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F Cuzin

Publications and source records attributed to F Cuzin.

At least 37 records · Page 2Linked to original sources

Genomic structure and chromosomal localization of the mouse CDEI-binding protein CDEBP (APLP2) gene and promoter sequences.

The genomic structure of the mouse gene encoding the CDEBP protein has been established. The protein was initially identified on the basis of its ability to bind the CDEI motif (GTCACATG). The same locus has been independently described under the name APLP2, on the basis of sequence similarities with the Amyloid Precursor Protein (APP). The exon-intron distribution of Cdebp appears strikingly similar to that of the App gene in the regions encoding the conserved domains, with a divergent structure in the other parts. The transcription start site has been localized, and sequences with promoter activity have been identified immediately upstream of it by their ability to direct the expression of a reporter luciferase gene in transfected cells. This region is devoid of either TATA or CAAT boxes. The gene has been mapped to mouse chromosome 9 by in situ hybridization on metaphase chromosomes.

Animals↗

cDNA sequence of the murine synaptonemal complex protein 1 (SCP1).

We isolated and sequenced cDNAs for the murine synaptonemal complex protein 1 (SCP1). The whole cDNA sequence displays respectively 93% and 90% identity with the previously reported rat and hamster cDNAs. We show, however, that the encoded amino acid sequence extends for an additional stretch of 51 residues at its amino-terminal end.

Amino Acid Sequence↗

Subnuclear localization of WT1 in splicing or transcription factor domains is regulated by alternative splicing.

WT1 is a tumor suppressor gene with a key role in urogenital development and the pathogenesis of Wilms' tumor. Two alternative splice sites in the WT1 transcript allow the gene to encode four proteins. These carry four Krüppel-type zinc fingers and to date have primarily been implicated in transcriptional control of genes involved in growth regulation. However, here we demonstrate colocalization of WT1 with splicing factors in the fetal kidney and testis and in expressing cell lines. Using immunoprecipitation, we show that two WT1 isoforms directly associate with one or a limited number of components in the spliceosomes and coiled bodies. Moreover, COS cell expression studies suggest that alternative splicing within the WT1 zinc finger region determines whether the protein localizes mainly with splicing factors or with DNA in transcription factor domains in the nucleus. We propose that WT1 plays roles in posttranscriptional processing of RNA as well as in transcription.

Alternative Splicing↗

Replication efficiency of bovine papillomavirus type 1 DNA depends on cis-acting sequences distinct from the replication origin.

The viral elements required for the initiation of replication of bovine papillomavirus type 1 DNA include the origin region and two trans-acting factors, the E1 and E2 proteins. We now report that the replication efficiency of a DNA molecule which contains these three elements is modulated by other viral sequences. By measuring the extent of replication of deleted viral genomes in transfected mouse cells, we identified sequences required for maximal efficiency. Addition of these sequences to a construct carrying only the minimal origin region increased its replication. Among these cis-active elements, we identified a 69-bp fragment (nucleotides 4921 to 4990) which contains at least two binding sites for cellular proteins. One of them is the murine protein termed CDEBP, which recognizes the octameric motif ATCACGTG, identical to the yeast CDEI element. Either deletions affecting this CDEI box or a point mutation which impairs binding of CDEBP markedly decreased the extent of viral DNA replication. They had no detectable effect on viral transcription.

Animals↗

CDEBP, a site-specific DNA-binding protein of the 'APP-like' family, is required during the early development of the mouse.

A murine protein, termed CDEBP, was previously shown to bind the double-stranded DNA motif GTCACATG, identical to the yeast centromeric element CDEI. The cDNA sequence showed three domains with extensive similarities to the amyloid beta precursor protein (APP). The protein is homologous over its entire length to the human protein designated APPH. In situ immunofluorescence assays using antibodies raised against distinct parts of CDEBP detected discrete sites of accumulation inside the interphase nucleus, and the bulk of the protein was not associated with mitotic chromosomes. One of the complexes with double-stranded CDEI oligonucleotides detected by gel shift assay was not present when the protein had been selectively removed from nuclear extracts by immunoprecipitation. We reported previously that microinjection into one-cell mouse embryos of DNA fragments including the CDEI sequence results in an early arrest of development with abnormal nuclei containing variable amounts of DNA. The same characteristic figures were observed when embryos were treated with antisense oligonucleotides complementary to parts of the CDEBP coding region. Complexes between the CDEBP protein and CDEI sites in the mouse genome thus appear to play a critical role in the replication/segregation of the embryonic genome.

