Search PubMed⌕ Search

Biomedical subjects

D Talarico

Publications and source records attributed to D Talarico.

26 records · Page 2Linked to original sources

A genetic analysis of the adenine phosphoribosyl transferase locus in Chinese hamster V79-AP4 cells: relevance to mutagenesis studies.

The chromosomal location of the autosomal locus aprt has been investigated in the permanent Chinese hamster cell line V79-AP4 by standard somatic cell genetics methodologies. Aprt is functionally dizygous in V79-AP4 and the 2 alleles map on 2 chromosome 3 homologs, in agreement with the chromosome assignment of the gene in Chinese hamster primary cells. Chromosome G-banding and a Southern blot analysis of V79-AP4 DNA, using as a probe the cloned Chinese hamster aprt gene, have not revealed any structural alteration at either of the 2 aprt alleles. One of the chromosomes 3 has, however, a terminal deletion in its long arm and is therefore morphologically marked. These findings could make V79-AP4 an interesting cell system for the study of mutational mechanisms at the aprt locus in Chinese hamster.

2-Aminopurine↗

Satellite DNA induces unstable expression of the adjacent herpes simplex virus tk gene cotransfected in mouse cells.

To study the influence of clustered highly repetitive DNA sequences on the expression of adjacent genes, LTK- cells were cotransfected with the herpes simplex virus thymidine kinase (tk) gene and mouse satellite DNA. TK+ transformants containing a few copies of the tk genes flanked by satellite DNA were isolated. In situ hybridization on the metaphase chromosomes indicated that in each cell line the TK sequences resided at a single chromosomal site and that integration occurred preferentially into regions of the cellular DNA rich in highly repetitive sequences. The prominent feature of these cell lines was their phenotypic instability. Suppression and reexpression of the tk gene occurred at high frequency (greater than 3%) and did not correlate with any significant change in the organization of foreign DNA or with the presence of selective agents. These results indicate that satellite DNA, the major component of constitutive heterochromatin, may influence the expression of adjacent genes by affecting the chromatin structure.

Animals↗

Study of the c-Ha-ras-1 locus polymorphism in an Italian population with high incidence of gastric cancer.

The c-Ha-ras-1 proto-oncogene locus is characterized by a restriction fragment length polymorphism resulting from length variation in a variable tandem repetition (VTR) region downstream from the structural part of the gene. The presence of uncommon alleles at this region has been suggested to be an informative marker for the development of different malignancies, including solid tumours. In order to identify possible genetic markers of cancer risk, we studied the c-Ha-ras-1 locus polymorphism in an Italian population characterized by a high incidence of stomach tumours. Gastric cancer patients, some having first-degree relatives affected by the same malignancy, and control subjects were studied. A total of 176 DNAs was analysed by the Southern blotting technique with TaqI restriction enzyme. This yields a fragment containing the sequence of variable length (VTR) and also allows detection of a cleavage site polymorphism. Thirteen different alleles were detected and some new common and rare variants were found. Our results do not provide evidence that the inheritance of any allele may predispose to gastric malignancies. Segregation analysis carried out on 13 patients' families demonstrated, without exception, a Mendelian inheritance of patterns.

Alleles↗

Molecular characterization of the testis specific c-abl mRNA in mouse.

The c-abl gene encodes a protein tyrosine kinase and is transcribed from at least two promoters giving rise to transcripts of two size classes of approximately 5 and 6 kb in length. These mRNAs only differ in their most 5' exon and encode proteins of similar size but with different N-termini. In the mouse testis an additional abundant c-abl mRNA of 4 kb is detected. This mRNA was shown to be expressed in the haploid male germ cells of the adult mouse. Here we describe the cloning and molecular characterization of a cDNA representing the testis specific c-abl transcript. We show that the 4 kb c-abl mRNA arises from alternative polyadenylation of an RNA transcribed from the same promoter as the 5 kb mRNA. The site of polyadenylation is unusual in this shorter transcript as it is not preceded by the highly conserved hexanucleotide AAUAAA. The use of this polyadenylation site removes 1.2 kb of 3' sequences present in the somatic c-abl mRNAs, but does not affect the main open reading frame of the transcript. Using in situ hybridization on whole testis sections it is shown that the 4 kb c-abl mRNA is most abundant in the elongating spermatids.

Animals↗

Identification of a human clustered G + C-rich DNA family of repeats (Sau3A family).

Sau3A digestion of human G + C-rich DNA molecules yields discrete bands of approximately 70 and 140 base-pairs, under-represented in A + T-rich DNA molecules and in total DNA. We have cloned the 70 base-pair band in a plasmid vector and isolated a representative recombinant clone that identifies a new human family of repeats, the Sau3A family. The new family has been characterized for a number of parameters: genomic organization; reiteration frequency; sequence analysis; and distribution in a human genomic library. The Sau3A sequence (68 base-pairs in length, 53% G + C) is present in approximately 4 X 10(4) copies/haploid genome; the family is characterized by a cluster organization and is confined to a limited fraction (0.5%) of phages of a human genomic library. Southern blot hybridizations of the cloned sequence to restriction digests of total human DNA and of isolated genomic clones does not show the involvement of Sau3A blocks in long-range periodicities for any of the enzymes tested. The data suggest either a high sequence variability in the family or a complex organization of Sau3A sequence domains.

Cloning, Molecular↗

Fate of exogenous recombinant plasmids introduced into mouse and human cells.

We have constructed a number of plasmids selectable in both E. coli and mouse or human cells. Human DNA sequences were inserted and the recombinant plasmids were used to transfect either mouse or human cells by the Ca-phosphate precipitation technique. We have observed that: (i) competent cells uptake large amounts of plasmid DNA; (ii) input plasmids persist in transformed mammalian cells as free unreplicating circular molecules for up to 20 generations; such persistence does not depend on the presence of selective markers; (iii) plasmids incorporated into mouse L-cells undergo widespread rearrangements (in the absence of replication) entailing mostly deletions of both human and bacterial sequences which yield smaller products; the latter appear to be more stable in a subsequent transformation cycle. Surprisingly such rearrangements are almost totally absent in transformed human KB-cells. This property of human KB-cells may prove useful for the development of a vector apt at cloning and expressing human DNA sequences. Unlike what has been observed in yeast, no "autonomously replicating sequence" can be detected in mammalian cells by randomly cloning human DNA sequences into a selectable plasmid and screening for an increased transformation efficiency.

Animals↗