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Biomedical subjects

L Larizza

Publications and source records attributed to L Larizza.

At least 73 records · Page 4Linked to original sources

Microsatellite instability in IVS3 of murine c-fes gene: tumor-associated rearrangement and mammalian divergence.

The murine lymphomacrophage hybrids ESb, EbF1, EbF2-c4, which express c-fes constitutively, were found by Southern analysis to bear a c-fes deletion of almost 100 bp. The deleted allele was transmitted to the metastatic hybrids by their nonexpressing, poorly metastatic T-lymphoma progenitor Eb, which also has a structurally normal c-fes allele. PCR amplification and sequencing of fes cDNA spanning exons 3-5, where the deletion mapped, ruled out any involvement of coding sequences in the rearrangement. PCR amplification of the as yet unsequenced murine c-fes IVS3 and IVS4 showed they are about 50% longer than their human and feline homologs. Sequencing of IVS4 showed no difference between tumor and control DNA. Sequencing of part of the approximately 2600-bp IVS3 was guided by the restriction analysis of PCR products from control and hybrid DNAs. This showed that differences from the control appeared to be mainly located in the 900-bp HindIII-EcoRI fragment, localized in the middle of IVS3. As all three hybrids had the same restriction map, this fragment was sequenced in one of them (ESb). A run of >200 CA repeats was found in control DNA, and a reduction in the CAn microsatellite accounted for most of the c-fes deletion in the ESb hybrid. Interestingly, the 50% reduction in the size of human and feline c-fes IVS3 as compared with the murine homolog is mostly due to contraction of the same microsatellite.

Animals↗

Characterization of a cytogenetic 17q11.2 deletion in an NF1 patient with a contiguous gene syndrome.

We report on a rare patient screened as a putative carrier of a contiguous gene syndrome on the basis of a complex phenotype characterized by sporadic neurofibromatosis type 1 (NF1), dysmorphism, mental retardation and severe skeletal anomalies. A cytogenetically visible 17q11.2 deletion was detected in the patient's karyotype by high-resolution banding and confirmed by fluorescence in situ hybridization with yeast artificial chromosomes targeting the NF1 region. Analysis of the segregation from parents to proband of 13 polymorphic DNA markers, either contiguous or contained within the NF1 gene, showed that the patient is hemizygous at sites within the NF1 gene-the AAAT-Alu repeat in the 5' region of intron 27b, the CA/GT microsatellite in the 3' region of intron 27b, and the CA/GT microsatellite in intron 38- and at the extragenic D17S798 locus, distal to the 3' end of NF1. The patient may be an important resource in the identification of genes downstream of NF1 that may contribute to some of his extra-NF1 clinical signs.

Adult↗

Isochromosome 15q of maternal origin in a Prader-Willi patient with pituitary adenoma.

We report on a Prader-Willi syndrome (PWS) patient carrier of a balanced 15q15q translocation and affected by a prolactin-secreting pituitary adenoma. Evidence provided by molecular studies indicates that the structural rearrangement is an isochromosome of maternal origin. According to the identification of isodisomy as the basis of the association of rare disorders and the recent report on chromosome 15 monosomy and nullisomy in pituitary adenoma, we suggest that in our case PWS and pituitary adenoma might be related.

Adenoma↗

FISH characterization of the Xq21 breakpoint in a translocation carrier with premature ovarian failure.

A panel of ordered YAC clones, isolated using STSs in the Xq13-Xq23 region, was used to characterize by Fluorescent In Situ Hybridization (FISH) the Xq21 breakpoint in a t(X;1)(q21;p34) translocation female with premature ovarian failure. The YAC 949E11 was found to span the breakpoint, but also to join the two non-overlapping YACs 36CB1 and 40AB3, proximal and distal, respectively, to the patient's Xq21 breakpoint.

Adolescent↗

Expression pattern of c-sis, c-fos and c-jun in human placenta and embryofetal organs.

