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J Lauber

Publications and source records attributed to J Lauber.

At least 37 records · Page 2Linked to original sources

Identification of an RNA-dependent ATPase activity in mammalian U5 snRNPs.

Nuclear pre-mRNA splicing requires ATP at several steps from spliceosome assembly to product release. Here, we demonstrate that an integral component of the 20S U5 snRNP is an RNA-dependent ATPase. The ATPase activity of 20S U5 and 25S [U4/U6.U5] snRNPs purified by glycerol gradient centrifugation is strongly stimulated by homopolymeric RNA but not ssDNA. Purified 12S Ul and U2 snRNPs do not exhibit ATPase activity. Moreover, the U5-associated NTPase specifically hydrolyzes ATP and dATP. The additional purification of 20S U5 snRNPs by Mono Q chromatography does not affect the efficiency of ATP hydrolysis. Both U5 and tri-snRNPs bind ATP stoichiometrically in an RNA-independent manner. A candidate ATPase was identified by UV-irradiation of purified snRNPs with radiolabeled ATP. In the presence of homopolymeric RNA, the 200 kDa U5-specific protein is the major crosslinked protein, even in Mono Q-purified U5 snRNPs. The correlation between RNA-dependent ATPase activity in the U5 snRNP and the RNA-dependent onset of this crosslink strongly suggests that the 200 kDa protein is an RNA-dependent ATPase. Furthermore, both the formation of the crosslink and ATPase activity appear with a similar substrate specificity for ATP.

Adenosine Triphosphatases↗

Developmental expression of murine Beta-trace in embryos and adult animals suggests a function in maturation and maintenance of blood-tissue barriers.

The complete cDNA for murine Beta-trace protein was isolated by RT-PCR using degenerate primers designed according to amino acid sequences derived from tryptic peptides. It encodes a protein of 165 amino acids (calculated molecular weight 18,472 Da) with a predicted 24-amino-acid leader peptide. In situ analyses during mouse embryonic development and in adult animals revealed a specific temporal expression pattern of Beta-trace. Beta-Trace mRNA was initially detected at 14.5 days postconception in mesenchymal cells destined to become leptomeninges and in the developing testis. Later in development, a lower level of expression was additionally observed in choroid plexus epithelium, in strictly confined regions of the eye (pigment and ciliary epithelium), in the ear (cochlear duct), and within single cells in the brain. Expression was also found in epithelia of the epididymis and the testis Leydig cells of postpubertal animals. The highly specific expression at blood-tissue barriers such as the blood-cerebrospinal fluid, blood-retina blood-aqueous humor, and blood-testis barriers indicates a potential role for this lipocalin in transport and/or in maturation and maintenance of these barriers.

Amino Acid Sequence↗

Constitutive secretion of beta-trace protein by cultivated porcine choroid plexus epithelial cells: elucidation of its complete amino acid and cDNA sequences.

Primary porcine choroid plexus epithelial cells cultivated in chemically defined medium maintain their epithelial characteristics and form confluent monolayers. They produce a fluid the composition of which resembles cerebrospinal fluid. The present study demonstrates constitutive secretion of large amounts of beta-trace protein. This intrathecally synthesized protein is a prominent polypeptide constituent of natural cerebrospinal fluid. According to the identity of amino acid sequences it has previously been tentatively identified as a prostaglandin-D synthase and as a member of the lipocalin protein family. beta-Trace was purified from cell culture supernatants and was subjected to tryptic digestion and amino acid sequencing of the resulting peptides. The complete primary structure of the protein was obtained by additional isolation of the cDNA from cultured epithelial cells. The porcine 163-amino acid polypeptide showed 69% identity with the human beta-trace and contained two N-glycosylation sites occupied by complex-type oligosaccharides as is the case for the human protein. The amino acid sequences around the N-glycosylation sites of mammalian beta-trace proteins (porcine, human, murine, and rat) were highly conserved. The nucleotide sequence was found to be less conserved; the porcine cDNA had a strikingly high GC-content (67%). The constitutive secretion of beta-trace protein from the in vitro cultivated porcine choroid plexus epithelial cells demonstrates that the cells have retained their major in vivo physiological properties: secretion of cerebrospinal fluid proteins. Therefore, this in vitro culture system may be used as a versatile tool for studying the regulation of the formation of cerebrospinal fluid.

