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Biomedical subjects

M Bachmann

Publications and source records attributed to M Bachmann.

At least 127 records · Page 7Linked to original sources

Protein kinase C phosphorylates the sponge aggregation receptor after its binding to the homologous aggregation factor.

The aggregation factor from the sponge Geodia cydonium functions also as a growth factor after binding to the aggregation receptor (= growth factor receptor) on the plasma membrane of homologous cells. We have recently shown that protein kinase C is involved in the pathway transducing the growth factor signal. Here we report that the aggregation receptor (a polypeptide with an Mr of 43,500) is phosphorylated by protein kinase C. Using a plasma membrane fraction only this phosphoprotein (pp) 43.5 became phosphorylated by kinase C. The phosphorylation of pp43.5 in intact cells in response to the binding of the aggregation factor to this polypeptide was a late event and occurred 10 to 15 h after addition of the aggregation factor. Based on studies with phorbol esters it appears to be very likely that protein kinase C also phosphorylates pp43.5 in vitro. The degree of phosphorylation of pp43.5 paralleled with both the extent of DNA synthesis and ras oncogene expression. The latter process resulted in a switch of the responsiveness of the cells to growth factors signals: 10 to 15 h after addition of the aggregation factor to dissociated cells, this factor lost its growth factor function while the homologous lectin gained the ability to stimulate cell proliferation (to be published). These results support the idea that phosphorylation of pp43.5 (= aggregation receptor) results in an inhibition of its function, i.e., the transduction of the growth factor (= aggregation factor) signal.

Amino Acids↗

Studies on protein kinases involved in regulation of nucleocytoplasmic mRNA transport.

The rate of energy-dependent nucleoside triphosphatase (NTPase)-mediated nucleocytoplasmic translocation of poly(A)-containing mRNA [poly(A)+mRNA] across the nuclear envelope is thought to be regulated by poly(A)-sensitive phosphorylation and dephosphorylation of nuclear-envelope protein. Studying the phosphorylation-related inhibition of the NTPase, we found that phosphorylation of one polypeptide of rat liver envelopes by endogenous NI- and NII-like protein kinase was particularly sensitive to poly(A). This polypeptide (106 kDa) was also phosphorylated by nuclear-envelope-bound Ca2+-activated and phospholipid-dependent protein kinase (protein kinase C). Activation of kinase C by tumour-promoting phorbol esters resulted in inhibition of nuclear-envelope NTPase activity and in a concomitant decrease of mRNA (actin) efflux rate from isolated rat liver nuclei. Protein kinase C, but not nuclear envelope NI-like or NII-like protein kinase, was found to be solubilized from the envelope by Triton X-100, whereas the presumable poly(A)-binding site [the 106 kDa polypeptide, representing the putative carrier for poly(A)+mRNA transport] remained bound to this structure. RNA efflux from detergent-treated nuclei lost its susceptibility to phorbol esters. Addition of purified protein kinase C to these nuclei restored the effect of the tumour promoters. Protein kinase C was found to bind also to isolated rat liver nuclear matrices in the absence but not in the presence of ATP. The NII-like nuclear-envelope protein kinase co-purified together with the 106 kDa polypeptide which specifically binds to poly(A) in an ATP-labile linkage.

Animals↗

Induction of gamma-interferon by avarol in human peripheral blood lymphocytes.

Avarol is a cytostatic and anti-human immunodeficiency virus (HIV) agent. In this study, the avarol caused induction of gamma-interferon (IFN-gamma) in buffy coat cells (human peripheral blood lymphocytes) is demonstrated by immunological and molecular biological techniques. IFN-gamma production was detected after a 24-hr incubation period with avarol; maximal production was obtained after 5 days in the presence of the optimal avarol concentration of 0.75 microgram/ml. Blotting experiments using human IFN-gamma cDNA and beta-actin cDNA containing plasmids showed that in the absence of avarol no IFN-gamma transcripts were present in lymphocytes. Already after a 24-hr incubation with avarol, IFN-gamma gene induction was detected, and maximal induction was found after a 5-day incubation period. The enhanced IFN-gamma production seems to be caused by a change at the transcriptional and/or post-transcriptional level, but not during subsequent nucleocytoplasmic transport of mRNA. This molecular event is specific, at least in relation to the expression of the beta-actin gene. Our studies demonstrate that avarol displays, besides its potential anti-tumor and anti-HIV activity, a potential immunomodulating effect.

