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Biomedical subjects

M Leibovici

Publications and source records attributed to M Leibovici.

At least 19 recordsLinked to original sources

Comparative analysis of the intracellular localization of c-Myc, c-Fos, and replicative proteins during cell cycle progression.

In eukaryotic cells, nucleus-cytoplasm exchanges play an important role in genomic regulation. We have analyzed the localization of four nuclear antigens in different growth conditions: two replicative proteins, DNA polymerase alpha and proliferating cell nuclear antigen (PCNA), and two oncogenic regulatory proteins, c-Myc and c-Fos. A kinetic study of subcellular localization of these proteins has been done. In cultures in which cells were sparse, these proteins were detected in the nucleus. When proliferation was stopped by the high density of culture cells or by serum starvation, these proteins left the nucleus for the cytoplasm with different kinetics. DNA polymerase alpha is the first protein to leave the nucleus, with the PCNA protein, c-Fos, and c-Myc leaving the nucleus later. In contrast, during serum stimulation c-Fos and c-Myc relocalize into the nucleus before the replicative proteins. We also noticed that in sparse cell cultures, 10% of the cells exhibit a perinuclear staining for the DNA polymerase alpha, PCNA, and c-Myc proteins but not for c-Fos. This peculiar staining was also observed as an initial step to nuclear localization after serum stimulation and in vivo in Xenopus embryos when the G1 phase is reintroduced in the embryonic cell cycle at the mid-blastula stage. We suggest that such staining could reflect specific structures involved in the initiation of the S phase.

3T3 Cells

Nuclear distribution of PCNA during embryonic development in Xenopus laevis: a reinvestigation of early cell cycles.

The immunocytological distribution of the proliferating cell nuclear antigen (PCNA), a protein involved in DNA replication, has been examined during the early development of Xenopus laevis. The protein is uniformly detected in nuclei during early stages up to the neurula stage. PCNA is detected by its distinctive cyclical pattern during early development, remaining detectable only during the period of S phase of each cell cycle. Immunological detection of PCNA is therefore a useful and specific non-isotopic marker of S-phase cells in the embryo. PCNA associates with typical karyomeric structures, suggesting that DNA replication starts before the nuclear compartment is entirely formed. At the midblastula transition, a new pattern of PCNA staining becomes apparent. First, a new type of PCNA staining is detected at the nuclear periphery. Second, mitotic clusters with different PCNA distributions suggest that the onset of desynchronization of the cell cycle at this stage is not random.

Animals

Characterization and developmental expression of Xenopus proliferating cell nuclear antigen (PCNA).

The coding sequence of the proliferating cell nuclear antigen (PCNA) was characterized in the amphibian Xenopus laevis. The deduced protein sequence shares an extensive homology (89%) with the mammalian PCNA coding sequences. Xenopus PCNA is expressed beginning in early oogenesis and reaches a level of 3 X 10(7) transcripts per mature oocyte, whereas proliferative somatic cells contain 3 X 10(2) PCNA transcripts per cell. Most of the PCNA protein is expressed during late oogenesis and one single stage VI oocyte contains the amount of PCNA protein present in 4 X 10(5) somatic cells in culture. Thus most, if not all, of the PCNA required for early development is stored as a maternal gene product. Part of the mRNA stockpile is degraded during the cleavage stage and then new PCNA zygotic expression at the neurula stage maintains a constitutive value of 30 transcripts per cell until the tailbud stage. The maternal protein is maintained at a constant level during embryonic development at least until the swimming tadpole stage. The protein is localized in the nuclei at all stages of oogenesis and development that were examined.

Amino Acid Sequence

Genes and mechanisms involved in early embryonic development in Xenopus laevis.

Our laboratory is studying genes involved in the regulation of the balance between cell growth and differentiation during embryonic development in Xenopus. We have analyzed the developmental expression of the proto-oncogenes c-myc, and KiRas 2B, the proliferating cell nuclear antigen (PCNA), and the tumor suppressor gene p53. These genes, usually expressed during cell proliferation, are expressed in the oocyte in large quantities, but the majority of their maternal RNAs are degraded by the gastrula stage. The expression of c-myc and the localization of the protein indicate that c-myc has the characteristics expected for a gene involved in the regulation of the mid-blastula transition, when zygotic expression is turned on in the embryo. Its expression during late development or during regeneration indicates that it enables the cells to remain competent for cycling during organogenesis. In vitro systems that reproduce the principal cellular functions during early development are used as model systems to understand the mechanisms involved in early embryogenesis.

Animals

Detection of proto-oncogenes in the genome of the amphibian Xenopus laevis.

The Xenopus laevis genome was probed by Southern Blot analysis for the presence of sequences homologous to mammalian or avian proto-oncogenes. Hybridization conditions were strictly defined with a known proto-oncogene to detect a positive signal with DNA sequences having at least 60 to 64% homology. In such conditions thirteen genes representing different oncogene families exhibited positive hybridizations with specific DNA restriction fragments. Members of the protein kinase oncogene family were detected including abl, erbB, fes, fms, ros, raf and mos. Ets, rel, and the steroid hormone related receptor erbA also gave positive signals with specific Xenopus DNA fragments. Proto-oncogenes raf and the ras family, N-ras, H-ras and c-ral, gave the strongest hybridizations and the signals remained positive in high stringency wash conditions. This study confirms the relative conservation of these genes during evolution and opens the possibility of studying their role in one of the best characterized systems of embryonic development.

Animals

Partial trisomy 3q.

A new case of partial trisomy 3q is reported in a 5-year-old female with severe congenital malformations and psychomotor retardation. A review of the literature, with a total of 11 patients, allows us to conclude that the clinical picture reminiscent of the Cornelia de Lange syndrome is caused by the trisomic state.

Abnormalities, Multiple

"De novo" trisomy 1q32 leads to 1qter and monosomy 3p25 leads to 3pter.

Minor abnormalities are described in an 11-month-old female in which a "de novo" trisomy 1q32 leads to lqter and a monosomy 3p25 leads to ter has been produced. The amount of the exceeding material in this case is less than that found in previous reports of partial trisomy 1q and in cases of parental 1q balanced translocations which has originated recurrent abortions.

Aneuploidy

Osteomyelosclerosis. A histopathological study of osteomedullary lesions on 32 cases.

The pathological features of the osteomyleoproliferative syndrome development were studied by trephine biopsy on 32 cases out of which 28, lesionally characterized by myeloproliferation, reticulin hyperplasia, intravascular hematopoiesis, myelofibrosis, myeloslerosis, and osteosclerosis, were interpreted as primary osteomyelosclerosis. Dynamic relationships between the myelogenous tissue and the osteogenous one are emphasized in the development of disease.

Adolescent

[Malignant iridic melanoma].

The present paper reports on a case of malignant melanoma of the iris masked by a relapsing iridocyclitis. The authors discuss the pathophysiological processes that may accompany the tumour.

Adult

[Cavka syndrome].

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