Amino Acid Sequence↗

Chronic progressive external ophthalmoplegia is associated with a novel mutation in the mitochondrial tRNA(Asn) gene.

Chronic progressive external ophthalmoplegia (CPEO) is caused by a decreased oxidative phosphorylation (OXPHOS) activity due to large-scale deletions of the mitochondrial genome in 50% of the patients. The deletions encompass structural OXPHOS genes as well as tRNA genes, required for their expression so that the pathogenesis could be due to the deleted OXPHOS subunits or to an impaired mitochondrial translation. We have analyzed the mitochondrial genome of a patient presenting with CPEO for single base substitutions and discovered a novel heteroplasmic mutation in the tRNA(Asn) gene at position 5692 that converts a highly conserved adenine into a guanine. This mutation is unique because it is located at the transition of the anticodon loop to the anticodon stem and it leads to an additional base pair, thus reducing the number of loop-forming nucleotides from seven to five. Our findings suggest that CPEO can be caused by a single base substitution in a mitochondrial tRNA gene so that the mitochondrial protein synthesis becomes the rate limiting step in OXPHOS fidelity.

Base Sequence↗

Time-dependent effects of parathyroid hormone and prostaglandin E2 on DNA synthesis by periosteal cells from embryonic chick calvaria.

Both PGE2 and PTH (1-34) caused a time- and concentration-dependent stimulation of proliferation by embryonic chick periosteal cells. Cells were exposed to the agents for different periods of time, the medium was replaced with fresh medium, and 3H-TdR incorporation was measured after 16 hours. Challenge with 10(-6) M prostaglandin E2 (PGE2) or 10(-7) M parathyroid hormone (1-34) (PTH) for 5 minutes produced 4- and 5.5-fold increases in 3H-TdR incorporation, respectively. Longer exposures, however, produced diminishing responses and after 45 minutes, only minimal effects or slight inhibitions were seen. These time-dependent effects were also seen with forskolin and dibutyryl-cAMP; TPA on the other hand stimulated DNA synthesis after both short- and long-term exposure. Both PGE2 and PTH (1-34) stimulated cAMP synthesis in periosteal cells but neither could be shown to stimulate protein kinase-C (PKC) at concentrations required for stimulation of proliferation, and dibutyryl-cyclic AMP (cAMP) effectively inhibited endogenous PKC activity. It is possible that the stimulation of proliferation by short-term exposure to PGE2 and PTH (1-34) is mediated by cAMP and that the time dependency possibly stems from the inhibition of endogenous PKC activity by increased intracellular cAMP levels.

Animals↗

An investigation of indoor air contamination in residences above dry cleaners.

An investigation of residences located above dry cleaning facilities was conducted to determine whether indoor and outdoor air concentrations of the dry cleaning solvent tetrachloroethene (perchloroethylene, PCE) were elevated compared to residences not near a dry cleaning facility. Data were also collected on the dry cleaners' operating conditions and equipment. Significantly elevated levels of PCE were found in the indoor air of each of six apartments located above dry cleaners compared to control residences for both day and night samples. The PCE concentrations in outdoor air near the dry cleaners were also significantly elevated compared to control locations and were lower than the concentrations measured indoors. The type of dry cleaning machine was significantly associated with the concentration of PCE found in the apartment above. A strong correlation was also found between the day and night PCE levels in the study apartments.

Air Pollutants, Occupational↗

Experimental absence seizures: potential role of gamma-hydroxybutyric acid and GABAB receptors.