Gene Expression Regulation↗

A monoclonal Ro-antibody and the serum of a Ro-positive patient with subacute cutaneous lupus erythematosus (SCLE) react with basal layers of human epidermis.

Skin lesions, especially at areas exposed to sunlight, prove to be a major form of manifestation of diseases related to Ro-antibodies and neonatal-, 'ANA-negative-', and cutaneous types of lupus erythematosus. A monoclonal Ro-antibody established by our group reacts with a 60 kD polypeptide in extracts from human spleen, whereas in extracts from human epidermis the monoclonal Ro-antibody and a purified Ro-antibody from a monospecific serum of a patient with subacute cutaneous lupus erythematosus reacted with a 60 kD and a 48 kD protein. Performing immunofluorescence microscopy on HEp2-cells both antibodies showed a nuclear speckled staining pattern and a reaction with cytokeratin filaments. On skin biopsies obtained from the patient, predominantly the basal layers of the proliferative stratum germinativum demonstrated a high rate of immunofluorescence; antigen-expression seems to depend on sunlight exposure. From these data we assume that, especially in subacute cutaneous lupus erythematosus, cross-reaction of the Ro-antibody with one of the lower molecular keratins happens in that area of human epidermis which histologically shows cellular destruction.

Antibodies, Antinuclear↗

Cytochalasin B selectively releases ovalbumin mRNA precursors but not the mature ovalbumin mRNA from hen oviduct nuclear matrix.

Hen oviduct nuclear matrix-bound mature ovalbumin mRNA is released from the matrix in the presence of ATP, while the ovalbumin mRNA precursors remain bound to this structure. Detachment of the mature mRNA from the matrix by ATP as well as ATP-dependent efflux of mRNA from isolated nuclei were found to be inhibited by cytochalasin B. On the other hand, in the absence of ATP, cytochalasin B exclusively caused the release (and nucleocytoplasmic efflux) of the ovalbumin messenger precursors, but not of the mature mRNA. After cytochalasin B treatment, actin could be detected in the matrix supernatant. Phalloidin which stabilizes actin filaments did not cause RNA liberation in the absence of ATP, but inhibited the ATP-induced detachment of mature mRNA. RNA release was also achieved with a monoclonal antibody against actin but not with monoclonal antibodies against tubulin and intermediate filaments. These results suggest that actin-containing filaments are involved in the restriction of immature messengers to the cell nucleus.

Adenosine Triphosphate↗

Mature mRNA is selectively released from the nuclear matrix by an ATP/dATP-dependent mechanism sensitive to topoisomerase inhibitors.

Ovalbumin mRNA precursors were found to be almost quantitatively associated with the hen oviduct nuclear matrix. On the other hand, only one-third of the mature ovalbumin mRNA of whole nuclei was recovered in the nuclear matrix fraction. The binding of both the high molecular weight mRNA precursors and the mature-sized mRNA to the matrix displayed no difference in stability against salt, urea, or detergents. The mature mRNA, however, was found to be released selectively from the matrix by ATP. In contrast, the mRNA precursors remained completely bound to the nuclear substructure in the presence of ATP. Detachment of mRNA from the matrix also occurred in the presence of ADP, AMP plus pyrophosphate, or ATP analogs that contain nonhydrolyzable alpha, beta and beta, gamma bonds. Contrasting with the ATP-induced effect, addition of poly(A), ethidium bromide, or the copper chelator 1,10-phenanthroline to oviduct cell matrices caused an unspecific liberation of both mature and immature ovalbumin messengers. The release of the mature mRNA by ATP was found to be strongly inhibited by both nonintercalative and intercalative inhibitors of type II topoisomerase. These results suggest that the selection of the mature mRNAs for nucleocytoplasmic transport occurs at the release stage from the matrix (i.e. before translocation through the nuclear pore) and that reactions hitherto known to cause changes in the DNA secondary structure are associated with the detachment of mRNA from the nuclear substructure.