The expression pattern of c-sis, c-fos and c-jun was investigated in placenta and embryofetal organ specimens from the first trimester. Northern analysis of the placentae showed c-sis transcripts and c-fos expression. Northern analysis of the same genes in embryofetal organs pointed to the brain as the only organ where consistent transcriptional activity could be observed. RT-PCR analysis of c-fos and c-jun in placentae, staged at four different time periods in pregnancy, allowed to detect the expected fragments in all cases. The same was true when c-fos and c-jun were analyzed at the 13th week of gestation in all the embryofetal organs.

Blotting, Northern↗

FISH analysis in Prader-Willi and Angelman syndrome patients.

We report on a combined high resolution cytogenetic and fluorescent in situ hybridization study (FISH) on 15 Prader-Willi syndrome (PWS) and 14 Angelman syndrome (AS) patients. High resolution banding showed a microdeletion in the 15q11-q13 region in 7 out of 15 PWS patients, and FISH analysis of the D15S11 and SNRPN cosmids demonstrated absence of the critical region in three additional cases. Likewise 8 out of 14 AS patients were found to be deleted with FISH, using the GABRB3 specific cosmid, whereas only 4 of them had a cytogenetically detectable deletion.

Angelman Syndrome↗

High spontaneous chromosomal damage in lymphocytes from patients with hereditary megaduodenum.

Chromosomal aberration and micronucleus assays were used to investigate the extent of cytogenetic damage in peripheral blood lymphocytes from four patients in two unrelated families with hereditary megaduodenum. The frequencies of total chromosomal aberrations, which significantly correlated with those of micronuclei, were higher in the patients than in sex- and age-matched controls, with no overlapping between the two groups. The considerable chromosomal fragility in patients with hereditary megaduodenum may be a genotypic marker for preclinical diagnosis predictive of increased cancer risk.

Adult↗

Hypertonic stress induces c-fos but not c-jun expression in the human embryonal EUE epithelial cell line.

Recent evidence has indicated a role for the two early response genes c-fos and c-jun in transcriptional regulation of genes acting in osmoregulation. On this basis we investigated their expression in response to hypertonic stress in the human embryonal EUE epithelial cell line. EUE cells have proven to be a useful tool for studying long-term in vitro adaptation to hypertonic stress. After culturing EUE cells in hypertonic medium a marked c-fos induction was observed, both at the mRNA and the protein level. Northern analysis of fos-mRNA showed a peak expression at 4 h, followed by a progressive decline till complete extinction at 8 h. Immunofluorescence analysis of FOS protein evidenced a similar, although slightly delayed kinetics of expression. Conversely, neither c-jun nor c-myc up-regulation could be detected. The treatment of EUE cells with cycloheximide led to superinduction of c-fos expression, (with high levels up to 12 h), and to a c-jun expression that was just detectable. Hypertonic stimulation of the transformed cell lines A549, MCF7 and JR induced both c-fos and c-jun only in JR cells. Hypertonic shock was also effective in inducing c-fos expression in fetal human diploid fibroblasts, although the response was earlier and more transient than in EUE cells. These findings indicate that c-fos is a primary response gene in hypertonic stress-activated cells, although the pattern and kinetics of its induction may differ according to the type of cell.

Blotting, Northern↗

Differential induction of the two early genes c-jun and c-fos in weakly and strongly metastatic murine lymphoma cell lines.

Induction of the 2 early-response genes c-jun and c-fos was investigated in the weakly metastatic T-lymphoma Eb line and the related strongly metastatic lymphomacrophage ESb line to find possible correlations with their different in vitro and in vivo phenotypes. The response of c-jun was elicited by the protein kinase-C activators TPA and A23187 in ESb but not in Eb cells. A much lower response of c-fos was also found in Eb than in ESb cells, in this case by means of serum and the cAMP elevator forskolin. However, both TPA and the calcium ionophore A23187 were similarly effective in inducing fos-mRNA in both cell lines. The uncoupling of c-jun and c-fos induction in Eb, but not in ESb cells, as well as the uncoupling of c-fos response to different stimulators, point to a differential activation of these 2 early-response genes by the main signal transduction pathways in the 2 cell types. The coordinate/uncoordinate availability of the fos/jun heterodimer may confer distinct regulatory patterns on different target genes in ESb/Eb cells. Activation of these genes may underlie the distinct differentiation phenotypes and in vivo behavior of Eb/ESb cells.

