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Biomedical subjects

M Meuth

Publications and source records attributed to M Meuth.

At least 55 records · Page 3Linked to original sources

Insertion of unique and repetitive DNA fragments into the aprt locus of hamster cells.

Two insertion mutations occurring at the aprt locus of Chinese hamster ovary cells were analyzed at the nucleotide level by cloning and sequencing the mutant genes. The insertions are similar with respect to events at the target site in that both are accompanied by small deletions. The nature of the DNA introduced, on the other hand, is very different, a unique fragment in a spontaneously occurring mutant and a highly dispersed, repetitive fragment in a gamma radiation-induced strain. The inserts are small (285 and 58 base-pairs) and have none of the structural features or sequences related to putative mobile sequences in mammalian cells. The mechanism of transposition was further examined by cloning the unique donor fragment of the spontaneous mutant. These analyses revealed that the insert in the mutant gene was a precise duplicate of the donor DNA fragment.

Animals↗

Direct selection of Chinese hamster ovary strains deficient in CTP synthetase activity.

Mutant CHO cell strains dependent upon cytidine for growth and survival were isolated by a direct selection protocol. The mutants obtained are deficient in CTP synthetase activity (less than 2% residual activity) and have low reversion frequencies (less than 10(-7)). Cytidine deprivation of these stains leads to rapid depletion of intracellular CTP pools, but not dCTP pools, and a surprisingly rapid loss of cell viability. These properties should make the cytidine auxotrophs useful for a number of biochemical and genetic studies.

Animals↗

[2 cases of death following cell therapy].

Fresh-cell therapy is a paramedical procedure whose claimed therapeutic success has not been proven by customary clinical tests (randomized, double-blind trials). In addition, the qualitatively and quantitatively non-standardized parenteral application of heterologous antigens presents considerable danger for the recipient in the form of fatal immune reactions. Two cases are reported in which history, clinical findings and autopsy provided evidence of a causal relationship between cell therapy and death. In one instance, a 75-year-old woman died 30 days after an intramuscular injection of quick-frozen fresh cells from the effects of an immune-complex vasculitis; in the other, a 60-year-old woman died 14 days after "original fresh-cell treatment after Prof. Niehans" from perivenous leucoencephalitis.

Adult↗

Next-nucleotide effects in mutations driven by DNA precursor pool imbalances at the aprt locus of Chinese hamster ovary cells.

Imbalances of the intracellular pools of the precursors of DNA synthesis, the deoxyribonucleoside triphosphates, produce marked shifts in the spectrum of mutations at the aprt locus of Chinese hamster ovary cells. Mutations induced by excess dTTP or dCTP are dominated by misincorporation of the nucleotide in excess, as determined by sequence analysis of cloned mutant genes. The shift in spectrum is also apparently influenced by the nucleotides surrounding the one altered--those 3' to the nucleotide misincorporated being present in excess in most of the mutant genes characterized. Since next-nucleotide effects are a property of DNA polymerases with "proofreading" activities, our data suggest that this function is part of the mammalian DNA replication complex.

Adenine Phosphoribosyltransferase↗

DNA sequence analysis of spontaneous mutations at the aprt locus of hamster cells.

To determine the nature of spontaneous mutational events in cellular genes in hamster cells, mutant adenine phosphoribosyltransferase (aprt) genes were cloned and the regions to which we mapped alterations were sequenced. A variety of nucleotide changes were found to occur in the 12 mutant genes analyzed. Most mutations were simple base-pair substitutions-transitions (both G X C----A X T and A X T----G X C) and transversions. The only multiple mutation was a simple transition next to a single-base-pair insertion. Of the 12 mutations, 4 were more complex, involving small deletions or duplications. Two of these were similar to previously described deletions in that they occurred between short direct sequence repeats. No hot spots were detected. Three independent mutations were characterized at one restriction endonuclease site, although no other mutations were detected in the nucleotides surrounding this site in other mutant strains. At a functional level, sequence changes were either in exons (resulting in missense and, in one instance, nonsense mutations) or at splicing sites.

Adenine Phosphoribosyltransferase↗

Structure and sequence of mutations induced by ionizing radiation at selectable loci in Chinese hamster ovary cells.

