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Biomedical subjects

L Persson

Publications and source records attributed to L Persson.

At least 235 records · Page 13Linked to original sources

Comparison of ornithine decarboxylase from rat liver, rat hepatoma and mouse kidney.

Comparisons were made of ornithine decarboxylase isolated from Morris hepatoma 7777, thioacetamide-treated rat liver and androgen-stimulated mouse kidney. The enzymes from each source were purified in parallel and their size, isoelectric point, interaction with a monoclonal antibody or a monospecific rabbit antiserum to ornithine decarboxylase, and rates of inactivation in vitro, were studied. Mouse kidney, which is a particularly rich source of ornithine decarboxylase after androgen induction, contained two distinct forms of the enzyme which differed slightly in isoelectric point, but not in Mr. Both forms had a rapid rate of turnover, and virtually all immunoreactive ornithine decarboxylase protein was lost within 4h after protein synthesis was inhibited. Only one form of ornithine decarboxylase was found in thioacetamide-treated rat liver and Morris hepatoma 7777. No differences between the rat liver and hepatoma ornithine decarboxylase protein were found, but the rat ornithine decarboxylase could be separated from the mouse kidney ornithine decarboxylase by two-dimensional gel electrophoresis. The rat protein was slightly smaller and had a slightly more acid isoelectric point. Studies of the inactivation of ornithine decarboxylase in vitro in a microsomal system [Zuretti & Gravela (1983) Biochim. Biophys. Acta 742, 269-277] showed that the enzymes from rat liver and hepatoma 7777 and mouse kidney were inactivated at the same rate. This inactivation was not due to degradation of the enzyme protein, but was probably related to the formation of inactive forms owing to the absence of thiol-reducing agents. Treatment with 1,3-diaminopropane, which is known to cause an increase in the rate of degradation of ornithine decarboxylase in vivo [Seely & Pegg (1983) Biochem. J. 216, 701-717] did not stimulate inactivation by microsomal extracts, indicating that this system does not correspond to the rate-limiting step of enzyme breakdown in vivo.

Animals↗

Ornithine decarboxylase activity and polyamines in the anterior pituitary gland during the rat oestrous cycle.

The biosynthesis of polyamines, an ubiquitous group of amines shown to be essential for normal cellular growth and differentiation, was studied in the rat anterior pituitary gland during the different stages of the oestrous cycle. The activity of ornithine decarboxylase (ODC), which catalyses the rate-limiting step in the biosynthesis of polyamines, was low during oestrus, metoestrus and dioestrus. However, a marked transitory rise in ODC activity was found in the pituitary gland on the evening of pro-oestrus. The rise in ODC activity was accompanied by an increase in the pituitary content of the polyamines putrescine and spermidine. Ovariectomy did not significantly change the basal ODC activity in the pituitary gland. Oestrogen treatment of ovariectomized rats resulted in a marked stimulation of pituitary polyamine biosynthesis. The largest effects were observed when oestrogen was given as two injections 72 h apart, which gave rise to levels of ODC activity comparable to those observed on the evening of pro-oestrus. The increase in polyamine synthesis in the anterior pituitary gland during pro-oestrus appeared not to be related to the preovulatory secretion of LH or prolactin, since neither LH-releasing hormone nor thyrotrophin-releasing hormone (which induces a secretion of prolactin) affected pituitary ODC activity. The observed biosynthesis of polyamines may be associated with the cellular proliferation which occurs in the anterior pituitary gland at oestrus.

Animals↗

Thymidine kinase in brain-tumor cysts.

A recently developed method for deoxythymidine kinase (TK) determination was applied to brain-tumor cyst fluid and fluid from a non-neoplastic intracerebral cyst. The fluid from all tumors tested positive for TK whereas the non-neoplastic cyst lacked TK. Cyst fluid was also analyzed for TK before and after intracystic instillation of BCNU. It is suggested that TK activity in the fluid in cystic brain lesions could prove useful in deciding whether an intracerebral lesion is neoplastic. Also, TK activity can be used to evaluate the effect of topical therapy.

Brain Neoplasms↗

Studies of the induction of spermidine/spermine N1-acetyltransferase using a specific antiserum.

