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M Meuth

Publications and source records attributed to M Meuth.

At least 37 records · Page 2Linked to original sources

Expression of the endogenous O6-methylguanine-DNA-methyltransferase protects Chinese hamster ovary cells from spontaneous G:C to A:T transitions.

We have investigated whether the presence of a DNA repair enzyme, O6-methylguanine-DNA-methyltransferase (MGMT), affects the nature of spontaneous mutations in a mammalian cell line. We compared spontaneous mutations in the adenine phosphoribosyl transferase gene of a Chinese hamster ovary (CHO) cell line that expressed 14,000 MGMT molecules/cell with those in the parental CHO cells lacking this DNA repair activity. The mutation rate/cell/generation of the two CHO cell lines did not differ significantly. However, DNA sequence analysis of spontaneous mutations in the MGMT-proficient CHO cell line revealed a complex picture. No significant difference from the parental CHO cells was found in the number or type of deletions, frameshifts, multiple substitutions, or insertions. The frequency of G:C to T:A transversions was elevated in MGMT-proficient CHO cells. Expression of the enzyme considerably reduced G:C to A:T transitions (25% versus 8.3%). This latter result is the first evidence that this protein is active on an endogenous source of O6-methylguanine that is normally responsible for spontaneous G:C to A:T transition mutations.

Adenine Phosphoribosyltransferase↗

Chromosome mapping of the human cytidine-5'-triphosphate synthetase (CTPS) gene to band 1p34.1-p34.3 by fluorescence in situ hybridization.

The human cytidine-5'-triphosphate synthetase (CTPS) gene was mapped by a direct mapping system combined with fluorescence in situ hybridization and replicated prometaphase R-bands. By high-resolution banding analysis, the signals were localized to band 34.1-34.3 of the short arm of chromosome 1; 1p34.1-p34.3. Simple procedures for the detection of R-bands are described.

Carbon-Nitrogen Ligases↗

Genomic organization and chromosomal localization of the human CTP synthetase gene (CTPS).

To elucidate the organization of the human genomic sequences encoding CTP synthetase (CTPS), fragments homologous to the cDNA were isolated from genomic lambda libraries. The fragments cloned were overlapping and cover over 40 kb. Cotransfection of the DNAs into CTPS-deficient, cytidine-requiring CHO mutants can transform them to cytidine-independent growth, indicating that the complete structural gene has been isolated. Direct sequencing and enzymatic amplification of the cloned genomic fragments revealed that the coding sequences are distributed to 19 exons covering about 35 kb. Multiple transcriptional start sites were detected by primer extension in a G + C-rich 5' flanking sequence that is separated from the translational start by an approximately 3-kb intron. A panel of human-rodent somatic cell hybrids and the CTPS cDNA were used to assign the structural gene to the short arm of human chromosome 1. This assignment was further refined through the use of somatic cell hybrids bearing fragments of the short arm of the chromosome, allowing localization to 1p36.11-p31, a region notable for its disruption in many types of tumors.

Animals↗

Multiple dispersed spontaneous mutations: a novel pathway of mutation in a malignant human cell line.

We analyzed the nature of spontaneous mutations at the autosomal locus coding for adenine phosphoribosyltransferase in the human colorectal carcinoma cell line SW620 to establish whether distinctive mutational pathways exist that might underlie the more complex genome rearrangements arising in tumor cells. Point mutations occur at a low rate in aprt hemizygotes derived from SW620, largely as a result of base substitutions at G.C base pairs to yield transversions and transitions. However, a novel pathway is evident in the form of multiple dispersed mutations in which two errors, separated by as much as 1,800 bp, fall in the same mutant gene. Such mutations could be the result of error-prone DNA synthesis occurring during normal replication or during long-patch excision-repair of spontaneously arising DNA lesions. This process could also contribute to the chromosomal instability evident in these tumor cells.

Adenine Phosphoribosyltransferase↗

Molecular cloning of the human CTP synthetase gene by functional complementation with purified human metaphase chromosomes.