The spectrum of mutations induced by ionizing radiation at two non-essential genetic loci varies markedly. Those at the adenine phosphoribosyl transferase (aprt) locus predominantly have no detectable alterations of gene structure on Southern blots, while those at the hypoxanthine guanine phosphoribosyl transferase (hprt) locus are largely massive deletions eliminating all coding sequence. Insertion mutations were detected at both loci. To characterize the sequence alterations producing the minor changes at the aprt locus, two mutant genes were cloned from lambda genomic libraries and sequenced. One of these mutants proved to be a 20 base-pair deletion formed between two short (3 base-pair) direct repeat sequences, while the second was the result of a 58 base-pair insertion accompanied by a 13 base-pair deletion.

Animals↗

DNA amplification--deletion in a spontaneous mutation of the hamster aprt locus: structure and sequence of the novel joint.

In a collection of spontaneous mutants of Chinese hamster ovary cells selected for deficiency in adenine phosphoribosyl transferase (aprt) activity, one was detected having not only a deletion of aprt coding sequences but also an apparent amplification of remaining sequences. The HindIII fragment bearing the novel joint was cloned and sequenced revealing a complex gene rearrangement. A deletion of at least 9 kb extending upstream from the aprt locus is accompanied by an inverted duplication of flanking sequences 672 bp downstream from the novel joint. This unit is amplified three to four times with the net result of some sequences being increased as much as eight fold in copy number because of the duplication. The fidelity of the sequences involved is preserved. We propose a model which could account for this inverted duplication.

Adenine Phosphoribosyltransferase↗

Spontaneous deletion formation at the aprt locus of hamster cells: the presence of short sequence homologies and dyad symmetries at deletion termini.

To examine the factors governing the generation of DNA sequence rearrangements in mammalian somatic cells, we have cloned and sequenced novel junctions produced by six spontaneous deletion mutations at the aprt locus of Chinese hamster ovary cells. Our analyses indicate that these rearrangements were produced by non-homologous recombinational events occurring between short (2-7 bp) sequence repeats at the two termini of the deletion which leave one copy of the repeat in the mutant gene. Certain tri- and tetranucleotides recur at the deletion termini, suggesting that these may possibly be a recognition sequence for an enzyme involved in the event. No other gene structural alterations were found at the novel junctions or in neighbouring sequences. The deletions are not randomly distributed over the aprt gene; four termini clustered in a 40-bp sequence. This region of aprt is unusual as it contains both significant stretches of dyad symmetry which could potentially form stable DNA secondary structures and short direct repeats. Regions of dyad symmetry were also found at at least one terminus of all the deletions. In view of the similar properties of this set of deletions, possible mechanisms for the formation of this type of gene rearrangement are considered.

Adenine Phosphoribosyltransferase↗

Fresh cell therapy followed by fatal coma.

A 60-year-old woman received a 3-day course of nine injections of "fresh" cells from fetal lamb ovary, placenta, brain (hypothalamus) and liver. There were no immediate complications, but a few days later she developed headache, fever and hemiparesis. She subsequently fell into a coma and died 3 weeks after her fresh cell therapy and 2 weeks after the onset of her clinical symptoms. Autopsy revealed perivenous leucoencephalopathy with a probably steroid-treatment-induced paucity of perivascular inflammation. Fresh cell therapy, clinical symptomatology and morphological findings suggest, though do not prove, that this patient's monophasic and probably immune-mediated disease is a rare fatal complication of fresh cell therapy.

Blood-Brain Barrier↗

Biochemical characterization of the hamster thy mutator gene and its revertants.

The thy- mutator phenotype of Chinese hamster ovary cells is distinguished by increased intracellular levels of dCTP, auxotrophy for thymidine, and elevated spontaneous mutational rates. To determine the biochemical lesion responsible for this complex phenotype, enzymes responsible for the synthesis of dCTP and dTTP were investigated. Levels of ribonucleotide reductase and dCMP deaminase were identical in mutant and wild type strains. In contrast, CTP synthetase activity in extracts from thy- strains was consistently altered in that 50% of enzyme activity was resistant to feedback inhibition by CTP. Additionally, thy- strains obtained by DNA transfection also had CTP-resistant CTP synthetase. Thy+ revertants lost the resistant enzyme, and total activity was reduced. CTP-resistant CTP synthetase was regained in thy- mutants reselected from thy+ revertants, but in these strains all activity was resistant. These experiments demonstrate that the thy- mutator phenotype is a consequence of a mutation of CTP synthetase and suggest that one pathway of reversion to the wild type state is by loss or inactivation of the mutant allele rendering the revertants hemizygous for the gene.

