Improvement of preimplantation genetic diagnosis (PGD) for the cystic fibrosis mutation delta F508 by fluorescent polymerase chain reaction.
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Biomedical subjects
Publications and source records attributed to S Viville.
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To investigate the relative contribution of retinoic acid receptor (RAR)beta isoforms in conotruncal septation, RAR beta 1 and beta 3 were inactivated in the mouse. Mice lacking RAR beta 1 and beta 3 appear normal. Disruption of these isoforms in RAR alpha or RAR gamma null genetic backgrounds results in a high postpartum lethality. However, except for ocular defects found in RAR beta 1-3/RAR gamma compound mutants, the double null mutants display only abnormalities seen in single null mutants. This probably reflects a functional redundancy with other RARs, most notably with RAR beta 2 which is five- to sixfold more abundant than RAR beta 1 and beta 3 and whose domain of expression is largely overlapping. The conotruncal ridges form normally in retinoid X receptor (RXR)alpha/RAR beta compound mutants but fail to fuse, apparently as a result of excessive apoptosis of mesenchymal cells. Additionally, many cardiomyocytes in the conotruncal wall of these mutants appear necrotic. Although RAR beta 1 and beta 3 are expressed specifically in the conotruncal ridges, failure of fusion of these structures is not more frequent in RXR alpha/RAR beta 1-3 double null mutants than in RXR alpha single null mutants. Similarly, the disruption of the sole RAR beta 2 isoform in a RXR alpha null genetic background does not result in an increase of the frequency of conotruncal septum agenesis. However, this agenesis is fully penetrant in RXR alpha/RAR beta +/- mutants, which reflects distinct role of RXR alpha:RAR beta 1 (and beta 3) and RXR alpha:RAR beta 2 heterodimers in promoting the survival of conotruncal mesenchymal cells. Unexpectedly, we discovered that, in wild-type embryos, the conotruncal mesenchyme is a major site of morphogenetic cell death and that conotruncal myocytes are occasionally necrotic. Thus, excessive cell death in the conotruncus is a potential cause of ventricular septal defects in humans.
Considerable differences in the regulatory oversight of preimplantation genetic diagnostic (PGD) services exist among countries, ranging from total bans on any embryo manipulation to the almost complete absence of any regulations or authority. A survey of centres offering PGD services revealed common concerns about the creation of embryos for research, altering the pattern of normal embryo development and the potential for misuse in the clinical application of PGD.
Mest (also known as Peg1), an imprinted gene expressed only from the paternal allele during development, was disrupted by gene targeting in embryonic stem (ES) cells. The targeted mutation is imprinted and reversibly silenced by passage through the female germ line. Paternal transmission activates the targeted allele and causes embryonic growth retardation associated with reduced postnatal survival rates in mutant progeny. More significantly, Mest-deficient females show abnormal maternal behaviour and impaired placentophagia, a distinctive mammalian behaviour. Our results provide evidence for the involvement of an imprinted gene in the control of adult behaviour.
Preimplantation genetic diagnosis (PGD) allows the detection of genetic defects before implantation, thus circumventing the possible need for abortion. France's current legislation allows the practice of PGD under certain circumstances which include the prerequisite agreement of the French health authority. Unfortunately, to enact the pending 'bioethical law', voted in July 1994, a decree still needs to be published. So, for the moment, although we know that PGD should be authorized, its practice is currently impossible in France. In order to prepare for licensing, we are setting up the relevant technologies, by performing biopsy on mouse embryos and fluorescent in-situ hybridization (FISH) experiments on human lymphoblast cells. We briefly describe the French legal situation with regard to PGD and the work we have performed in this context to obtain the licensing to offer PGD to patients. After a period of preparation, 95.9% of biopsies were successful and up to 95.4% of the biopsied blastomeres were properly spread onto slides. Biopsied and control mouse embryos were reimplanted into pseudopregnant females and similar birth rates were obtained (34.4 and 30.9% respectively). In these experiments we noticed a birth delay of 12-24 h for the biopsied embryos compared with the controls. Furthermore, scanning electron microscopy of the biopsied embryos allowed assessment of the hole made by the Tyrode's acid. By intercrossing adults derived from biopsied embryos for two successive generations, it was shown that the biopsy did not generate defects affecting their reproductive ability. FISH experiments were performed using specific probes for chromosomes X, Y and 1 on nuclei spread by a conventional protocol or a Tween/HCl blastomere spreading protocol; in the latter case, slides with 1-5 cells were prepared. A similar percentage of correct X,Y,1,1 signal was obtained from all three types of spreading, varying from 85.5 to 89.9%.
