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Biomedical subjects

B Strauss

Publications and source records attributed to B Strauss.

At least 109 records · Page 6Linked to original sources

Insertion of nucleotides opposite apurinic/apyrimidinic sites in deoxyribonucleic acid during in vitro synthesis: uniqueness of adenine nucleotides.

M13 DNA containing 20-30 apurinic/apyrimidinic (AP) sites per intact circular molecule was prepared by growing phage on an ung- dut- Escherichia coli mutant and treating the DNA with uracil N-glycosylase. AP sites obstruct in vitro DNA synthesis catalyzed by E. coli pol I. The position at which termination of synthesis occurs was determined for four enzymes. T4 DNA polymerase terminates one nucleotide before putative AP sites. DNA pol I, AMV reverse transcriptase, and DNA polymerase alpha terminate synthesis either before or at the site of an AP lesion depending on the particular sequence. We determined the identity of the nucleotide inserted opposite an AP site by synthesizing up to the lesion in a first-stage reaction using T4 DNA polymerase and then determining elongation in a second stage. Purines are inserted opposite AP sites more readily than pyrimidines, and dATP is more efficient than dGTP in promoting such elongation. The DNA-dependent conversion of dNTP to dNMP was determined in mixtures of all four dNTP's by using AP DNA. The production of dAMP from dATP occurs most readily. We conclude that there is an inherent specificity for the incorporation of adenine nucleotides opposite AP sites in this in vitro system. Insofar as the model system reflects in vivo mutational events, our data suggest that depurination should produce transversions and depyrimidination should produce transitions.

Apurinic Acid↗

Sustained elevation of hippocampal cyclic 3'-5' adenosine monophosphate levels after medial septal lesions.

The cyclic 3'-5' adenosine monophosphate (cyclic AMP) content of the rat hippocampal formation doubles during the week following a medial septal lesion and remains elevated for at least 1 month, the longest time period studied. This elevation in cyclic AMP does not result from sympathetic ingrowth, as neither superior cervical ganglion stimulation nor ganglionectomy influences hippocampal cyclic AMP content after lesions. Interruption of the cholinergic septohippocampal pathway in the fornix did not elevate hippocampal cyclic AMP content. Further, treatment of septal-lesioned animals with oxotremorine or of normal animals with atropine did not influence hippocampal cyclic AMP content. Finally, neither locus ceruleus lesions nor treatment with propranolol affected hippocampal cyclic AMP content. We believe this to be the first report of a sustained elevation in hippocampal cyclic AMP content. Like other long-term events, it is likely to have profound effects on hippocampal function and represents a remarkable brain adaptation to remote injury.

Animals↗

Autonomic reactivity in the premenstrual phase.

The aim of the present experiment was to determine the effects of the premenstrual cycle phase on autonomic arousal. In a repeated measurement study 40 female subjects were tested premenstrually and postmenstrually for their autonomic reactivity during stress (cold pressor test, mental arithmetic) and for their acquisition of conditioned electrodermal responses, using a standardized auditory conditioning procedure. None of the differences between the cycle phases were significant. Similar results were obtained in the subjects' answers in a mood adjective list and their stimulus ratings. There was a general decrease in autonomic reactivity from the first to the second recording session, independent of the menstrual cycle periods.

Adolescent↗

Cellular aspects of DNA repair.

DNA repair reactions are under cellular control. In bacteria, the reactions removing 0(6)-methylguanine and 3-methyladenine are inducible. It is not clear whether similar inducibility occurs in human lymphoblastoid cells. Nonetheless, the ability to manufacture the 0(6)-methylguanine acceptor protein does seem to be controlled by some chromosomal mechanism which is superimposed on the structural gene. This control system may affect reactions other than the removal of 0(6)-methylguanine. Insofar as this is so, transformed human lymphoblastoid cells have a system reminiscent of that found in bacteria.

Animals↗

Regulation of the capacity for O6-methylguanine removal from DNA in human lymphoblastoid cells studied by cell hybridization.

Hybrids were made between a ouabain-resistant, thioguanine-resistant human lymphoma line able to remove O6-methylguanine from its DNA (Mex+) and human lymphoblastoid lines deficient in this capability (Mex-). The formation of hybrids was confirmed by chromosomal analysis. Hybrid cells had an O6-methylguanine removal capacity per mole of guanine about one third to one half that of the Mex+ parents, i.e., about the same per cell. Cell hybrids removed the same amount of the alkylation adduct 3-methyladenine as did their parents per mole of guanine, i.e., about twice as much per cell. Although the cell hybrids had intermediate resistance to the cytotoxic action of N-methyl-N'-nitro-N-nitrosoguanidine used to induce O6-methylguanine and 3-methyladenine, there is evidence that the ability to remove O6-methylguanine and resistance to the cytotoxic effect of N-methyl-N'-nitro-N-nitrosoguanidine are dissociable characteristics.