Animals↗

Satellite DNA sequences flank amplified DHFR domains in marker chromosomes of mouse fibrosarcoma cells.

This study centers on marker chromosomes carrying expanded chromosomal regions which were observed in two independent derivatives of the AA12 murine fibrosarcoma line, the 10(-3) M MTX-res H2 and the 5 x 10(-7) M MTX-res E. Previous characterization of the marker chromosomes of MTX-res variants showed their common derivation from a marker chromosome (m) of the parental line, endowed with two interstitial C-bands. Cytogenetic evidence pointed to one C-band of m as the site involved in the chromosomal rearrangements leading to the HSR/ASR chromosomes. ISH of a 3H-labeled satellite DNA probe allowed satellite sequences flanking the HSR/ASR in the marker chromosomes, where the C-band was no longer visible, to be detected. FISH experiments using biotinylated DHFR and satellite DNA probes showed that the respective target sequences are contiguous in new marker chromosomes. They also allowed inter- and intrachromosomal rearrangements to be seen at DHFR amplicons and satellite sequences. Double-color FISH using digoxygenated satellite DNA and biotinylated pDHFR7 showed that in a marker chromosome from the H2 cell line the two target sequences are not only adjacent, but closer than 3 Mb, as indicated by overlapping of the different fluorescence signals given by the two probes. Another marker chromosome in the E variant was shown to display a mixed ladder structure consisting of a head-to-head tandem of irregularly-sized satellite DNA blocks, with two symmetrical interspersed DHFR clusters.

Animals↗

Three-way and two-way rearrangements involving chromosomes 10, 2, 5 and 5, 2 in two marker chromosomes of a human melanoma cell line.

Two marker chromosomes (mar1 and mar2), provided with two closely spaced heterochromatic bands, were observed in the 14932 cell line established from a human metastatic melanoma. Fluorescence in situ hybridization (FISH) with the alphoid sequence p82H common to all human centromeres showed strong signals over the double C-bands of mar1 and mar2. These were recognized by a chromosome 2-specific alphoid probe, although chromosome in situ suppression (CISS) hybridization with a chromosome 2 library failed to reveal any painting along mar1 and mar2. The centromere of mar1 was identified by a chromosome 10-specific alphoid sequence and the marker chromosome was decorated from pter to a region proximal to the interpolated C-band by a chromosome 10 library. The centromere of mar2 could not be recognized by any chromosome-specific alphoid probe, but the whole mar2 was decorated by a chromosome 5 library. This library also painted the distal q arm of mar1, which was not painted by the chromosome 10 library, as well as a small band proximal to the double C-band. Identification of the two marker chromosomes reveals their common origin and indicates a role for chromosomes 2, 5 and 10 in the genesis and/or progression of the 14932 melanoma. Alteration to the chromosome-specific alphoid sequence in the centromere of mar2 provides evidence for rearrangement of constitutive heterochromatin alphoid sequences in human tumours.

Centromere↗

Expression of the c-ski proto-oncogene in human melanoma cell lines.

The aim of this study was to establish whether the expression of proto-oncogene c-ski in melanoma might be related to alterations of chromosome 1q involving the native location of the gene. Six melanoma cell lines, including two carrying marker chromosomes derived from breakage at 1q12-q21, were studied. Expression of c-ski was observed in all cell lines, with very high levels in five of them. However no alteration in c-ski structure or dosage was found in any of the melanoma cell lines, including those with non-random breakpoints near the gene. c-ski Transcripts were detected in cell cultures from normal melanocytes, but at a much lower level than that observed in melanoma cell lines. Transcripts of c-myb and the beta-NGF gene were not detectable in any of the melanoma cell lines, whereas sis- and epidermal growth factor (EGF) receptor gene-specific transcripts were present in two and four melanoma cell lines, respectively. The constant expression of c-ski in the melanoma-derived cell lines at a level of expression much higher than that of normal melanocytes suggests that this proto-oncogene may play a role in melanocyte transformation.