We have investigated whether the pathogenesis of spontaneous generalized non-convulsive seizures in rats with genetic absence epilepsy is due to an increase in the brain levels of gamma-hydroxybutyric acid (GHB) or in the rate of its synthesis. Concentrations of GHB or of its precursor gamma-butyrolactone (GBL) were measured with a new GC/MS technique which allows the simultaneous assessment of GHB and GBL. The rate of GHB synthesis was estimated from the increase in GHB levels after inhibition of its catabolism with valproate. The results of this study do not indicate significant differences in GHB or GBL levels, or in their rates of synthesis in rats showing spike-and-wave discharges (SWD) as compared to rats without SWD. Binding data indicate that GHB, but not GBL, has a selective, although weak affinity for GABAB receptors (IC50 = 150 microM). Similar IC50 values were observed in membranes prepared from rats showing SWD and from control rats. The average GHB brain levels of 2.12 +/- 0.23 nmol/g measured in the cortex and of 4.28 +/- 0.90 nmol/g in the thalamus are much lower than the concentrations necessary to occupy a major part of the GABAB receptors. It is unlikely that local accumulations of GHB reach concentrations 30-70-fold higher than the average brain levels. After injection of 3.5 mmol/kg GBL, a dose sufficient to induce SWD, brain concentrations reach 240 +/- 31 nmol/g (Snead, 1991) and GHB could thus stimulate the GABAB receptor. Like the selective and potent GABAB receptor agonist R(-)-baclofen, GHB causes a dose-related decrease in cerebellar cGMP. This decrease and the increase in SWD caused by R(-)-baclofen were completely blocked by the selective and potent GABAB receptor antagonist CGP 35348, whereas only the increase in the duration of SWD induced by GHB was totally antagonized by CGP 35348. The decrease in cerebellar cGMP levels elicited by GHB was only partially antagonized by CGP 35348. These findings suggest that all effects of R(-)-baclofen are mediated by the GABAB receptor, whereas only the induction of SWD by GHB is dependent on GABAB receptor mediation, the decrease in cGMP being only partially so. Taken together with the observations of Marescaux et al. (1992), these results indicate that GABAB receptors are of primary importance in experimental absence epilepsy and that GABAB receptor antagonists may represent a new class of anti-absence drugs.

4-Butyrolactone↗

Mutations in mitochondrial tRNA genes: a frequent cause of neuromuscular diseases.

We have sequenced the tRNA genes of mtDNA from patients with chronic progressive external ophthalmoplegia (CPEO) without detectable mtDNA deletions. Four point mutations were identified, located within highly conserved regions of mitochondrial tRNA genes, namely tRNA(Leu)(UAG), tRNA(Ser)(GCU), tRNA(Gly) and tRNA(Lys). One of these mutations (tRNA(Leu)(UAG)) was found in four patients with different forms of mitochondrial myopathy. An accumulation of three different tRNA point mutations (tRNA(Leu)(UAG)), tRNA(Ser)(GCU) and tRNA(Gly) was observed in a single patient, suggesting that mitochondrial tRNA genes represent hotspots for point mutations causing neuromuscular diseases.

Adult↗

Phenylethylamine-induced stereotypies in the rat: a behavioral test system for assessment of MAO-B inhibitors.

Stereotyped sniffing behavior together with forepaw padding--defined as the beta-phenylethylamine (PEA) syndrome--is induced by MAO-B inhibitors in rats injected with 30 mg/kg IP PEA. The comparison of the abilities of the MAO-B inhibitors to induce the syndrome and to inhibit MAO-B in rat brain homogenates indicated that at least 75% of MAO-B activity in rat brain had to be inhibited to induce the PEA syndrome. A good correlation was found between the abilities of MAO-B inhibitors to induce the behavioral syndrome and to increase levels of PEA in rat brain. Specific MAO-A inhibitors potentiated the behavioral effect of the MAO-B inhibitor deprenyl, while they did not induce the syndrome themselves or only at very high doses. Inhibitors of the reuptake of 5-HT or noradrenaline were inactive under the described experimental conditions. This behavioral test system seems to be a useful in vivo screening test in rats for detecting compounds with strong MAO-B inhibiting activity.

Animals↗

Determination of 2-phenylethylamine in rat brain after MAO inhibitors, and in human CSF and urine by capillary GC and chemical ionization MS.

A highly specific and sensitive method for the determination of beta-phenylethylamine (PEA) in biological material is presented. It involves prepurification of the extracts on Sep-Pak C18 cartridges, derivatization with heptafluorobutyric acid anhydride, gas chromatography on 50 m capillary columns and quantification by chemical ionization mass spectrometry. Using this method, levels of PEA in the rat brain and the effects of various monoamine oxidase (MAO) inhibitors thereon have been determined. PEA control levels were found to vary considerably: the lowest and highest values found were 0.4 and 12.5 ng/g tissue (n = 25). Within one and the same control group, the variation was somewhat smaller. The preferential or specific inhibitors of MAO A, amiflamine, cimoxatone, CGP 11305 A, moclobemide and toloxatone did not alter rat brain PEA even at high doses. In contrast, the preferential inhibitors of MAO B, deprenil, pargyline and MD 780236, as well as the nonselective agent tranylcypromine, caused strong (up to about 60-fold) increases. The threshold doses corresponded to those which caused about an 80% inhibition of MAO B as measured ex vivo. The method was also used to determine the concentration of PEA in human CSF (mean 17.3 +/- 3.3 ng/ml, range 3-45 ng/ml, n = 15) and urine (males: mean 35 +/- 5 micrograms/g creatinine, range 3.8 - 219 micrograms/g, 78 control days of a total of 12 subjects; females: mean 35 +/- 6 micrograms/g creat., range 2.7 - 266 micrograms/g, 55 control days of a total of 8 subjects).