Adenosine↗

Removal of O6-methylguanine from DNA of normal and xeroderma pigmentosum-derived lymphoblastoid lines.

The ability to excise (repair) UV-induced pyrimidine dimers in Escherichia coli is not related to its ability to remove N-methyl-N'-nitro-N-nitrosoguanidine (MNNG)-induced O6-methylguanine (O6-MeG) from DNA. It was therefore surprising that certain xeroderma pigmentosum cell lines, deficient in dimer excision, were also unable to remove O6-MeG. We find that removal of O6-MeG occurs rapidly with a half life of less than 1 h. Two cell types can be distinguished: mex+, which remove O6-MeG residues produced by incubation with 0.5 microgram ml-1 MNNG, and mex- cells, which are unable to remove the adduct. Xeroderma pigmentosum-derived lymphoblastoid lines of complementation groups A, C or D may be either mex+ or mex-. The biochemical mechanism for the removal of O6-MeG in human cells is distinct from the excision of adducts produced by compounds such as N-acetoxy-N-2-acetylaminofluorene (AAAF) or by UV irradiation but it is not clear whether the distinction between mex+ and mex- lines is genetic or epigenetic.

Alleles↗

Limited capacity for the removal of O6-methylguanine and its regeneration in a human lymphoma line.

The Raji human lymphoma line is able to remove O6-methylguanine (O6MeG) lesions introduced by treatment of cells with N-methyl-N'-nitro-N-nitrosoguanidine (MNNG). The reaction has a rapid phase in which approximately 40% of the O6MeG is removed in the first 10 min. The capacity of cells for rapid O6MeG removal is limited and is saturated at concentrations of MNNG which do not saturate the systems removing 3-methyladenine. Pretreatment of cells with MNNG inhibits their ability to remove O6MeG produced by a subsequent dose given after 2 h. Treatment with N-ethyl-N'-nitro-N-nitrosoguanidine (ENNG) is effective in diminishing cellular capacity for O6MeG removal, and cells unable to remove O6MeG and sensitive to the cytotoxic effects of MNNG are also more sensitive to ENNG than their removal competent counterparts. Regeneration of the ability to remove O6MeG requires incubation of cells for periods greater than 24 h. The O6MeG removal system is similar to that found in adapted Escherichia coli although the capacity of the Raji lymphoma line much lower than that of the induced bacteria per unit of DNA.

Burkitt Lymphoma↗

Reaction of T7 DNA with a polycyclic aromatic hydrocarbon. Lack of structural perturbation.

Bacteriophage T7 DNA reacts uniformly with trans-7,8-dihydroxy-anti-9,10-epoxy-7,8,9,10-tetrahydrobenzo(a)pyrene(anti-BPDE). The reaction product retains the native configuration so that only one site sensitive to S1 nuclease is produced for every 70 anti-BPDE adducts. DNA treated with anti-BPDE is retained on benzoylated naphthoylated DEAE-cellulose even after washing with 1.0 M salt solutions. About 100 adducts per T7 molecule are required for adherence which is not due to breaks or single-stranded regions since adherence is not affected by S1 nuclease treatment. The binding of anti-BPDE reacted DNA to benzoylated naphthoylated DEAE-cellulose is cooperative and requires many residues per bound fragment. Treatment of T7 DNA treated with anti-BPDE with restriction endonuclease yields smaller molecules, still containing adducts, which do not adhere. We interpret these results to mean that reaction with BPDE does not involve deformation of the DNA structure and that the adducts lie in a position which they are readily accessible for interaction with aromatic groups on the column resin.

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide↗

Use of hydroxyurea in the measurement of DNA repair by the BND cellulose method.

Hydroxyurea inhibition is a convenient method of suppressing replicative DNA synthesis for DNA excision-repair measurement by the BND cellulose technique. Nonetheless, hydroxyurea can introduce artefacts by direct reaction with repair-inducing compounds and by long-term inhibition of the overall repair process. A simple technique of overcoming these problems is described. Cells are reacted with repair-inducing compounds in the absence of hydroxyurea, the cells are washed free of inducer, hydroxyurea is added to 2 mM, and after a short period to establish replication inhibition, 3H dThd is added and repair measured over a one-hour incubation period.