Successive rounds of chromosome-mediated gene transfer were used to complement a hamster cytidine auxotroph deficient in CTP synthetase activity and eventually to clone human genomic and cDNA fragments coding for the structural gene. Our approach was to isolate human Alu+ fragments from a tertiary transfectant and to utilize these fragments to screen a panel of primary transfectants. In this manner two DNA fragments, both mapping within the structural gene, were identified and used to clone a partial length cDNA. The remaining portion of the open reading frame was obtained through the RACE polymerase chain reaction technique. The open reading frame encodes 591 amino acids having a striking degree of similarity to the Escherichia coli structural gene (48% identical amino acids with 76% overall similarity including conservative substitutions) with the glutamine amide transfer domain being particularly conserved. As regulatory mutations of CTP synthetase confer both multi-drug resistance to agents widely used in cancer chemotherapy and a mutator phenotype, the cloning of the structural gene will be important in assessing the relevance of such phenotypes to the development of cellular drug resistance.

Amino Acid Sequence↗

DNA sequence analysis of gamma radiation-induced deletions and insertions at the APRT locus of hamster cells.

Gamma radiation-induced gene rearrangements at the Chinese hamster ovary cell locus coding for the purine salvage enzyme adenine phosphoribosyl transferase (APRT) consist of both simple deletions and more complex alterations that are presumably the result of multiple strand breaks. To characterize these mutations at the DNA sequence level, fragments altered by deletion and insertion mutations were obtained by cloning in lambda phage vectors or by using the polymerase chain reaction. The radiation-induced deletions characterized here eliminate 3-4 kb and have at least one breakpoint in an AT-rich region or near short direct or inverted repeats. Insertions involve small fragments (102 and 456 bp) of repetitive DNA that appear to be related to B2 (short interspersed repetitive) and long interspersed repeat families. The novel fragments bear little resemblance to each other or to sequences at the integration sites, and their introduction is accompanied by a small target site deletion.

Adenine Phosphoribosyltransferase↗

Increased rate of base substitution in a hamster mutator strain obtained during serial selection for gene amplification.

The pattern of mutations produced by a mutator gene (obtained during serial selection for amplification of the dihydrofolate reductase [dhfr] locus) shows a pronounced shift from that found in wild-type cells. The rate of certain types of base substitutions (particularly transitions) is dramatically increased, while gene rearrangements constitute a lower proportion of mutations. These data suggest a lower fidelity of the replication process in the mutator strain.

Animals↗

Molecular basis of spontaneous mutation at the aprt locus of hamster cells.

Mutations occurring spontaneously at the hamster aprt locus were examined at the base-pair level by amplifying target sequences using the polymerase chain reaction and then directly sequencing the double-stranded products. In a collection of 89 sequenced genes, all types of mutations were found, with transitions (mostly G.C to A.T) constituting the largest class (35%), transversions accounting for 27%, and small deletions/duplications for 25%. Simple base substitutions were distributed throughout the aprt structural gene with few sites having recurring mutations and G.C base-pairs being the predominant substitution target. Small deletions, on the other hand, were not distributed so evenly, being concentrated in a region of aprt rich in short direct and inverted repeat sequences. The base substitutions were predominantly missense, while about 10% produced nonsense codons. Splice junctions, and start and stop codons were also significant targets for mutation. No alterations were detected in three aprt-deficient strains after sequencing all exons and substantial upstream and downstream regions.

Adenine Phosphoribosyltransferase↗

G-repeats: a novel hamster sine family.

A fragment of a hamster repetitive element inserted into the aprt locus of a radiation-induced mutant is a member of a novel interspersed repetitive (SINE) family constituting approximately 0.3 to 0.5% of the hamster genome (30 to 50,000 family members). Since this family was first detected in a gene rearranged after exposure to gamma irradiation, we have called these G-repeats. In common with other repetitive elements, members of this family are about 300 bp in length, are highly divergent (an average of 30% from the consensus), have an A + T rich sequence flanking one side, and can be found in short polydisperse circular (SPC) DNA. In contrast to some other families, G-repeats are not flanked by short direct repeats and lack sequences corresponding to the RNA polymerase III consensus promoter.

