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Biomedical subjects

J Najbauer

Publications and source records attributed to J Najbauer.

18 recordsLinked to original sources

Molecular aging of tubulin: accumulation of isoaspartyl sites in vitro and in vivo.

The formation of isoaspartyl sites during aging of rat tubulin in vitro and in vivo has been studied. When incubated in vitro at pH 7.4, 37 degrees C, purified rat brain tubulin accumulated isoaspartyl sites at a rate > or = 2.4 isoaspartyl sites per 100 tubulin subunits (50 kDa) per day for 30 days. Isoaspartate levels were estimated by the transfer of radiolabeled methyl groups from S-adenosyl-L-[methyl-3H]-methionine in a reaction catalyzed by protein-L-isoaspartyl methyltransferase. isoaspartate formation occurred in parallel with, but was not dependent upon, extensive cross-linking of tubulin via formation of intermolecular disulfide bonds. When rat PC12 cells were incubated for 24 or 72 h in the presence of adenosine dialdehyde, a potent methyltransferase inhibitor, a substantial and consistent increase in the isoaspartate content of tubulin was observed. This suggests that tubulin constantly undergoes isoaspartate formation in vivo, but that the levels are normally kept low by methylation-dependent repair. These findings support the hypothesis that protein-isoaspartyl methyltransferase plays a key role in countering spontaneous damage reactions to proteins associated with cell aging. These results also suggest that tubulin is an important target for protein-isoaspartyl methyltransferase in vivo.

Animals

Olfactory experience modulates Bcl-2 expression in the developing olfactory bulb.

The effect of olfactory deprivation on cellular expression of the Bcl-2 gene in the olfactory bulb of young rats was investigated. Restriction of olfactory stimuli caused an overall increase in Bcl-2 mRNA expression, with increases seen in the lateral aspects of glomerular, external plexiform, mitral and granule cell layers, as well as the medial aspects of external plexiform layer. No differences were found in the unoperated control group. In addition, we found an inverse relationship between the incidence of apoptosis induced by olfactory deprivation and the magnitude of increase in Bcl-2 mRNA expression in the glomerular layer. These data raise the possibility that Bcl-2 may be involved in olfactory experience-related neural plasticity by regulating cell survival.

Animals

Olfactory experience modulated apoptosis in the developing olfactory bulb.

Early sensory stimulation plays a key role in shaping the structure and function of the developing olfactory system. Here, we provide the first direct evidence for apoptotic cell death in the olfactory bulbs of rat pups during normal development and we also demonstrate that olfactory deprivation by unilateral naris occlusion causes a dramatic increase in apoptotic cell death in the glomerular and granule cell layers of the deprived bulb. The accessory olfactory bulbs displayed a remarkably high basal level of apoptosis but the occluded accessory bulb did not differ in that regard from the control accessory bulb. These results suggest that apoptosis may be an important mechanism by which the olfactory system can adjust its cell numbers in response in sensory stimuli experienced in early life, thereby underlying one form of plasticity in the developing olfactory system.

Animals

Peptides with sequences similar to glycine, arginine-rich motifs in proteins interacting with RNA are efficiently recognized by methyltransferase(s) modifying arginine in numerous proteins.

Several proteins that interact with RNA, e.g. the heterogenous ribonucleoprotein particle A and B proteins, fibrillarin and nucleolin, contain the modified amino acid NG,NG-dimethylarginine. Here, we report that two synthetic peptides, Ac-GGRGGFGGRGGFGGRGGFG-NH2 (R3) and GGFGGRGGFG-NH2 (R1), which are based on methylated sequences in fibrillarin and nucleolin, inhibit the methylation of a large majority of the methyl-accepting proteins observed in extracts of adenosine dialdehyde-treated PC12 cells. Concomitantly, the peptides themselves become methylated, suggesting that they compete for the same enzyme that carries out the bulk of N-methylation in PC12 cells. R3 potently inhibits formation of NG,NG-dimethylarginine in PC12 substrates, with a lesser effect on NG-monomethylarginine and NG,N'G-dimethylarginine. Bovine brain contains an activity that methylates PC12 methyl acceptors. After partial purification, the bovine methyltransferase efficiently modifies R3 and R1, yielding half-maximal rates of methylation at approximately 0.2 and approximately 2 microM peptide, respectively. A search of the GenPept database for the FGGRGGF motif revealed 13 candidate methyl acceptors containing arginine and at most two similar substitutions or one mismatch. Of these, 10 are known or presumed to interact with RNA. These findings are consistent with the hypothesis that a majority of proteins containing NG,NG-dimethylarginine interact with RNA.