A specific antiserum to rat liver spermidine/spermine N1-acetyltransferase was used to study the induction of this protein. The antiserum had no effect on the spermidine acetylating capacity of crude nuclear extracts and very little effect on the activity present in crude cytosolic extracts from control rat tissues indicating that most of this activity is not due to spermidine/spermine N1-acetyltransferase. Treatment of rats with carbon tetrachloride, spermidine, thioacetamide, or methylglyoxal bis(guanylhydrazone) produced a substantial increase in the spermidine acetylating capacity of rat liver cytosolic extracts which was exclusively due to an increase in the immunoprecipitable spermidine/spermine N1-acetyltransferase protein. Exact measurement of the extent of this increase was not possible because the basal amount was too low to determine precisely but the amount of this enzyme increased about 250-fold with 6 h of treatment with carbon tetrachloride, about 25-fold at 6 h after spermidine, about 23-fold at 24 h after thioacetamide and up to 300-fold at 24 h after methylglyoxal bis(guanylhydrazone). Treatment of rats with spermidine also increased spermidine/spermine N1-acetyltransferase in other tissues including lung, kidney, and pancreas. The spermidine/spermine N1-acetyltransferase protein was found to turn over very rapidly with a half-life of about 15 min in thioacetamide-treated rats and 180 min after carbon tetrachloride.

Acetyltransferases↗

Differential inhibition of histone and polyamine acetylases by multisubstrate analogues.

Mammalian cells contain a number of enzymes catalyzing the acetylation of polyamines and histones including an inducible spermidine/spermine N1-acetyltransferase which may play a key role in regulating the interconversion of polyamines [Matsui, I., Wiegand, L., & Pegg, A. E. (1981) J. Biol. Chem. 256, 2454-2459]. The present experiments were carried out in order to provide a method to distinguish this enzyme from other polyamine/histone acetylases and to test whether specific inhibitors of its activity could be obtained. Rabbit antiserum to homogeneous rat liver spermidine/spermine N1-acetyltransferase had no effect on the activity of a crude nuclear extract from rat liver, indicating that its spermidine acetylating capability is not related to the cytosolic spermidine/spermine N1-acetyltransferase induced by hepatotoxins. Potential multisubstrate analogues were prepared by attaching various polyamines to coenzyme A via an acetic acid linkage and tested as potential inhibitors of the acetylation of spermidine and histones. There was little difference in the potency of these polyamine derivatives as inhibitors of histone or spermidine acetylation by the crude nuclear extracts which appeared to contain at least two such activities, one inhibited completely by 20-30 microM and the other amounting to 50% of the total being unaffected by 100 microM. Spermidine/spermine N1-acetyltransferase was also inhibited by all the derivatives, but the potency toward this enzyme differed widely. The derivative from sym-norspermidine was a very strong inhibitor, giving 50% inhibition at 0.3 microM, and was more than 1 order of magnitude more active than the others.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetyl Coenzyme A↗

Investigation of structure and rate of synthesis of ornithine decarboxylase protein in mouse kidney.

An immunoblotting technique was used to study the forms of ornithine decarboxylase present in androgen-induced mouse kidney. Two forms were detected which differed slightly in isoelectric point but not in subunit molecular weight (approximately 55 000). Both forms were enzymatically active and could be labeled by reaction with radioactive alpha-(difluoromethyl)-ornithine, an enzyme-activated irreversible inhibitor. On storage of crude kidney homogenates or partially purified preparations of ornithine decarboxylase, the enzyme protein was degraded to a smaller size (Mr approximately 53 000) without substantial loss of enzyme activity. The synthesis and degradation of ornithine decarboxylase protein were studied by labeling the protein by intraperitoneal injection of [35S]methionine and immunoprecipitation using both monoclonal and polyclonal antibodies. The fraction of total protein synthesis represented by renal ornithine decarboxylase was increased at least 25-fold by testosterone treatment of female mice and was found to be about 1.1% in the fully induced androgen-treated female. Both forms of the enzyme were rapidly labeled in vivo, and the immunoprecipitable ornithine decarboxylase protein was almost completely lost after 4-h exposure to cycloheximide, confirming directly the very rapid turnover of this enzyme. Treatment with 1,3-diaminopropane which is known to cause a great reduction in ornithine decarboxylase activity did not greatly selectively inhibit the synthesis of the enzyme. However, 1,3-diaminopropane did produce an increase in the rate of degradation of ornithine decarboxylase and a general reduction in protein synthesis. These two factors, therefore, appear to be responsible for the loss of ornithine decarboxylase activity and protein in response to 1,3-diaminopropane.

Animals↗

Studies of mammalian ornithine decarboxylase using a monoclonal antibody.