Animals↗

Mapping replication units in animal cells.

A general approach for assaying the in vivo direction of replication for any DNA segment has been developed. This technique allows the scanning of genomic regions to detect bidirectional tail-to-tail replication, indicating the presence of a functional origin. By this criterion we identified the approximate positions of two origin sites downstream of the Chinese hamster DHFR gene. Further mapping revealed areas of head-to-head replication, signifying locations of replication termination and thus defining the landmarks of a complete animal cell replicon. Genetic proof for the existence of the DHFR origin was obtained by showing that this region serves as a bidirectional DNA synthesis initiation point following its integration into other sites in the genome by transfection. To show the general applicability of this methodology, we studied the APRT domain. Replication mapping together with the use of deletion mutants allowed the identification of an origin at a far-upstream locus.

Adenine Phosphoribosyltransferase↗

The molecular basis of mutations induced by deoxyribonucleoside triphosphate pool imbalances in mammalian cells.

Alterations of the balanced supply of the precursors of DNA synthesis, the deoxyribonucleoside triphosphates, have dramatic genetic consequences for mammalian cells including the induction of mutations, the sensitization to DNA damaging agents, and the production of gross chromosomal abnormalities. The use of recombinant DNA techniques has allowed the analysis of some of these effects and has revealed further mechanisms by which mammalian cells control the accuracy of DNA replication.

Alkylating Agents↗

The genetic consequences of DNA precursor pool imbalance: sequence analysis of mutations induced by excess thymidine at the hamster aprt locus.

To determine the effect of deoxyribonucleoside triphosphate pool imbalances on the accuracy of DNA replication within the cell, we examined the base pair alterations induced by excess intracellular dTTP at the adenine phosphoribosyl transferase (aprt) locus of CHO cells. The mutations were predominantly simple (C----T) transitions (38/44) and transversions (G----T, 5/44) explicable by the misincorporation of the DNA precursor supplied in excess (dTTP). Only one small deletion was observed. The context of the mutations is notable as the nucleotide incorporated after the error was usually the nucleotide in excess for the great majority of the transitions but not the transversions. As next nucleotide effects are characteristic of replication complexes having proofreading exonuclease activity, our data indicate that this mechanism functions within the cell to control the occurrence of some types of replicational errors.

Adenine Phosphoribosyltransferase↗

DNA sequence determination of gamma-radiation-induced mutations of the hamster aprt locus.

From a collection of 85 independent gamma-radiation hamster aprt- mutants, 27 having no major structural alterations were analysed at the nucleotide level by using the polymerase chain reaction to amplify mutant exons and then directly sequencing the double-stranded products. The majority of these mutations were simple base substitutions of all types, particularly transversions (11/27). Frameshifts and small deletions were also induced. The 'spectrum' of mutations produced by gamma-radiation was not significantly different from that occurring spontaneously at this locus. Differences with respect to the target and structure of frameshifts and small deletions occurring in the two collections were apparent.

Adenine Phosphoribosyltransferase↗

Deletion formation in mammalian cells: molecular analysis of breakpoints and junctions in the hamster aprt locus.

To examine the mechanisms governing deletion formation in mammalian cells, we have analyzed the breakpoints and junction fragments produced by seven such mutations at the aprt locus of Chinese hamster ovary cells at the base sequence level. The deletions were heterogeneous both in size, varying from 38 bp to 170 kb, and in sequence in that no recurring sequence or structural motifs were evident. Most were simple exchanges at overlapping di- or trinucleotides, but one was the result of a complex rearrangement in which breakpoints approximately 34 kb apart were joined by 16- and 398-bp inserted fragments originating some distance from the target. Unlike many human germ line deletions, few of the breakpoints fell within hamster repetitive elements. The directionality of the deletions at aprt indicates that an essential gene or structure may determine the pattern of such mutations.

Adenine Phosphoribosyltransferase↗