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Biomedical subjects

M Gruber

Publications and source records attributed to M Gruber.

At least 127 records · Page 7Linked to original sources

Specific stimulation of ribosomal RNA synthesis in E. coli by a protein factor.

Ribosomal RNA synthesis in a purified system is stimulated by a crude protein fraction prepared from E. coli. The positive effector which is not associated with RNA polymerase, nor is the sigma factor, increases the initiation frequency on rRNA operon. The additional rRNA synthesis in inhibited by ppGpp to the same extent as the basal one. The evidence presented points to the existence of a positive control element for rRNA synthesis, which activity depends upon the physiological state of the cell.

Bacterial Proteins↗

Purification of the mRNA for chicken very low density lipoproteinII and molecular cloning of its full-length double-stranded cDNA.

The mRNA coding for the small apo-Very Low Density Lipoprotein (apo-VLDLII) from chicken serum was highly enriched by oligo(dT) chromatography and preparative gel electrophoresis of estrogenised liver RNA. Double-stranded cDNA was synthesised by the subsequent actions of reverse transcriptase and DNA polymerase, and used for a preliminary characterisation of the structural gene. Molecular cloning of dC-tailed ds-cDNA into the Pst I site of plasmid pBR 322 yielded several recombinant clones. Five chimeric DNAs were selected and characterised by restriction enzyme mapping and electron microscopy of R-loops. At least two of them (pVLDLII 3.33 and pVLDLII 4.82) contain an almost full-length ds-transcript of VLDLII mRNA in which no more than 10-20 bases at the 5'- end are missing.

Animals↗

Interaction between RNA polymerase and a ribosomal RNA promoter of E. coli.

The interaction between RNA polymerase and the E. coli ribosomal (r) RNA promoter(s) of the rrnE operon has been studied by the filter-binding method. The extent of complex formation between RNA polymerase and rrnE promoter(s) is salt-dependent; ppGpp specifically inhibits interaction of RNA polymerase with the rrnE promoter(s). A tentative model is proposed for the molecular events in the early steps of rRNA initiation: a transition of the primarily formed, labile RNA polymerase-rRNA promoter complex to a more stable form is the determining step. This step is salt-sensitive; ppGpp acts on this "isomerization".

DNA-Directed RNA Polymerases↗

Endocytosis and breakdown of ribonuclease oligomers by sinusoidal rat liver cells in vivo. I. Effect of size.

Aspects of protein structure determining endocytosis of proteins by sinusoidal rat liver cells in vivo have been studied, using cross-linked or aggregated derivatives of bovine pancreatic ribonuclease A (labelled with 125I) as probes. Ribonuclease was cross-linked by reaction with dimethylsuberimidate, a way of modification that does not change the charge of the protein. Monomer, dimer and polymer fractions were isolated by gel filtration and characterized in respect of size and number of amino groups modified. Maintenance of enzyme activity, stability of disulfide bonds, and lack of susceptibility to endoproteases showed that the cross-linking procedure did not result in gross conformational changes of the ribonuclease molecules. Monomer, dimer and polymer fractions were injected into nephrectomized rats and plasma clearance and uptake in liver and spleen were determined. About 30% of the injected polymer fraction was found in liver 15 min after injection; for dimer and monomer fractions values of 6% and 2% of the dose were found. Similar differences were found in spleen. Autoradiography, cell isolation, and subcellular fractionation showed that in liver the radioactive proteins were taken up in lysosomes of sinusoidal cells. Similar results were obtained with fractions of aggregated ribonuclease prepared by freeze-drying the protein from 50% acetic acid. Our results demonstrate that the rate of uptake of the ribonuclease derivatives is positively correlated with the size of the molecules. Similarity of the results obtained with cross-linked and aggregated fractions suggests that the number of ribonuclease 'subunits'/molecule, rather than the procedures used to prepare the polymers, determine the rate of uptake by liver and spleen.

Animals↗

Endocytosis and breakdown of ribonuclease oligomers by sinusoidal rat liver cells in vivo. II. Effect of charge.