A monoclonal antibody of the immunoglobulin M class was produced against mouse kidney ornithine decarboxylase. Screening for the antibody was carried out using alpha-difluoromethyl[5-3H]ornithine-labelled ornithine decarboxylase. The antibody reacted with this antigen and with native ornithine decarboxylase. The antibody attached to Sepharose could be used to form an immunoaffinity column that retained mammalian ornithine decarboxylase. The active enzyme could then be eluted in a highly purified form by 1.0M-sodium thiocyanate. The monoclonal antibody could also be used to precipitate labelled ornithine decarboxylase from homogenates of kidneys from androgen-treated mice given [35S]methionine. Only one band, corresponding to Mr of about 55000, was observed. The extensive labelling of this band is consistent with the rapid turnover of ornithine decarboxylase protein, since this enzyme represents only about 1 part in 10000 of the cytosolic protein.

Animals↗

Deoxythymidine-kinase in cerebrospinal fluid: a new potential "marker" for brain tumours.

A recently developed method for deoxythymidine kinase (dTK) determination was applied to cerebrospinal fluid (CSF) and serum samples, derived from "healthy" individuals and from patients with non-neoplastic or neoplastic disorders of the brain. No dTK activity could be detected in the CSF of healthy individuals or in patients with hydrocephalus or cranio-cerebral trauma. dTK levels ranging from detectable to high were found in the CSF of patients with malignant primary brain tumours or secondary brain tumours, while in some cases of low grade primary brain tumours dTK could not be detected in the CSF. CSF samples taken before and after treatment were available both in some patients with CNS involvement of malignant lymphomas and in some with primary brain tumours. The dTK activity rapidly declined after chemotherapy intrathecally and irradiation, as well as after surgery. Enhanced CSF dTK was not only a feature of malignant CNS processes, but was also found in patients with cerebral haemorrhage penetrating into the CSF. The origin of dTK in CSF and the practical use of quantifying it is discussed.

Astrocytoma↗

Smooth muscle cell hypertrophy and hyperplasia in the rat detrusor after short-time infravesical outflow obstruction.

Infravesical outflow obstruction of a duration of 3 days, 10 days and 6 weeks was induced in female rats by a standardized degree of urethral obstruction. A striking ability of the detrusor to respond to an acute obstruction with both smooth muscle cell hypertrophy and hyperplasia leading to an approximately 10-fold increase of the total muscle mass of the bladder wall after 6 weeks of obstruction was found. The maximum relative growth rate was greatest in the bladders subjected to obstruction for only 3 days, and this was also reflected by the concentrations of ornithine decarboxylase and the polyamines spermidine and spermine. The total amount of DNA in the detrusor was already significantly increased after 3 days, while a 9-fold increase was observed in the group subjected to obstruction for 6 weeks. At this time the smooth muscle cell nucleus volume also showed a considerable increase, and a comparison of the nucleus density and the DNA concentration suggested an increased mean DNA content per muscle cell nucleus. The concentration of RNA in the detrusor had already increased significantly after 3 days and also remained so after 10 days and 6 weeks of obstruction, a finding that coincided with the abundant appearance of nucleoli seen at electron microscopic investigation. The previously reported decreased ability to pressure production at small volumes in the rat urinary bladder subjected to an acute infravesical outflow obstruction might thus, at least in part, be due to changed contractile properties of the hypertrophic cells, and/or to an inefficient incorporation of the newly formed smooth muscle cells.

Animals↗

Localization of ornithine decarboxylase in mutant CHO cells that overproduce the enzyme. Differences between the intracellular distribution of monospecific ornithine decarboxylase antibodies and radiolabeled alpha-difluoromethylornithine.

The intracellular localization of ornithine decarboxylase (ODC), a key enzyme in polyamine synthesis and cell growth, is a matter of present debate. Using two independent methods of analysis, we have attempted to determine the actual distribution of ODC in a mammalian cell. To overcome the problem of a normally very low cellular ODC content, we have used ODC overproducing mutant CHO cells. These mutant cells exhibit a 10-fold higher ODC activity than do the wild type cells. The localization of ODC protein in exponentially growing cells, was determined by indirect immunofluorescence microscopy (permeabilized whole-cell preparations and 1 micron sections), using a monospecific ODC antibody. The intracellular localization of catalytically active ODC was determined by light and electron microscope autoradiography following pulselabeling of cells with alpha-difluoromethyl(5-3H)ornithine (3H-DFMO) at the time of peak ODC activity. alpha-Difluoromethylornithine (DFMO) is an enzyme-activated irreversible inhibitor of ODC and binds covalently to the active enzyme. The specificity of this reaction in the cell was ascertained by immunoprecipitation of 3H-DFMO-labeled ODC. ODC (as determined by both methods) was present in all the cells of a serum-stimulated monolayer culture. The highest concentration of ODC protein and of catalytically active ODC was observed in the smallest and most rapidly proliferating cells. Polyploid and multinuclear cells always exhibited the lowest concentrations.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Unscheduled DNA synthesis induced by N-acetoxy-2-acetylaminofluorene is not sensitive to regulation by ADP-ribosyl transferase.