3T3 Cells↗

Transmeiotic differentiation of male germ cells in culture.

A cell culture system that supports the differentiation of male germ cells through meiosis is described. It takes advantage of the properties of a cell line, 15P-1, established from testicular cells of transgenic mice that express the large T protein of polyoma virus in the seminiferous epithelium. This line exhibits features characteristics of Sertoli cells, including transcription of the Wilms' tumor (WT1) and Steel genes. Cells of the 15P-1 type support the meiotic and postmeiotic differentiation in cocultures of diploid premeiotic germ cells into haploid spermatids expressing the protamine (Prm-1) gene. When cocultured with 15P-1 cells, testicular cells explanted from immature 9-day-old animals, before the onset of the first meiosis, generated tetrads of haploid cells with the morphology of round spermatids and initiated protamine transcription.

Animals↗

Coordinated posttranscriptional control of gene expression by modular elements including Alu-like repetitive sequences.

We previously reported that in rat fibroblasts, accumulation of a set of mRNAs ("pIL genes") was modulated as a function of cell growth and transformation, at a posttranscriptional stage, and by a mechanism that depends on a short nucleotide sequence containing an ID repetitive element. In mouse fibroblasts, hybridization with rat pIL probes identified mRNAs with the same pattern of expression, which did not contain ID sequences but contained a different regulatory element, encompassing a repetitive sequence of the B1 family. Expression in mouse cells of a reporter beta-globin gene carrying this element inserted in its 3' noncoding region was growth- and transformation-dependent. The nucleotide sequences of two murine and of three rat pIL cDNAs showed clear similarities in the region immediately adjacent to the ID and B1 repeats. Both the repeat and the flanking sequence were required to confer on beta-globin constructs the pattern of expression characteristic of the pIL genes. The hypothesis is presented that repetitive sequences in the eukaryotic genome might be modular parts of complex regulatory elements ensuring the coordinated expression of various mRNA species.

3T3 Cells↗

Expression in transgenic mice of the large T antigen of polyomavirus induces Sertoli cell tumours and allows the establishment of differentiated cell lines.

The large T antigen of polyomavirus (PyLT) efficiently immortalizes rodent fibroblasts, but, unlike SV40 T antigen, it is not sufficient to achieve complete oncogenic transformation. We analysed a series of transgenic mouse families that express the PyLT protein under control of the viral enhancer-promoter region. In all of them, the transgene was expressed in the seminiferous epithelium of the testis (Sertoli and germ cells), with no pathological consequences during most of the animals' lives. However, every old male developed large bilateral tumours of the testes, generated by the proliferation of Sertoli cell derivatives. Cell lines could be readily established both from the tumours and from the still apparently normal testis before the onset of tumoral growth. They retained in vitro morphological and ultrastructural features characteristic of Sertoli cells. But, in addition to this major Sertoli component, the maintenance of a cellular contingent of germinal origin was suggested by the expression of genes that are normally transcribed during the premeiotic and early meiotic stages of spermatogenesis (LDH-X, Hox1.4 and c-kit). The two cell types remained tightly associated, even at late passages in culture, and could not be separated by conventional cloning procedures. This association in culture of the two cell types whose interaction is critical for spermatogenesis may provide a useful tool for its molecular analysis.

Animals↗

A murine sequence-specific DNA binding protein shows extensive local similarities to the amyloid precursor protein.

