis and carcinomatous polyneuropathy and also some patients with autoimmune diseases such as collagen diseases and myasthenia gravis. However, absorbance values of anti-MAG antibody in sera from control individuals and patients with some other neurological diseases were less than 0.2 and considered as negative. Because of the reported existence of a cross antigenicity between MAG and lymphocyte, and especially natural killer cells, the possibility of the functional importance of anti-MAG antibody on cellular immunity is discussed with particular reference to the demyelinating diseases.

Autoantibodies↗

Chronic T cell leukemia with a NK phenotype reacting with anti-myelin-associated glycoprotein (MAG) mouse monoclonal antibody.

We describe a patient demonstrating chronic T cell leukemia with a natural killer (NK) phenotype. The leukemic cells could be stained by OKT 3 (T cells), anti-Leu-7 and anti-myelin-associated glycoprotein (MAG) (NK cells) but not anti-Leu-11 monoclonal mouse antibody (activated NK cells). Fresh mononuclear cells showed a very low NK activity, although this activity returned to normal levels after 18 days incubation with interleukin-2 and some stimulants. It was not known why the NK activity of fresh mononuclear cells was low. This report is the first on leukemia characterized by anti-MAG monoclonal antibody.

Antibodies, Monoclonal↗

Myelin proteins in the CNS of 'shaking pups'.

Myelin proteins were quantitated in whole tissue and isolated 'myelin fractions' from spinal cord, brainstem and hemispheres of 'shaking pups', a mutation in Springer-Spaniel dogs characterized by hypomyelination of the CNS. The amount of myelin basic protein (MBP) in the brainstem of affected 4-week-old pups was 2.6% of that in age-matched controls, while the levels of 2'3'-cyclic nucleotide phosphodiesterase (CNP) and myelin-associated glycoprotein (MAG) were 10% and 15% of the control levels, respectively. Similar results were obtained in the spinal cord and hemispheres, and the amounts of these proteins in the mutant pups did not change substantially between 4 and 16 weeks of age. The amount of the 21 kDa MBP compared to the 18 kDa MBP was relatively increased in the shaking pups, suggesting that the small amount of myelin formed was immature. The yields of myelin fractions from the mutant pups were very low; e.g., the yield from the brainstems of 4-week-old mutants was only 2.4% of that from age-matched controls and the yield did not increase by 16 weeks. The isolated myelin fractions contained very little MBP (less than 0.5% of total protein) or proteolipid protein, indicating that they were a very immature form of myelin or consisted largely of non-myelin contaminants. MAG in the 'myelin fractions' from the mutant brainstems were 9-15 fold higher and CNP levels were 2-3 fold higher than those in whole homogenates, suggesting that the isolated fractions were enriched in oligodendroglia-derived membranes. Overall, the biochemical results are consistent with a severe hypomyelination of the CNS in which a small amount of immature myelin is formed.

Animals↗

Human natural killer cell activity is reduced by treatment of anti-myelin-associated glycoprotein (MAG) monoclonal mouse IgM antibody and complement.

Human mononuclear cells could be stained by anti-myelin-associated glycoprotein (MAG) monoclonal mouse IgM antibody. The remaining human natural killer (NK) cell activity examined by using K-562 cells at 20:1 as effector:target ratio after treatment of anti-MAG monoclonal mouse or anti-Leu-7 (HNK-1) antibody and complement revealed 13.4% and 15.1%, respectively (untreated NK activity was 40.8%). However, human NK activity could be abrogated by anti-Leu-11 and complement. The remaining NK activity shown as lytic units after treatment with anti-MAG, anti-Leu-7 or anti-Leu-11 and complement was 6.1, 5.3 and below 1.0, respectively (untreated NK cells showed 15.4). When NK activity was examined in another target cell, MOLT-4, the remaining activity shown as lytic units was also decreased with anti-MAG antibody (4.3) or with anti-Leu-7 (3.0) (untreated NK activity was 8.3). Our findings suggest that NK cells may be influenced by anti-MAG antibody if it is found in the sera as anti-lymphocytotoxic antibody.

Animals↗

The species distribution of nervous system antigens that react with anti-myelin-associated glycoprotein antibodies.