We have directly compared in resting human mononuclear leukocytes the DNA repair effects caused by ADP-ribosyl transferase (ADPRT) activity following DNA damage induction by gamma radiation, UV radiation, ethylene oxide (EO) and N-acetoxy-2-acetylaminofluorene (NA-AAF). The presence of inhibitors of ADPRT during the quantitation of unscheduled DNA synthesis (UDS) resulted in about a 2-fold increase of UDS when induced by gamma radiation, UV radiation or EO. The stimulation of UDS by EO, UV- or gamma-radiation in the presence of an ADPRT inhibitor was equally strong whether 1 mM or 10 mM hydroxyurea was used to suppress scheduled DNA synthesis. The level of NA-AAF induced UDS was not affected by inhibitors of ADPRT. In addition, direct estimation of ADPRT activity revealed that at doses giving maximal UDS, NA-AAF damage did not induce a measurable enzymatic activity whereas gamma-radiation, UV radiation and EO all showed a significant dose response increase. We have interpreted our data to mean that NA-AAF induced UDS estimates DNA repair relating mainly to DNA lesions that are recognized with difficulty, and hence, the rate of endonuclease-induced DNA strand break accumulation is not sufficient to allow a stimulation of ADPRT and affect the quantitation of UDS.

2-Acetylaminofluorene↗

Polyamine metabolism in muscles of mice and rats.

Polyamine biosynthesis in different types of muscle was studied in mice and rats. A sex difference of polyamine biosynthesis in the gastrocnemius of the mouse was demonstrated. Ornithine decarboxylase activity was found to be several-fold higher in the gastrocnemius of the male mouse than in that of the female. Orchiectomy resulted in a decline of enzyme activity in the gastrocnemius. This effect was reversed by the administration of testosterone. The elevation of ornithine decarboxylase activity in the gastrocnemius by testosterone was reflected in an increased content of the polyamines in the muscle. Muscles of other types, i.e. soleus, heart and urinary bladder were shown to be virtually unresponsive to testosterone treatment. Neither were the muscles of the rat, including gastrocnemius, found to be affected by the androgen.

Animals↗

Immunohistochemical localization of ornithine decarboxylase in the rat ovary.

The present report describes the immunocytochemical localization of ornithine decarboxylase in the prepubertal rat ovary after administration of human chorionic gonadotropin (HCG). Numerous ornithine decarboxylase immunoreactive cells appeared in the thecal layer as well as in the interstitial gland tissue after treatment with HCG. The granulosa cells, the ovum and the ovarian stroma were devoid of immunoreactive ornithine decarboxylase. In contrast to the ovary of HCG-treated rats, the ovary of prepubertal rats given the vehicle alone contained only a few weakly immunoreactive cells.

Animals↗

Virus-induced demyelination in herpes simplex virus-infected mice.

Herpes simplex virus (HSV) infection of the mouse trigeminal ganglia and the brain stem is associated with demyelination of axons in the central part of the trigeminal root and inflammatory cell infiltration and perivascular demyelination in the brain stem. Cyclophosphamide (CPA) treatment prior to or soon after HSV inoculation caused increased axonal spread of infective virus from the peripheral site of inoculation, more widespread and severe demyelination and increased mortality, suggesting that by CPA the virus invasion of the CNS was facilitated. A direct cytocidal effect of HSV on myelinating cells seemed one plausible explanation for the demyelination. Influence on demyelination at late stages of infection by cytotoxic immune reactions are not excluded by the results reported but seemed not to dominate the picture. Schwann cells from the peripheral part of the nerve root invaded demyelinated areas in the brain stem and remyelinated the axons.

Animals↗

Neuron to neuron transmission of herpes simplex virus. Transport of virus from skin to brainstem nuclei.

Herpes simplex virus (HSV) injection into the snout of mice was followed by the appearance of HSV antigen in neurons in trigeminal ganglia, main sensory and spinal tract trigeminal nuclei, reticular formation including raphe nuclei and locus ceruleus on both sides. The findings indicate that HSV spreads via axons, passes through a series of neurons and in this way can reach vital nuclei in the brainstem including monoaminergic neurons from the primary replication area in the lip.

Animals↗