Adenosine Triphosphate↗

Identification of the Ro and La antigens in the endoribonuclease VII--ribonucleoprotein complex.

45 S RNP (ribonucleoprotein) particles from calf thymus or L5178y mouse lymphoma cells contain the poly(A)-modulated and oligo(U)-binding endoribonuclease VII [Bachmann, Zahn & Müller (1983) J. Biol. Chem. 258, 7033-7040]. From these particles a 4.5 S RNA was isolated that possesses an oligo(U) sequence. By using monospecific and non-cross-reacting antibodies directed against the La or Ro antigen, both proteins were identified in the endoribonuclease VII-RNP complex after phosphorylation in vitro. In a second approach, endoribonuclease VII activity was identified in immunoaffinity-purified Ro RNPs after preparative isoelectric focusing. Therefore we conclude that the 4.5 S RNA belongs to the Ro RNAs. The results indicate a possible function of endoribonuclease VII in activating stored mRNAs.

Animals↗

Superoxide radical-induced loss of nuclear restriction of immature mRNA: a possible cause for ageing.

In eucaryotic cells, immature mRNA is normally restricted to the nucleus, where it is posttranscriptionally processed to mature mRNA. The intranuclear binding site for both the immature and mature mRNA is thought to be the nuclear matrix which serves as a platform for posttranscriptional RNA maturation and transport. The selectivity of nucleocytoplasmic transport for mature mRNA species seems to be due to the selectivity of the ATP-caused release of mature mRNA from the nuclear matrix; the attachment of immature mRNA to the matrix is not altered in the presence of this nucleotide. Here we show that in the presence of superoxide radical anions (O2-), which are very likely one of the causative factors in ageing, the selection mechanism for mature mRNA at the level of nuclear matrix attachment is disturbed. In the presence of a superoxide radical-generating system (xanthine/xanthine oxidase), both the mature ovalbumin mRNA and the immature ovalbumin mRNA precursors were found to be released from the nuclear matrix of hen oviduct cells, in the absence as well as in the presence of ATP. This result was also obtained when whole, isolated nuclei preincubated with xanthine/xanthine oxidase were used. The superoxide radical-caused effect could be partially prevented by co-addition of superoxide dismutase (SOD) which dismutates O2- to H2O2 and O2. On the other hand, in the presence of antibodies against the SOD, the effect of superoxide anions on RNA-matrix attachment was enhanced and its inhibition by SOD was abolished. Our results suggest that cellular ageing may be partially caused by superoxide radical-induced release of immature mRNA from its intranuclear binding site resulting in the appearance of immature messengers in the cytoplasm. This may cause both qualitative and quantitative changes in protein synthesis. Thus, ageing may be associated not only with the expression of genes coding for proteins not characteristic for the proper state of differentiation of a given cell (as suggested by the dysdifferentiative hypothesis of ageing) but also with impaired maturation of the primary gene transcripts due to the interference of superoxide radicals, not sufficiently eliminated by antioxidant mechanisms with age, with RNA-matrix attachment.

Adenosine Triphosphate↗

Investigations on DNA binding in rat liver and in Salmonella and on mutagenicity in the Ames test by emodin, a natural anthraquinone.