Blotting, Northern↗

Prenatal diagnosis of an extranumerary i(22p) with normal phenotype.

A DA-Dapi and AgNOR-negative extranumerary chromosome was identified prenatally in a male fetus and also found in his normal father. Fluorescence in situ hybridization using repetitive DNA probes showed that the minute marker was positive at both ends for beta-satellite sequences, while its centromere was recognized by a 22 alphoid probe. It is concluded that the non-mosaic familial marker represents a 22p isochromosome.

Adult↗

Activation of c-fos and c-fes in metastatic lympho-macrophage hybrids.

The expression of proto-oncogenes involved in myelomonocytic differentiation was studied in 3 metastatic murine lympho-macrophage hybrids (ESb, EbF1, EbF2-C4) which display several antigenic and functional macrophage properties. Constitutive expressions of fos and fesmRNA, which were not detectable in the weakly metastatic parent lymphoma (Eb), was shown in all the proliferating hybrid lines. By contrast, c-myc and c-myc expressions were shared by the tumor parent and the hybrids. The c-fos transcripts observed in the hybrids were atypical in size, 2.3 kb, but standard 2.2-kb transcripts could be detected in serum-induced cells, even in the non-expressing Eb lymphoma. The kinetics of the induced fos mRNA was found to conform to the features reported in the literature for a large variety of cells. No structural alteration of the c-fos gene was detected by Southern analysis. PCR amplification of the 2.3- and 2.2-kb fos mRNA showed that they are identical in size in both the coding and the 3' untranscribed region. A longer poly A tail is thought to account for the additional 100 bp in the 2.3-kb fos mRNA, as both the 2.3- and 2.2-kb transcripts attain the same size following de-adenylation.

Animals↗

Expression of c-sis and c-fos genes in human meningiomas and neurinomas.

The HindIII c-sis RFLP was analyzed in constitutional and tumor DNAs of 19 meningioma patients. Loss of a c-sis allele (allele I in all cases) was observed in 6 out of 10 tumors from heterozygous patients. No alteration in the structure or dosage of the c-sis gene was detected in any tumor sample. Northern analysis of c-sis evidenced sis transcripts in 7 out of 8 meningiomas which were amenable to analysis. All tumors expressing c-sis also expressed c-fos, suggesting that the autocrine loop elicited by sis activation may have c-fos as its nuclear target. Co-expression of c-sis and c-fos was also observed in 5 neuromas out of 7 analyzed. Very high levels of fos-mRNA were observed in 2 neuromas, but were not found to be caused by apparent alteration or amplification of the c-fos gene.

Adolescent↗

Different phenotypes in two cases of an apparently identical familial (Yq;13p) translocation.

A chromosome 13 with extra material on the short arm was observed in a 17-year-old boy showing defects in skeletal growth, an altered hormone profile and asthenoteratozoospermia, and in a 46 XX fetus subjected to prenatal diagnosis. The abnormal chromosome 13 had been transmitted from phenotypically normal parents who were the mother (case 1) and the father (case 2). The extra material on the abnormal chromosome 13 was brightly fluorescent after Q-banding, and positive in C-banding (CBG) and distamycin A-Dapi (DA-Dapi) banding. Staining of the nucleolus organizer region indicated its retention. In-situ hybridization of a Yq-specific repetitive DNA probe to chromosomal spreads from both cases demonstrated that the der(13) chromosome contains sequences of the Yq heterochromatic region. However, the apparently identical unbalanced (Y;13) translocation may either interfere (case 1) or not (father of case 2) with meiotic or postmeiotic sperm cell development.

Adolescent↗