Amino Acid Sequence

Accumulation of substrates for protein L-isoaspartyl methyltransferase in adenosine dialdehyde-treated PC12 cells.

Protein isoaspartyl methyltransferase is implicated in the repair of age-damaged proteins containing atypical, isoaspartyl linkages. To test the prediction that isoaspartyl proteins would accumulate during methyltransferase inhibition, rat PC12 cells were treated with the indirect methylation inhibitor, adenosine dialdehyde. We observed a marked, dose- and time-dependent, reversible accumulation of substrates for the enzyme that closely paralleled the elevation of its competitive inhibitor, S-adenosylhomocysteine. The accumulation of substrates also paralleled a cytostatic action of adenosine dialdehyde; however, 30 microM 3-deazaadenosine, another indirect methylation inhibitor, also caused an accumulation of substrates without affecting cell division, and other cytostatic agents did not affect substrate levels. Acidic gel electrophoresis revealed increased methyl-accepting capacity in a broad spectrum of proteins, with predominant increases in discrete bands of M(r) 46,000 and 110,000. A major substrate (M(r) 17,400) in untreated cells did not increase in methyl-accepting capacity during treatment. Methyl groups at the accumulated sites did not survive conventional electrophoresis, indicating the lability characteristic of isoaspartyl methyl esters in damaged proteins. These results are consistent with an involvement of the methyltransferase in the metabolism of damaged proteins, and they provide a basis for the characterization of physiological substrates for the enzyme.

Adenosine

Analysis of stable protein methylation in cultured cells.

It was demonstrated recently that substrates for protein N-methyltransferases (J. Najbauer and D. W. Aswad, 1990, J. Biol. Chem. 265, 12,717-12,721) and protein carboxyl methyltransferases (J. Najbauer, B. A. Johnson, and D. W. Aswad, 1991, Anal. Biochem. 197, 412-420) accumulate when rat PC12 cells are cultured in the presence of the methylation inhibitor, adenosine dialdehyde. In the present report, we have further characterized this phenomenon in PC12 cells and in two other, widely used cell types. Adenosine dialdehyde was found to increase the methyl-accepting capacity of proteins in human skin fibroblasts and mouse Sp2/0 myeloma cells. However, both the level of methyl incorporation in untreated cells and the amount of stimulation afforded by inhibitor treatment were substantially lower in these cells than in PC12 cells. All three cell lines accumulated methyl acceptor(s) at 17-21 kDa. The PC12 cells and the fibroblasts also exhibited stimulation of three apparently similar proteins in the 33- to 38-kDa region, where several arginine-methylated proteins involved in RNA processing would be expected. The optimal conditions for methylation of PC12 cell extracts with regard to pH, time of methylation, and S-[methyl-3H]adenosyl-L-methionine concentration were characterized. Increased methyl incorporation was detected after adenosine dialdehyde treatments as short as 2 h, and methylation of most substrates continued to increase as the time of treatment was extended to 72 h. The kinetics of accumulation varied from substrate to substrate. Fluorograms of two-dimensional gels of extracts from untreated PC12 cells incubated in the presence of S-[methyl-3H]adenosyl-L-methionine revealed patterns of methyl incorporation similar to those of treated cells, but longer exposure times were necessary (e.g., 35 days vs 7 days). These findings suggest that the inhibitor treatment works mainly by inhibiting the post- or cotranslational methylation of a "normal" array of cellular proteins.

Adenosine

Amplification and detection of substrates for protein carboxyl methyltransferases in PC12 cells.