Experiments presented in this paper suggest that sinusoidal rat liver cells recognize basic groups on proteins and that this recognition results in endocytosis of the proteins. Evidence for involvement of basic groups was obtained in two ways. Firstly, we changed the positively charged amino groups of the cross-linked ribonuclease molecules to neutral or negative by acetylation or succinylation, respectively. The modified proteins did not contain easily reducible disulfide bonds and they were not very sensitive to endoproteases, suggesting that they were not denatured by the acetylation procedures. Acetylation and succinylation reduced uptake of the injected cross-linked ribonuclease derivatives by liver and spleen and abolished their rapid clearance from plasma. In nephrectomized rats about 75% of the polymer, 36% of the acetylated polymer and 32% of the succinylated polymer were endocytosed by liver after 6 h. For the dimer fractions these values were 59%, 23% and 27%, respectively. Autoradiography and subcellular fractionation of liver 30 min post-injection localized the acetylated polymer in the lysosomal/microsomal fraction of sinusoidal liver cells, probably endothelial cells. Secondly, a positive correlation was found between binding of a number of ribonuclease derivatives to the cation exchanger SP-Sephadex G-25 and the rate of endocytosis by sinusoidal liver cells.

Acetylation↗

Endocytosis and breakdown of 125I-labelled lactate dehydrogenase isoenzyme M4 by rat liver and spleen in vivo.

1. Porcine lactate dehydrogenase isoenzyme M4 was labelled with 125I and injected intravenously into rats. Enzyme activity and radioactivity in plasma were cleared in an identical way with a half-life of about 30 min. This half-life was the same as that of unlabelled enzyme. 2. Uptake of label by liver and spleen was determined. Radioactivity in these tissues increased up to about 13 min after injection and subsequently declined. Radioautography indicated uptake of the enzyme by sinusoidal liver cells (probably Kupffer cells) and by spleen macrophages. After differential fractionation of liver, acid-precipitable radioactivity was largely found in the light mitochondrial and microsomal fractions, suggesting localization in lysosomes and endosomes respectively. 3. The amount of acid-soluble radioactive breakdown products in plasma started to rise between 7 and 15 min after injection. Breakdown in liver and spleen was retarded by previous injection of suramin, an inhibitor of lysosomal proteolysis. 4. The contribution of liver and spleen towards the clearance of the enzyme could be calculated from its half-life in plasma and its uptake by the organs within the first 13 min period after injection. Our results indicate that about 65% and 12% of the injected dose was taken up, and subsequently broken down, by liver and spleen respectively. 5. Unlabelled porcine lactate dehydrogenase isoenzyme H4 showed a plasma half-life of about 8 h. This isoenzyme is therefore endocytosed by liver at a much slower rate than isoenzyme M4 (if it is taken up at all).

Animals↗

Estradiol-induced synthesis of vitellogenin. IV. The isolation of non-degraded polysomes from avian liver using an endogenous ribonuclease inhibitor.

A procedure allowing the isolation of intact polysomes from rooster liver is described. Good recovery of polysomes is achieved by the presence of Triton X-100 in the homogenization and centrifugation steps since the detergent prevents the sedimentation of microsomes with the nuclear fraction. This sedimentation of microsomes leads to considerable losses of polysomes, especially the larger ones. In the detergent-treated homogenate the integrity of the polysomes is threatened by various ribonucleases, some of which can be effectively inhibited by the addition of both heparin and yeast RNA. The remaining nuclease activity is counteracted by the endogenous ribonuclease inhibitor of the liver. In estradiol-treated roosters, sufficient endogenous inhibitor is present to inhibit its specific ribonuclease, but in control roosters there is not. This difference is due to a hormone-mediated increase in inhibitor level and decrease in nuclease level. Consequently, for an estrogenized rooster, the addition of both heparin and yeast RNA to the homogenate suffices to stabilize the polysomes, whereas control rooster liver homogenate needs supplementation with endogenous ribonuclease inhibitor. The cytosol of estrogenized rooster liver can be used as a crude inhibitor preparation. Rat liver cytosol is only partially effective; this may indicate a certain degree of species specificity of the inhibitor. The isolation procedure described also yields large polysomes from the livers of duck and Xenopus.

Animals↗

Investigations on the cause of the nephrotic syndrome in renal amyloidosis. A discussion of electron microscopic findings.

Systematic electron microscopic investigation of glomeruli of 35 patients with renal amyloidosis (grade I-III), among them 26 with nephrotic syndrome, reveals the following: 1. The extent of the area of basement membrane denuded of its epithelial covering is correlated significantly with the reduction of plasma protein concentration at the time of renal biopsy. 2. In amyloid free regions of the glomerular capillary loops, the foot processes of the epithelial cells remain intact despite the presence of the nephrotic syndrome. From these findings we conclude that the high glomerular protein losses in amyloidosis occur in areas of the basement membrane which are penetrated by amyloid and denuded of their epithelial covering. With increasing number of these lesions per unit area, the permeability of the capillary network for protein increases to a degree which is significantly correlated with the reduced plasma protein concentration at the time of biopsy.