Microinjection experiments suggested previously that protein binding to the DNA nucleotide sequence GTCACATG, identical to the CDEI element of the yeast centromere, plays an important role in the early development of the mouse. We established from a series of overlapping mouse cDNA clones the sequence of a candidate CDEI-binding protein. Synthesis in Escherichia coli of a fusion protein which binds specifically the CDEI box in vitro confirmed its identification. On the other hand, the translated 511 amino acid sequence shows two regions with high degrees of similarity to the protein precursor (APP) of the beta-protein (amyloid) that accumulates in the brain and blood vessels of Alzheimer patients. A continuous stretch of 195 amino acids includes 133 residues identical to part of the extracellular domain of APP, and 48 of the 70 C-terminal residues of the open reading frame are identical to the APP transmembrane and cytoplasmic domains.

Amino Acid Sequence↗

Mammalian and viral DNA sequences which interfere with the maintenance of a centromeric vector in yeast.

We constructed a recombinant plasmid by inserting into the pRS314 yeast centromeric plasmid vector the mouse DNA sequence responsible for the maintenance in transgenic mice of plasmid p12B1 (1). Such constructs could constitute convenient shuttle vectors between yeast and mouse cells. However, the recombinant molecule could not be established as a stable plasmid in Saccharomyces cerevisiae. A region with a limited similarity to the yeast centromere (CEN element) is present in this mouse sequence as well as in two other sequences subsequently identified in a data bank search using the CEN consensus. One of them is localized in Bovine Papillomavirus Type 1 DNA, and the other one in the human beta-globin locus. Once inserted in pRS314, these two sequences showed the same inhibitory effect on plasmid maintenance as the p12B1 mouse DNA fragment. This effect appears to depend on the simultaneous presence in the construct of one of the "CEN-like regions" and of an authentic CEN element. Non-centromeric yeast plasmids carrying one of the three sequences could replicate autonomously, and were even stabilized to a significant extent. These results identify in the genomes of higher eukaryotes and their viruses a family of sequences which cannot be simply cloned in centromeric yeast vectors.

Animals↗

Transgenic mice expressing polyoma virus large T antigen in astrocytes develop severe dysmyelination of the central nervous system.

Transgenic mice were generated using a construct that encodes mouse polyoma virus large T antigen, one of three oncogenic products of the "early region" of the polyoma viral genome. Of 16 transgenic families developed, 1 was characterized by a neurologic disorder consisting of constant tremor and recurrent seizures. Morphologic analysis of the central nervous system (CNS) of affected transgenic mice included: classical light and electron microscopic examination; immunohistochemical assessment of the presence and localization of myelin-specific proteins, of the astrocyte marker glial fibrillary acidic protein, of the oligodendrocyte marker galactosyl cerebroside, and of large T; double immunolabeling of glial fibrillary acidic protein or galactosyl cerebroside and large T to identify the CNS cell type in which large T is expressed; and in situ hybridization to study myelin basic protein gene expression. Our results suggest that polyoma large T is expressed in astrocytes, possibly resulting in altered glial-glial interactions causing impaired oligodendroglial development and secondary dysmyelination. Transgenic oligodendrocytes exhibit features of immaturity, failing to myelinate axons properly and producing morphologic phenotypes of early stages of myelination, such as numerous mesaxonal profiles. Myelin proteins are markedly reduced in transgenic CNS, and myelin basic protein transcripts, while present, are generally decreased. We believe that expression of large T in astrocytes could influence the complex and dynamic interactions between astrocytes and oligodendrocytes, perhaps with regard to the molecular (trophic) signals in the local CNS environment, bringing about arrested oligodendroglial maturation and hypomyelination. This raises intriguing questions concerning the importance of glial-glial interactions in the CNS and the complex levels of control involved in biological expression of genetic information in glial cells.

Animals↗

Recognition of the CDEI motif GTCACATG by mouse nuclear proteins and interference with the early development of the mouse embryo.