A strategy that facilitates the identification of substrates for protein carboxyl methyltransferases that form "stable" methyl esters, i.e., those that remain largely intact during conventional polyacrylamide gel electrophoresis is described. Rat PC12 cells were cultured in the presence of adenosine dialdehyde (a methylation inhibitor) to promote the accumulation of hypomethylated proteins. Nonidet P-40 cell extracts were then incubated in the presence of S-[methyl-3H]adenosyl-L-methionine to label methyl-accepting sites via endogenous methyltransferases. After labeled proteins were separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, gel slices were incubated in 4 N methanesulfonic acid or 6 N HCl to hydrolyze methyl esters. The resulting [3H]methanol was detected by trapping in liquid scintillation fluid. Seven carboxyl methylated proteins were observed with masses ranging from 18 to 96 kDa. Detection of five of these proteins required prior treatment of cells with adenosine dialdehyde, while methyl incorporation into one protein at 18 kDa was substantially enhanced by the treatment. The use of acidic conditions for methyl ester hydrolysis has an important advantage over assays that utilize alkaline hydrolysis conditions. In PC12 cells, and possibly other cell types where there are significant levels of arginine methylation, the methanol signal becomes obscured by high levels of volatile methylamines generated under the alkaline conditions. Carrying out diffusion assays under acidic conditions eliminates this interference. Adenosine dialdehyde, by virtue of increasing the methyl-accepting capacity of substrates for protein carboxyl methyltransferases, in combination with a more selective assay for carboxyl methylation, should prove useful in the isolation and characterization of new protein carboxyl methyltransferases and their substrates.

Adenosine

Long-term effect of immunization with neural and nonneural antigens on the noradrenaline and serotonin levels of discrete brain areas in mice and the relationship between neurotransmitter levels and antibody production.

The effect of immunization with neural and nonneural antigens on hypothalamic and mesencephalic neurotransmission and antibody response have been investigated. Treatment of SJL/N mice with bovine myelin basic protein (BMBP), mouse spinal cord homogenate (MSCH) or bovine serum albumin (BSA) produced no significant changes in the average hypothalamic and mesencephalic noradrenaline (NA) or serotonin (5-HT) content. In Balb/c mice, however, treatment with BMBP caused a significant increase in mesencephalic NA, and treatment with MSCH caused a significant increase in hypothalamic 5-HT 3 weeks after the first antigenic challenge. The SJL/N strain showed a high antibody response to BMBP and BSA, and a moderate one to MSCH, while in Balb/c mice, there was a low response to BMBP, a moderate one to MSCH and a high response to BSA. Significant, positive correlations were found between the level of antigen-specific serum antibodies and the following neurotransmitters: hypothalamic NA in the BMBP and MSCH-treated groups, hypothalamic 5-HT in the MSCH-treated group, mesencephalic NA and 5-HT in the BMBP-treated group, and mesencephalic 5-HT in the MSCH-treated SJL/N animals. No significant correlations between the levels of antibodies and neurotransmitters have been found either in the BSA-immunized SJL/N animals, or in any of the groups of Balb/c mice treated with BMBP, MSCH or BSA.

Animals

Diversity of methyl acceptor proteins in rat pheochromocytoma (PC12) cells revealed after treatment with adenosine dialdehyde.

Protein N-methylation is a widespread modification whose functions are poorly understood. To overcome the inherent technical difficulties in identification of N-methylated proteins, we cultured PC12 cells with a methylation inhibitor, in expectation that proteins would accumulate in a hypomethylated state. Cell extracts were then incubated with [methyl-3H]S-adenosyl-L-methionine to label methyl-accepting sites via endogenous methyltransferases. Using two-dimensional gel electrophoresis we detected over 50 methyl acceptors, ranging from 18 to 120 kDa. Most had isoelectric points greater than 7.0. NG,NG-Dimethylarginine and NG-monomethylarginine accounted for about 90% of the methyl-3H-amino acids recovered after acid hydrolysis and thin-layer chromatography. The production of hypomethylated proteins should prove useful, not only in the identification of new methyl acceptors, but also in the isolation and characterization of new methyltransferases.