Adolescent↗

Induction of lysosomal storage by suramin.

Isolated livers of rats injected with saline or with suramin (250 mg per kg body weight) 24h previously were perfused with a medium containing radioactively labeled formaldehyde-treated albumin. Suramin-loaded livers released breakdown products at a much lower rate than controls and contained about the double amount of undigested radioactive protein up to about 3 h after the start of the perfusion. These results show that inhibition of proteolysis by suramin as reported previously (Davies et al., 1971; Buys et al., 1973) is not caused by binding of the drug to the substrate in the bloodstream. Electron micrographs of liver sections of suramin-treated rats showed that lysosomes of sinusoidal cells resembled those seen in certain lysosomal storage diseases. The effect of suramin on lysosomal enzymes was studied in vitro. When used at a concentration corresponding to the putative concentration in lysosomes in vivo, the drug inhibited the lysosomal endopeptidases cathepsin Bl and D as well as acid phosphatase. Inhibition of acid phosphatase by suramin in vivo could also be demonstrated by histochemical methods. These results suggest that the observed storage phenomena may be mainly caused by inhibition of lysosomal enzymes.

Albumins↗

Delayed cardiac tamponade associated with prophylactic anticoagulation in patients undergoing coronary bypass grafting. Early diagnosis with two-dimensional echocardiography.

Pericardial tamponade occurring late in the hospitalization of a patient who has undergone a heart operation can be life threatening. Recognition of this insidious, but treatable, complication is difficult. Three patients experienced delayed tamponade while receiving warfarin prophylactically following coronary arter bypass. Two-dimensional echocardiography was useful in recognizing the effusion (and thus aided the diagnosis of tamponade) in each patients. The question of whether prophylactic antiocagulatin should be employed for patients undergoing coronary artery bypass procedures is also considered in light of both the present experience and collected reports from the literature.

Adult↗

In vitro transcription of three different ribosomal RNA cistrons of E. coli; heterogeneity of control regions.

Ribosomal RNA synthesis from three different rRNA cistrons of E. coli, located on different phage DNAs was compared and found to have the same characteristics as regards chain length, salt and temperature dependence and the effect of ppGpp. However, some clear and reproducible quantitative differences between rRNA synthesis from the different templates both in presence and absence of ppGGpp were found. Rifampicin and heparin experiments showed that these differences were located at the initiation sites. We propose that heterogeneity exists in the RNA polymerase binding regions of the rRNA prmoters in E. coli.

Coliphages↗

Synthesis of guanosine 5'-diphosphate, 3'-diphosphate in spot mutants of Escherichia coli.

The synthesis of ppGpp in spoT- mutants of Escherichia coli has been invesitgated. In these mutants the first-order rate constant for ppGpp breakdown is low, and pppGpp is barely detectable. It is shown that the rate of pppGpp, and hence ppGpp, synthesis is strongly reduced compared with that observed in spot+ strains. The low rate of magic spot synthesis satisfactorily explains the low levels of pppGpp in spoT- mutants. The pentaphosphate very probably is the precursor of ppGpp as it is in wild-type, i.e. spoT+, strains.

Escherichia coli↗

Endocytosis and breakdown of proteins by sinusoidal liver cells.

We studied the uptake of modified forms of bovine pancreatic ribonuclease A (labeled with 125-iodine) by rat liver in vivo. On one hand, these experiments were intended to investigate a possible role of sinusoidal cells in the uptake of plasma proteins; on the other hand, the effect of well-defined modifications of the enzyme on the role of uptake might give us a key to the factors determining life time of plasma proteins. We used nephrectomized rats in most experiments to avoid uptake by the kidneys. Preparations of ribonuclease oligomers prepared by cross-linking with dimethyl-suberimidate enabled us to study a possible relation between uptake and molecular size. This modification does not lead to changes in charge of the protein. Monomer, dimer and polymer fractions were isolated by gel filtration on Sephadex G-75. Of the 11 amino groups in ribonuclease A, 9, 8 and 6 remained unaltered in the monomer, dimer and polymer fraction, respectively. The maintenance of biological activity, the stability of disulfide bonds, and the unchanged susceptibility to endoproteases of the cross-linked products established that gross conformational changes had not occurred. At 1 h after injection, 1% of themonomer, 7% of the dimer and 19% of the polymer were recovered per g of liver protein. Combination of autoradiography, subcellular fractionation, and the determination of labeled ribonuclease derivatives in the spleens showed that the dimer and polymer fractions were mainly present in the lysosomes of sinusoidal cells.

Animals↗