The reactivity of monoclonal and polyclonal antibodies directed against human central nervous system (CNS) myelin-associated glycoprotein (MAG) was investigated in a number of animal species. The antibodies included mouse monoclonal antibodies obtained by immunization with human MAG; HNK-1, a mouse monoclonal antibody raised against a human lymphoblastoma and used to identify a subset of lymphocytes with natural killer function; human IgM paraproteins associated with neuropathy; and polyclonal antibodies obtained from rabbits immunized with rat or human MAG. Following polyacrylamide gel electrophoresis of CNS and peripheral nervous system (PNS) tissue from human, bovine, cat, rabbit, guinea pig, rat, mouse, frog, gold fish and chicken, proteins were electrophoretically transferred onto nitrocellulose. The immune-staining of electroblots showed distinct interspecies variation in the reactivity of the antibodies with MAG. In addition, the species distribution of several low molecular weight glycoproteins present in PNS tissue that cross-react with anti-MAG antibodies was determined. These low molecular weight antigens are not present in CNS homogenates or in purified human CNS myelin. It was also shown that IgM from a patient with peripheral neuropathy and paraproteinemia associated with anti-MAG antibodies recognized these low molecular weight antigens. The results suggest that IgM paraproteins, HNK-1 and some mouse monoclonal antibodies react with carbohydrate determinants shared by MAG and several lower molecular weight glycoproteins present only in human, bovine, cat and chicken PNS. Rabbit polyclonal anti-rat MAG antisera and mouse monoclonal antibodies reacting with peptide epitopes of MAG are much more specific for detecting MAG than antibodies reacting with carbohydrate epitopes of human MAG. The results are discussed in relation to human demyelinating peripheral neuropathy associated with IgM paraproteinemia.

Animals↗

Myelin-associated glycoprotein and other proteins in Trembler mice.

The myelin-associated glycoprotein (MAG) and other myelin proteins were quantitated in homogenates of whole sciatic nerve from adult and 20-day-old Trember mice. In the nerves of adult mice, the concentration of MAG was increased from 1.1 ng/micrograms of total protein in the controls to 1.4 ng/micrograms protein in the Tremblers. By contrast, the concentrations of P0 glycoprotein and myelin basic proteins were reduced to 27% and 20% of control levels, respectively. Immunoblots demonstrated that P2 was also greatly reduced in the Trembler nerves. The specific activity of 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNP) was 65% of the control level. Immunoblot analysis showed that MAG had a higher than normal apparent Mr in the sciatic nerves of the Trembler mice, but its apparent Mr was normal in the brains of these mutants. In 20-day-old Tremblers, the P0 and myelin basic protein were reduced slightly less to about 40% of the level in the nerves of age-matched controls. CNP and MAG levels were not significantly different from those in controls, and MAG exhibited a shift toward higher apparent Mr similar to that in the adults. The maintenance of high MAG levels despite the severe deficit of myelin, as reflected by the decrease of the major myelin proteins, is consistent with the immunocytochemical localization of MAG in periaxonal Schwann cell membranes, Schmidt-Lantermann incisures, lateral loops, and the outer mesaxon and its absence from compact myelin. The abnormal form of MAG in the peripheral nervous system (PNS) of the Trembler mice may contribute to the pathology in this mutant.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

A human lymphocyte antigen is shared with a group of glycoproteins in peripheral nerve.

The monoclonal antibody HNK-1 binds to a carbohydrate determinant in the myelin-associated glycoprotein (MAG) and other glycoproteins of human peripheral nerve. Some glycoproteins of lower Mr than the major P0 glycoprotein of myelin appear to bind more antibody than MAG. These glycoproteins electrophorese in the Mr range of 20,000 to 26,000 and are present in the purified myelin fraction. The results indicate that an antigen on the surface of a subset of lymphocytes is shared with a group of glycoproteins in human peripheral nerve. The antigen appears to be similar to that recognized by IgM paraproteins associated with a type of neuropathy.

Antibodies, Monoclonal↗

Effects of trypsin and plasmin treatment of myelin on the myelin-associated glycoprotein and basic protein.

Human and rat myelin preparations were incubated with varying concentrations of trypsin and plasmin to determine the effects of these proteolytic enzymes on myelin-associated glycoprotein (MAG), basic protein, and other myelin proteins and to compare the effects with those of the neutral protease that was reported to be endogenous in myelin. Basic protein was most susceptible to degradation by both trypsin and plasmin, whereas MAG was relatively resistant to their actions. Under the assay conditions used, the highest concentrations of trypsin and plasmin degraded greater than 80% of the basic protein but less than 30% of the MAG, and lower concentrations caused significant loss of basic protein without appreciably affecting MAG. Neither trypsin nor plasmin caused a specific cleavage of MAG to a derivative of MAG (dMAG) in a manner analogous to the endogenous neutral protease. Thus the endogenous protease appears unique in converting human MAG to dMAG much more rapidly than it degrades basic protein. MAG is slowly degraded along with other proteins when myelin is treated with trypsin or plasmin, but it is less susceptible to their action than is basic protein.

Animals↗