Adult↗

Phenylethylamine and phenylacetic acid in CSF of schizophrenics and healthy controls.

Phenylethylamine (PEA) is an endogenous substance with amphetamine-like stimulant properties. On the basis of this ability an abnormal brain PEA metabolism has been proposed as an etiological factor in some forms of schizophrenia. In the present study 28 schizophrenic patients and 15 healthy controls were investigated. No significant difference from control values was found in PEA concentration in cerebrospinal fluid (CSF) of either untreated of neuroleptic-treated schizophrenics. However, 2 schizophrenics with highest BPRS scores had extremely high PES concentrations. Free phenylacetic acid (PAA), the major metabolite of PEA, was significantly decreased in ummedicated but not in drug-treated schizophrenics. Because of the assumed neuromodulatory properties of PEA, it is suggested that lowered PAA concentrations and the tendency for PEA to be elevated may imply that altered central neurotransmission occurs in certain forms of schizophrenia.

Adult↗

Urinary excretion of O-methylated catecholamines, tyramine and phenyl-ethylamine by volunteers treated with tranylcypromine and CGP 11305 A.

To assess the effect of the new, selective, reversible MAO A inhibitor, CGP 11305 A (4-(5-methoxy-7-bromo-benzofuranyl-2-)piperidine HCl), on MAO A and B activity in man, the daily excretion of total normetanephrine (NMN), metanephrine (MN), 3-methoxytyramine (3-MT) and beta-phenylethylamine (PEA) was measured in the urine of healthy volunteers treated with weekly increasing doses from 40 to 150 mg/d. A similar study was carried out with tranylcypromine in weekly increasing doses from 10 to 25 mg/d. Both compounds increased the excretion of NMN; with CGP 11305 A, a plateau was obtained at 50 mg/d, and tranylcypromine 20 mg was more effective than 10 mg, and was also more active than the highest dose of CGP 11305 A. Increases in MN and 3-MT produced by the latter compound were comparable to that in NMN, whereas tranylcypromine had a biphasic effect on MN excretion, and caused only a small increase in 3-MT excretion. CGP 11305 A up to 150 mg/d did not alter total tyramine excretion, whereas tranylcypromine at 20 mg caused a definite increase. Tranylcypromine led to 4-6 fold increases in PEA output at 20 and 25 mg/d, but not at 10 mg. No such effect could be demonstrated for CGP 11305 A up to 150 mg/d. These results suggest that in man MAO A was inhibited by CGP 11305 A in daily dose of 40 mg or more, whereas it did not affect MAO B at up to 150 mg.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Phenylethylamine and monoamine metabolites in CSF of schizophrenics: effects of neuroleptic treatment.

Phenylethylamine (PEA) and the monoamine metabolites 3-methoxy-4-hydroxyphenylglycol (MHPG), homovanillic acid (HVA) and 5-hydroxyindoleacetic acid (5-HIAA) have been measured in the cerebrospinal fluid (CSF) of nine paranoid schizophrenics before and after three weeks of neuroleptic treatment. Patients were classified according to the Research Diagnostic Criteria and rated by means of the Brief Psychiatric Rating Scale. A significant increase was seen in HVA CSF concentrations during neuroleptic treatment (p less than 0.01). No influence was found on levels of PEA, 5-HIAA, and MHPG. Concentrations of both MHPG and 5-HIAA correlated positively with those of HVA. These results in combination with previous findings do not support the contention that PEA and NA metabolisms are grossly disturbed in paranoid schizophrenics whereas involvement of other neurotransmitters i.e. dopamine, seems more probable.

Adult↗