Animals↗

Structural alterations of the aprt locus induced by deoxyribonucleoside triphosphate pool imbalances in Chinese hamster ovary cells.

Mutants induced at the adenine phosphoribosyl transferase (aprt) locus by dTTP or dCTP pool imbalances were examined for alterations in genomic DNA sequences. No observable changes were detected by Southern blot analysis of most mutant DNAs, suggesting induction of base pair alterations or other events below our level of detection (approximately 30 base pairs). However, in a few strains (11 from a total collection of 125 mutant cell strains), we were able to localize these events to restriction endonuclease recognition sequences when the mutations resulted in the loss or gain of a particular site. The distribution of lost or gained sites in aprt-deficient mutants induced by the two types of pool imbalances clearly varied, with those occurring in a mutator strain with increased dCTP clustering at one end of the aprt gene. Mutants induced by dTTP also revealed novel events: multiple restriction site modifications in a small region of the aprt gene in one mutant and a small (approximately 50 base pairs) insertion or duplication of DNA sequences. As in previous studies, very few deletion or insertion mutants were detected at the aprt locus. The significance of these findings in terms of the known biochemical and genetic consequences of these pool imbalances is discussed.

Adenine Phosphoribosyltransferase↗

Structure of mutant alleles at the aprt locus of Chinese hamster ovary cells.

To determine the types of gene structural alterations causing deficiency of adenine phosphoribosyl transferase (aprt) activity in spontaneous and chemically induced mutations of cultured somatic cells, we analyzed the restriction enzyme cleavage patterns of aprt gene sequences in mutant strains selected from Chinese hamster ovary cells. Patterns of aprt-containing fragments in Southern blots were mostly unchanged in our collection of 280 ethyl methane sulfonate-induced and spontaneous aprt- mutants, suggesting that base-pair changes or other alterations below our limit of resolution on agarose gels (approximately 50 base-pairs) are responsible for the great majority of mutations at the aprt locus. Occasionally, these mutations could be localized when they resulted in the loss or gain of a restriction enzyme site and the generation of new fragments of predictable size. Deletions of aprt-containing sequences were detected in only eight of 119 spontaneous mutants and in only one ethyl methane sulfonate-induced mutant. An insertion of 300 base-pairs near the 5' end of the aprt structural gene was found in one spontaneous aprt- strain. This insertion mutant was stable with a reversion frequency of less than 2 X 10(-7). Several unstable aprt- mutants were detected in our collection, but these had no observable alterations of aprt coding or flanking sequences.

Adenine Phosphoribosyltransferase↗

Deoxycytidine kinase-deficient mutants of Chinese hamster ovary cells are hypersensitive to DNA alkylating agents.

Chinese hamster ovary cell strains deficient in deoxycytidine kinase activity were selected by isolating mutants resistant to high concentrations of the analogue arabinosyl cytosine. Mutants isolated were deficient in the pool of dCTP, supporting earlier a suggestion that the deoxycytidine kinase may play a role in the turnover and maintenance of the dCTP pool. Consistent with earlier observations that increased intracellular levels of dTTP relative to dCTP lead to increased sensitivity to monofunctional DNA alkylating agents, deoxycytidine kinase-deficient mutants showed a 2-5-fold increase in sensitivity to the cytotoxic and mutagenic effects of one agent, ethyl methanesulfonate (EMS). The survival of the two kinase-deficient strains after mutagen treatment was clearly related to dCTP level as the strain with lowest dCTP was most sensitive to EMS. Thus hypersensitivity to this class of DNA damaging agents can result from cellular mutations decreasing the intracellular level of dCTP.

Alkylating Agents↗