Acetoxyacetylaminofluorene↗

Role of cellular systems in modifying the response to chemical mutagens.

Neocarzinostatin (NCS) produces apurinic/apyrimidinic (AP) sites in DNA which are repaired by the AP excision repair system. Survival after NCS treatment is not determined exclusively by this repair system, presumably because of the production of other, lethal, lesions. MNNG also produces multiple lesions which may be handled by cells in different ways. In E. coli, MNNG treatment results in rapid induction of a system which removes O6-methylguanine. Inhibition of this induction with chloramphenicol results in a large increase in mutation frequency. Induction of an enzyme which removes O6-methylguanine probably accounts for the enrichment of mutations near DNA growing points. MNNG also induces multiple closely linked mutations. The production of multiple mutations but not of single-site mutations is blocked in rec A and uvr E strains. The exact nucleotide site at which DNA synthesis is blocked in vitro by reaction with mutagens can be observed in a phi X174 system in which the nucleotide sequence is known. DNA polymerase I catalyzed synthesis is blocked one nucleotide before the reacted base on the template strand. In contrast, with some damaged templates, AMV reverse transcriptase can insert a base at the level of the reacted nucleotide on the template.

Antibiotics, Antineoplastic↗

[The "chest wall factor" in the differential diagnosis of pathologic X-ray findings in thoracic maladies (author's transl)].

Abnormalities as well as pathologic alterations of the thoracic wall (soft tissues and bony thorax) often present themselves radiographically as small coin-lesions or as a circumscribed shadow accompanying the chest wall. Exact inspection and palpation of the thorax, a fluoroscopy with television X-ray intensifier restricted to the interesting thoracic sector and some soft tissue (voltage about 60 kV) partial radiographs are necessary in order to get the correct diagnosis. The knowledge of the exact side of the pathologic alteration allows a thin-sliced multilayer tomography. Nine cases with abnormalities or pathologic changes of the chest wall are demonstrated.

Adult↗

[Pulmonary arteriovenous malformation (report on 11 cases, 1970-1979) (author's transl)].

The clinical features and the diagnostic difficulties in 11 cases of pulmonary arteriovenous (av) malformation, diagnosed in the last 10 years, are discussed. It is possible to get the correct diagnosis with the help of the typical thorax-X-screen, inclusive tomography in combination with the clinical signs of the right to left shunt. Pulmonary angiography is indicated (first) before any kind of therapy in order to exclude av malformations in other localisations, (second) in all pulmonary lesions, where av malformations are part of the differential diagnosis, and (third) in patients suffering from symptoms of a right to left shunt after exclusion of a cyanotic vitium cordis.

Adolescent↗

Selectivity of the excision of alkylation products in a xeroderma pigmentosum-derived lymphoblastoid line.

Lymphoblastoid cell derived from a complementation group C xeroderma patient were unable to remove 06-methyl guanine residues formed in DNA by treatment of cells with low concentration of N-methyl-N'-nitro-N-nitrosoguanidine (MNNG). The xeroderma cells were competent in their ability to excise 3-methyl adenine adducts. MNNG treatment induced excision repair in the xeroderma line and in addition the treatment resulted in the presence of numerous single-strand breaks in the DNA. The single gene, UV-excision-defective mutants of Escherichia coli, uvrA and uvrB, are able to excise MNNG-induced 06-methyl guanine adducts indicating that excision of this compound is not due to operation of UV endonuclease system.

Cell Line↗

[Enlargement of the lower mediastinum: pericardiac or extracardiac origin? (author's transl)].

The radiographic findings in 9 patients who suffered from a non-myocardiac enlargement of the lower anterior mediastinum are discussed. By means of several diagnostic procedures consisting of radiography, fluoroscopy, roentgen-kymography, angiocardiography and needle-biopsy under visible control it is often possible to distinguish between primary pericardiac lesions and growths of the mediastinum lying in close contact to the heart. In most cases, however, final histological diagnosis will only be reached by thoracotomy with removement of the tumor.

Adolescent↗

Repair of depurinated DNA in vitro by enzymes purified from human lymphoblasts.

Alkali-labile lesions introduced into T7 DNA by treatment with methyl methanesulfonate were removed and the DNA was repaired by incubation with DNA polymerase alpha and nuclease from a human lymphoblastoid line followed by the addition of DNA ligase. The nuclease preparation contains both apurinic endonuclease and 5'-3' exonuclease activities. Dinucleotides appear to be the first product of exonuclease action. Repair of methyl methanesulfonate-induced damage can occur by the insertion of only a few nucleotides per lesion as in vivo.

Burkitt Lymphoma↗