Emodin (1,6,8-trihydroxy-3-methylanthraquinone), an important aglycone found in natural anthraquinone glycosides frequently used in laxative drugs, was mutagenic in the Salmonella/mammalian microsome assay (Ames test) with a specificity for strain TA1537. The mutagenic activity was activation-dependent with an optimal amount of S9 from Aroclor 1254-treated male Sprague-Dawley rats of 20% in the S9 mix (v/v) for 10 micrograms emodin per plate. Heat inactivation of the S9 for 30 min at 60 degrees C prevented mutagenicity. The addition of the cytochrome P-448 inhibitor 7,8-benzoflavone (18.5 nmoles per plate) reduced the mutagenic activity of 5.0 micrograms emodin per plate to about one third, whereas the P-450 inhibitor metyrapone (up to 1850 nmoles per plate) was without effect. To test whether a metabolite binds covalently to Salmonella DNA, [10-(14)C]emodin was radiosynthesized, large batches of bacteria were incubated with [10-(14)C]emodin and DNA was isolated. [G-3H]Aflatoxin B1 (AFB1) was used as a positive control mutagen known to act via DNA binding. DNA obtained after aflatoxin treatment could be purified to constant specific activity. With emodin, the specific activity of DNA did not remain constant after repeated precipitations so that it is unlikely that the mutagenicity of emodin is due to covalent interaction of a metabolite with DNA. The antioxidants vitamin C and E or glutathione did not reduce the mutagenicity. Emodin was also negative with strain TA102. Thus, oxygen radicals are probably not involved. When emodin was incubated with S9 alone for up to 50 h before heat-inactivation of the enzymes and addition of bacteria, the mutagenic activity did not decrease. It is concluded that the mutagenicity of emodin is due to a chemically stable, oxidized metabolite forming physico-chemical associations with DNA, possibly of the intercalative type. In order to check whether an intact mammalian organism might be able to activate emodin to a DNA-binding metabolite, radiolabelled emodin was administered by oral gavage to male SD rats and liver DNA was isolated after 72 h. Very little radioactivity was associated with the DNA. Considering that DNA radioactivity could also be due to sources other than covalent interactions, an upper limit for the covalent binding index, CBI = (mumoles chemical bound per moles DNA nucleotides)/(mmoles chemical administered per kg body weight) of 0.5 is deduced. This is 10(4) times below the CBI of AFB1.(ABSTRACT TRUNCATED AT 400 WORDS)

Aflatoxin B1↗

Permeability measurements with closed vesicles from rat liver nuclear envelopes.

Closed nuclear envelope ghosts in the physiological orientation were prepared from rat liver and nuclei as previously described. Here we report transport measurements of various proteins and ribonucleic acids across the envelope of these vesicles. Histones were accumulated rapidly in the ghosts, in contrast to other, nonnuclear, proteins. Triton X-100 removal of the external nuclear membrane from loaded vesicles, as well as comparative studies with open vesicles, excluded the effects of external adsorption. The exchange rate of histones across the nuclear envelope is strongly depressed in the presence of GTP and GDP. The vesicles contain the translocation mechanism for poly(A)-containing RNA. The translocation of poly(A), messenger RNA, and ribosomal RNA was investigated after entrapment of these nucleic acids during the preparation of vesicles. Our data show that the complete export of only poly(A)-containing RNA from the vesicles is enhanced in the presence of 2 mM ATP. This RNA, as well as poly(A), is transported unidirectionally.

Animals↗

Deoxyspergualin, a potent antitumor agent: further studies on the cytobiological mode of action.

Under otherwise identical conditions, deoxyspergualin preferentially inhibits the growth of the T-cell leukemia line L5178y; an effective dose for a 50% inhibition (ED50) of 0.0007 microM was determined. A much weaker cytostatic activity was found for murine lymphocytes (ED50: approximately 25 microM) and for CV-1 monkey kidney cells (ED50: 16.3 microM). Deoxyspergualin causes biphasic and differential effects on DNA metabolism of murine T and B lymphocytes. At lower concentrations (0.3 approximately 5 microM) the [3H]TdR incorporation into nonactivated or lipopolysaccharide-activated lymphocytes is significantly stimulated by the compounds; this effect was not observed with lymphocyte cultures stimulated with concanavalin A. This change of TdR incorporation rates was found to parallel with the variations of DNA polymerase alpha activity. Deoxyspergualin causes an additive effect together with bleomycin and a significant synergistic cytostatic effect in combination with avarol and avarone. Moreover, it is reported that deoxyspergualin causes neither a selective inhibitory effect on DNA-, RNA- or protein synthesis nor an alteration of the intracellular distribution pattern of the Ro and La antigens. However, detailed enzymic studies revealed that deoxyspergualin reduces DNA polymerase alpha but not beta activity in lymphocytes at the ED50 concentration of this compound. These results support previous documentations that deoxyspergualin is of potential clinical usefulness (a) in treatment of certain tumors and (b) in organ transplantation.

Animals↗

Age-correlated changes in the lupus erythematosus antigens Ro, La, Sm and RNP of the thymus gland.