Adenosine

Non-specific peroxidase (donor: H2O2-oxidoreductase, EC 1.11.1.7) activity in multiple sclerosis.

The non-specific peroxidase (donor: H2O2-oxidoreductase, EC 1.11.1.7) activity of red blood cells in patients with multiple sclerosis, patients with other neurological diseases, and healthy control individuals was investigated. To this end, a simple method was developed. No significant difference was found in the non-specific peroxidase activity of red blood cells from patients with multiple sclerosis and controls.

Adult

Modulation of cell-cell and cell-antigen interactions by 1,25-dihydroxyvitamin D3 and vitamin D3 sulfate in vitro: a study on pregnancy lymphocytes and hybridoma cells.

The effect of 1,25-dihydroxyvitamin D3 (1,25(OH)2D3) was investigated in single cell cytotoxicity assays, using K-562 target cells. The action of vitamin D3 sulfate (VD3S) in natural cytotoxicity assays as well as its effect on the antigen-specific adherence of hybridoma cells has also been studied. In the single cell cytotoxicity assay 1,25(OH)2D3 dose-dependently and significantly increased the binding of PBMC to target, the number of lysed target cells and NK activity. RU486, a compound known as a potent blocker of progesterone and glucocorticoid receptors, suppressed the effect of 1,25(OH)2D3 in all systems. VD3S dose-dependently decreased the natural cytotoxicity of PBMC and the binding of hybridoma cells to antigen immobilized on plastic surfaces. The results suggest that both 1,25(OH)2D3 and VD3S are potent modulatory agents in cell-cell and cell-antigen interactions.

Adult

Positive autoradiographic findings in brains of four MS patients.

Autoradiography of brain slices from 4 multiple sclerosis (MS) and 9 control patients was performed. After 6 weeks of exposure the exact picture of the white matter appeared on the X-ray films in all cases with MS, but only in one of the controls. The high level of autoradiographic signal from MS white matter suggests that an abnormal accumulation of radioactive trace elements takes place within the brains of MS victims.

Adolescent

An in vitro micromethod for the quantitative assessment of central demyelination.

We report the development of a simple and reliable method for the study of demyelination in vitro based on the measurement of 2':3'-cyclic nucleotide 3'-phosphodiesterase in isolated myelin. Using only small quantities of myelin (equivalent to 100 micrograms of myelin protein) the system was tested under conditions that are believed to approximate those found at the site of an inflammatory demyelinating lesion. Treatment with a combination of trypsin, phospholipase A2, and lysophosphatidylcholine was used to evaluate the method. This microsystem has the potential not only for testing the myelinotoxicity of soluble factors but also for investigating the involvement of inflammatory cells in the demyelinating process. Myelin degradation by elicited peritoneal macrophages could be demonstrated at relatively high densities of these cells. Nylon wool purified lymph node T cells from myelin basic protein-primed SJL/J mice, after selective expansion with antigen and interleukin 2, failed to induce any significant myelin breakdown unless a limited number of syngeneic activated macrophages were also present. T cells from mice that had been inoculated with keyhole limpet haemocyanin failed to show any effect. The advantages of this technique over other in vitro systems are that it enables the study of demyelination using syngeneic sources of myelin and defined cell populations.

2',3'-Cyclic-Nucleotide Phosphodiesterases

Adherence of cells to myelin basic protein. I. Adherence of red and white blood cells from patients with multiple sclerosis to myelin basic protein.

Red blood cells (RBC) and white blood cells (WBC) of patients with multiple sclerosis (MS) show decreased adherence to myelin basic protein (MBP) immobilized on plastic surfaces compared to the binding of cells from patients with other neurological diseases (OND), or such other autoimmune diseases as psoriasis (PS), and to that of healthy controls (HC). No similar phenomenon occurred to basic and non-basic type proteins other than MBP, for example, to histone (HIS), lysozyme (LYS) and ovalbumin (OVA). Thus, decreased adherence of RBC and WBC in MS patients to MBP appears to be a unique feature of the disease if compared with OND or PS.