We have reported previously (1) two unexpected consequences of the microinjection into fertilized mouse eggs of a recombinant plasmid designated p12B1, carrying a 343 bp insert of non-repetitive mouse DNA. Injected at very low concentrations, this plasmid could be established as an extrachromosomal genetic element. When injected in greater concentration, an early arrest of embryonic development resulted. In the present work, we have studied this toxic effect in more detail by microinjecting short synthetic oligonucleotides with sequences from the mouse insert. Lethality was associated with the nucleotide sequence GTCACATG, identical with the CDEl element of yeast centromeres. Development of injected embryos was arrested between the one-cell and the early morula stages, with abnormal structures and DNA contents. Electrophoretic mobility shift and DNAse foot-printing assays demonstrated the binding of mouse nuclear protein(s) to the CDEl-like box. Base changes within the CDEl sequence prevented both the toxic effects in embryos and the formation of protein complex in vitro, suggesting that protein binding at such sites in chromosomal DNA plays an important role in early development.

Animals↗

Establishment of permanent astroglial cell lines, able to differentiate in vitro, from transgenic mice carrying the polyoma virus large T gene: an alternative approach to brain cell immortalization.

Permanent untransformed cell lines have been established from the cerebral cortex of transgenic mice that carry the polyoma virus large T gene. The immortalized cells described here synthesize laminin and neural cell adhesion molecules and induce primary neurons to develop neuritic processes. As shown by immunofluorescence and immunoblotting assays, they begin to synthesize the glial fibrillary acidic protein (GFAP) after confluence. Double labelling experiments indicated that GFAP expression is reversibly correlated with the arrest of cell division. The present cells also display adrenergic, serotoninergic, and high levels of muscarinic receptors coupled to the phosphatidylinositol signalling pathway. Taken together, our data show that these cell lines constitute homogeneous cell material that has retained the main differentiative, functional, and growth properties of normal astrocytes. Therefore, such clonal untransformed cell lines should be useful for further molecular studies, addressing terminal differentiation of glial cells, glioneuronal interactions, and astroglial expression of receptors for neurotransmitters. Furthermore, we suggest that this approach of cell immortalization by the use of transgenic mice carrying a non-transforming oncogene might be extended to a variety of cell types.

Animals↗

Vaccinia recombinants expressing early bovine papilloma virus (BPV1) proteins: retardation of BPV1 tumour development.

Papillomaviruses are aetiological agents of epithelial proliferative diseases in animals and in man. It was previously demonstrated that animals inoculated with live vaccinia recombinants expressing early proteins of polyoma virus resist challenge with polyoma-tumour cells, and this approach has been extended to the development of a vaccine against papillomavirus-transformed cells. Bovine papillomavirus type 1 (BPV1), a virus responsible for dermal lesions in cattle, is a prototype virus of the papillomavirus group. Independent vaccinia recombinant viruses expressing the early E1, E2, E5, E6 or E7 open reading frames of BPV1 were tested for their ability to direct the expression of the corresponding protein in cultured cells. Recombinants were then assessed for their ability to elicit anti-tumour immunity in Fischer rats seeded with BPV1-transformed syngeneic FR3T3 cells. Retardation of tumour growth was observed in animals vaccinated with recombinants expressing E5, E6 or E7.

Animals↗

A variety of tumours induced by the middle T antigen of polyoma virus in a transgenic mouse family.

A transgenic mouse family expressing the middle T antigen of polyoma virus under control of the immunoglobulin heavy chain (IgE) enhancer showed the frequent occurrence of carcinomas in various organs, predominantly in females. Most frequently affected were the salivary and thyroid glands, but mammary tumours, liver haemangiomas and adenocarcinomas of unknown origin were also observed. In all tumours, the middle T antigen was found to be complexed with cellular tyrosine kinases. These results extend the range of tumour types associated with in vivo expression of middle T and with the subsequent deregulation of pp60c-src and related tyrosine kinases.

Animals↗

Sensitization of transformed rat cells to parvovirus MVMp is restricted to specific oncogenes.