The concentrations of the Sm, RNP, La and Ro antigens of thymus glands from rats were determined depending on the developmental stage of the animals. It was found that lupus antigens strongly decrease after birth. Parallel with this change, the activities of the enzymes DNA polymerase alpha and terminal nucleotidyl transferase in the thymus glands drop during maturation and ageing. These biochemical analyses were supported by immunofluorescence studies using human thymus glands. Moreover, it is documented that a redistribution of Sm and Ro occurs during development. Focusing on Sm, fetal thymus glands contain this antigen predominantly in the cytoplasm, while in immature, mature or old animals Sm is found almost exclusively in the nucleus. From these data we conclude that the amounts of the lupus antigens are additional parameters for the age-correlated function of thymocytes.

Aging↗

Satisfactory primary tetanus antitoxin responses but markedly reduced germinal centre formation in first draining lymph nodes of ageing mice.

The present report deals with primary antibody responses to tetanus toxoid in 50-54-week-old ('ageing') as compared to 8-9-week-old ('young adult') mice. Antitoxin in the serum appeared 6 days earlier in the older than in the young animals, but in the latter reached 5 times higher titres on day 20. The magnitude of the proliferative response in the paracortex and the medulla of popliteal lymph nodes, as estimated by combined 3H-thymidine autoradiography and planimetry, was 3-7 times greater in the younger than in the older age group, thus approximately reflecting the difference in antibody titres on day 20. In contrast, germinal centre formation in response to the stimulus proved to be about 14 times less in ageing than in young adult mice. The findings demonstrate that, in the model system used, the age-related slopes of decline in humoral antibody responsiveness and proliferative reactivity in paracortex and medulla of first regional lymph nodes tend to be in parallel, while the ability of the immune apparatus to form germinal centres at this site deteriorates at a considerably faster pace. Results are also in line with the notion that centroblasts/centrocytes contribute little, if anything, to the ongoing antibody production elicited by the same stimulus which had triggered germinal centre formation. Finally, the observations made disprove the general validity of the suggestion that immune reactivity is maintained on the same level throughout life if tested with a novel antigen.

Aging↗

Differential changes of nuclear-envelope-associated enzyme activities involved in nucleocytoplasmic mRNA transport in the developing rat brain and liver.

Nucleocytoplasmic transport of rat liver mRNA is thought to be regulated by a nucleoside triphosphatase whose activity in the intact nuclear envelope is stimulated by the 3'poly(A) tail of poly(A)+ mRNA. In contrast to the liver mRNA, the mRNA from rat brain contains a great population of poly(A)- mRNA's that does not appear until after birth. Measurements of the nuclear-envelope-associated enzyme activities involved in mRNA transport, and their dependence on endogenous (isolated cytoplasmic mRNA-transport-stimulating proteins) and exogenous (poly(A), lectins, and neoglycoproteins) factors during prenatal and postnatal rat brain and liver development, revealed marked organ-dependent differences paralleling the appearance of the poly(A)- mRNA unique in the brain.

Animals↗

Proteins from rat liver cytosol which stimulate mRNA transport. Purification and interactions with the nuclear envelope mRNA translocation system.

Two polysome-associated proteins with particular affinities for poly(A) have been purified from rat liver. These proteins stimulate the efflux of mRNA from isolated nuclei in conditions under which such efflux closely stimulates mRNA transport in vivo, and they are therefore considered as mRNA-transport-stimulatory proteins. Their interaction with the mRNA-translocation system in isolated nuclear envelopes has been studied. The results are generally consistent with the most recently proposed kinetic model of mRNA translocation. One protein, P58, has not been described previously. It inhibits the protein kinase that down-regulates the NTPase, it enhances the NTPase activity in both the presence and the absence of poly(A) and it seems to increase poly(A) binding in unphosphorylated, but not in phosphorylated, envelopes. The other protein, P31, which probably corresponds to the 35,000-Mr factor described by Webb and his colleagues, enhances the binding of poly(A) to the mRNA-binding site in the envelope, thus stimulating the phosphoprotein phosphatase and, in consequence, the NTPase. The possible physiological significance of these two proteins is discussed.

Animals↗