Cell Adhesion

Adherence of cells to myelin basic protein. II. Adherence of red blood cells of SJL mice with chronic relapsing EAE.

Adherence of red blood cells from SJL mice suffering of chronic relapsing experimental allergic encephalomyelitis was studied to myelin basic protein coated microtiter plates. Control animals received either bovine serum albumine or "protein-antigen free" adjuvant using the same immunization protocol. Characteristic changes in adherence were found in bovine or human myelin basic protein injected animals compared to the bovine serum albumine immunized group. After a nonspecific increase in adherence between Days 2 to 6 observed in all 3 groups, in the encephalitogen challenged animals on Days 13-14 a marked decrease in red blood cell adherence was detected which maintained at this decreased level during the clinically active stage of the disease and reappeared with the relapse of EAE. No such decreased adherence of red blood cells was observed in BSA immunized animals or in adherence of cells from myelin basic protein injected animals to other basic type protein such as histone. Thus, decreased adherence of red blood cells in animals with EAE appears to be an interestingly unique measure of the disease activity.

Animals

The effect of "facteur thymique serique" (FTS) on catecholamine and serotonin neurotransmission in discrete brain regions of mice.

The dose-related effect of Facteur Thymique Serique (FTS) on hypothalamic, mesencephalic and striatal neurotransmission were investigated after intracerebroventricular (icv) administration. FTS pretreatment with dose of 1 microgram (icv) increased the mesencephalic serotonin content, while failed to influence the hypothalamic and striatal serotonin levels. The nonapeptide in a dose of 0.1 microgram (icv) decreased the hypothalamic, while in a dose of 1 microgram the hypothalamic and also the mesencephalic dopamine content, but did not influence the striatal dopamine level. FTS in a dose of 1 microgram (icv) significantly decreased the hypothalamic noradrenaline level, but did not influence the noradrenaline content of the mesencephalon and striatum. These results suggest that FTS is able to modify central neurotransmission.

Animals

Antigen-specific adherence of antibody-producing hybridoma cells: application to neural and nonneural antigens.

Antibody-producing hybridoma cells specifically bind to microgram quantities of antigen molecules adsorbed onto the surface of plastic microtiter plates. The binding of hybridoma cells to nonantigen is optimally below 5%, similar binding of non-antibody-producing cells is 4-7%, compared to the binding of the hybridomas to their antigen. There is a difference in the kinetics of binding hybridomas to antigen compared to nonantigen. The number of bound cells depends on the amount, i.e., the surface density, of the antigen molecules and shows typical saturation effects. Preincubation of hybridomas with excess free antigen and saturation of the antibody binding site on the surface with the hybridoma-produced antibody reduces binding of the hybridoma cells to the antigen. Treatment of cells with trypsin reduces binding to antigen-coated plastic surfaces. Drugs such as sodium azide, cytochalasin B, colchicine, vinpocetine, and vincristine sulfate reduce binding to the antigen. Hybridoma cells adhering to the antigen produce more antibody than nonadhering cells. The results reported in this paper show that antigen molecules adsorbed to include a plastic surface and hybridoma cells interact specifically. This system forms a suitable model to study the interaction of antigen with antigen-specific cells and may be useful as a separation method for specific antibody-producing cells.

Animals

Antigen-specific cell adherence assay: a new method for separation of antigen-specific hybridoma cells.

A new method for the detection and separation of antigen-specific antibody-producing cells on the basis of antibody-mediated recognition of solid-phase immobilized antigen molecules is described. Hybridoma cells are placed on microtiter plate wells coated with antigen molecules, and antigen-specific antibody-producing cells bind to the immobilized antigen molecules; antibody nonproducing or nonspecific antibody-producing cells can be easily separated from the bound cells by inverting the plate. Cells bound to solid-phase immobilized antigen molecules can readily be quantitated by counting under a light microscope, and the cells recovered can produce antibody in culture. Unspecific binding of cells in antigen-specific cell adherence assay (ASCAA) is optimally below 5%. Also, effect of drugs interfering with processes related to antibody production of antigen-specific cells can be detected and evaluated by ASCAA.

Animals