The rat cell line FR3T3 was transformed with the retroviral oncogenes v-myc or v-src, with the DNA tumor viruses SV40 or bovine papilloma virus strain 1 (BPV-1) or with the 69% transforming region of BPV-1. The transformants were compared with the uncloned parental line for their susceptibility to the lytic effect and to the replication of MVMp, an autonomous parvovirus. Expression of v-myc and v-src proteins and of SV40 large T antigen correlated with a greater cell susceptibility to MVMp-induced killing. Thus, the expression of both cytoplasmic and nuclear oncogene products may sensitize rat fibroblasts to MVMp. In contrast, cell lines transformed by BPV-1, including highly tumorigenic and tumor-derived clones, were on the average as resistant as the parental cell line to MVMp infection. A similar resistance to MVMp-induced killing was displayed by BPV-1-transformed NIH3T3 cells. However, supertransformation of one of the BPV-1-transformants by the human EJ-Harvey ras-1 oncogene, known to sensitize FR3T3 and NIH3T3 cells, correlated with an increase in susceptibility to MVMp. Therefore, the failure of BPV-1 transformation to sensitize murine cells to parvoviral attack may be ascribed to the tumor virus rather than to the cells undergoing transformation. Hence, cell sensitization to MVMp appears to be oncogene-specific and cannot be taken as an absolute correlative with neoplastic transformation.

Animals↗

Non-selective analysis of the transformation of FR3T3 rat cells by bovine papillomavirus type 1: regulations of viral transcription associated with phenotypic transformation.

Drug-resistant clones selected from FR3T3 rat cells after transfer of neo-BPV1 (Bovine Papillomavirus Type 1) DNA constructs became phenotypically transformed (focal transformation, growth in suspension and tumor formation) soon after selection (approximately 5 generations in culture). A frameshift mutation in ORF E5 abolished transformation, but did not prevent the autonomous maintenance of the DNA construct. A more complex situation was observed when the E2 transactivating function was abrogated. A minority of the E2(-)-neor clones became phenotypically transformed shortly after drug selection, but the majority maintained normal growth properties for 30 to 50 generations. The rate of viral transcription was uniformly high in cells which exhibited transformed growth properties early after selection (the E2- minority class and all the wild type transformants) and low in phenotypically normal cells (the majority of the E2- lines). The same low transcriptional activity and delayed expression of transformed growth properties had been observed after transfection of a similar construct carrying a wild type viral early region (69-T fragment), but lacking the late region. The elevated rate of viral transcription, which correlates with the immediate expression of transformation, appears therefore to require at least two distinct elements, the E2 transactivator function and sequences in the late region of the viral genome. In their absence, high transcription rates and transformation could be established only in a minority of the transfected clones, by an unknown, E2-independent mechanism. Evidence was obtained for a third transformation route which, in the absence of either E2 or the late region, led to the focal occurrence of transformed derivatives after 30 to 50 generations of normal growth, but was not associated with an overall increase in viral expression.

Animals↗

Successive steps in the process of immortalization identified by transfer of separate bovine papillomavirus genes into rat fibroblasts.

Transfer of neor and bovine papillomavirus type 1 (BPV1) DNA into rat embryo fibroblasts led to colony formation in G418-containing medium, with no detectable background in controls with neor DNA alone. More than 50% of the drug-resistant clones could be further propagated in culture. The genetic functions of BPV1 involved in colony formation and in long-term immortalization were investigated by both translation termination mutations in the full-length genome, which inactivate individual open reading frames, and constructs in which these open reading frames were separately expressed under control of long terminal repeat promoter enhancers. Expression of either open reading frame E2 or E5 was sufficient for formation of a drug-resistant colony, but long-term growth in culture required that of E6. No significant cooperative effect was observed upon cotransfection of BPV1 and ras oncogene DNAs. Expression of the early region of the human papillomavirus type 16 also led to immortalization of rat embryo fibroblast cells in the same assay, and, unlike what was previously reported in baby rat kidney cells, it required neither activation by a heterologous promoter, nor a cooperating ras oncogene.

Animals↗