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We previously identified Peg1/Mest as a novel paternally expressed gene in the developing mouse embryo. The human PEG1 gene was recently assigned to 7q32 and shown to be imprinted and paternally expressed. Therefore, PEG1 deficiency could participate in the aetiology of pre- and post-natal growth retardation associated with maternal uniparental disomy 7 in humans. We have now initiated the characterization of the Peg1 locus in order to identify and dissect cis-acting elements implicated in its imprinted monoallelic expression. The genomic structure of Peg1 as well as the DNA sequence of the 5'-end of the gene, including 2.4 kb of promoter sequences and covering the first 2 exons, have been determined. Important sequence elements, such as a CpG island spanning exon 1 and direct repeats, are identified and discussed. To address the role of epigenetic modifications in the imprinting of Peg1, a methylation analysis of the Peg1 gene is presented. Partially methylated cytosine residues in 13.5 d.p.c. embryos and undifferentiated ES cells were identified. Using embryos carrying a targetted mutation at the Peg1 locus, we show that this partial promoter methylation pattern reflects a strict parent-of-origin-specific differential methylation: the expressed paternal allele is unmethylated, whereas the silenced maternal allele is fully methylated at the CpG sites studied. That the gametes carry the epigenetic information necessary to lay down this allele-specific methylation pattern is suggested by analysis of DNA isolated from sperm and parthenogenetic embryos.
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Induction of T-helper cells and T-B cell interaction have been considered to critically depend upon recognition of major histocompatibility complex (MHC) class II molecules by the T cell receptor. Mice lacking either MHC class II molecules (class II(0/0) mice) or its associated invariant chain (Ii0/0 mice) provide new opportunities to test this premise. Immune responses to some protein antigens have been studied in these mice; little is known about their ability to withstand viral infections. We therefore tested CD8+ effector T cells and CD4+ T-cell-dependent B cell function during different viral infections. The vesicular stomatitis virus (VSV)-specific primary cytotoxic T cell response which is largely T-helper-dependent was diminished in Ii(0/0) and absent in class II(0/0) mice. The usually less T-helper-dependent cytotoxic vaccinia or lymphocytic choriomeningitis virus (LCMV)-specific CD8+ T cell responses were reduced up to ninefold in class II(0/0) and up to threefold in Ii(0/0) mice. In class II(0/0) mice, the T-helper-independent neutralizing IgM response against the glycoprotein of VSV was within normal ranges but, in contrast to previous results on CD4(0/0) mice, the T-helper-dependent IgG response was absent. Ii(0/0) mice exhibited a normal neutralizing IgM response; in contrast to class II(0/0) mice, they mounted a significant, though reduced specific IgG response. Similar results were obtained for antibody responses against the nucleoprotein of VSV. Although the T-helper-cell response upon infection with VSV seemed diminished only a little in Ii(0/0) mice, presentation of VSV-G to a class II-restricted specific hybridoma was greater than 300-fold reduced in the absence of Ii. This suggests that local protein concentrations reached during viral infection in the host are high enough to override the Ii deficiency of antigen-presenting cells in vivo.
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Genomic imprinting is an epigenetic marking process that confers parent-of-origin-dependent expression on certain genes. These imprinted genes are sometimes found in clusters, suggesting a possible involvement of higher order regulatory elements controlling expression and imprinting of genes organised in such clusters. In the distal chromosome 7 there are at least four imprinted genes: Mash2, Ins2, Igf2 and H19. Recent evidence suggests that imprinting and expression of at least Igf2 and H19 may be mechanistically linked.
The appearance of peptide-loaded major histocompatibility complex (MHC) class II molecules at the cell surface depends critically on the invariant chain (Ii). We have studied the influence of Ii on the positive selection of CD4+ T cells, mediated by class II molecules expressed on thymic stromal cells. Invariant chain-deficient mice (Iio) were crossed with different T cell receptor (TcR) transgenic strains and the emergence of mature CD4 single-positive thymocytes measured in Iio/TcR transgenic offspring. Positive selection was nearly absent in Iio/2B4 mice, which display receptors specific for a moth cytochrome c (MCC) peptide in the context of Ek. In addition, no T cell response was elicited when nontransgenic Iio animals were injected with this peptide, even though antigen-presenting cells (APC) from such mice were perfectly capable of presenting it, suggesting that selection of the entire anti-MCC 88-103 repertoire depends on Ii. Positive selection also appeared strongly reduced in another line of Iio/TcR transgenic mice (Iio/BDC2.5). However, in sharp contrast, a third line (Iio/3A9) exhibited almost normal positive selection of thymocytes displaying the transgene-encoded receptor. These thymocytes were exported to the periphery: peripheral T cells could respond normally to the appropriate peptide in vitro. The most likely interpretation of these findings is that selection of most CD4+ T cells depends on MHC class II complexes loaded with peptide in an Ii-dependent pathway, but some can be selected on class II complexes that are either loaded along an alternative, Ii-independent, route or are empty. This is consistent with the involvement of peptide in positive selection of CD4+ T cells, for which there exists little prior evidence.
Parthenogenesis in the mouse is embryonic lethal partly because of imprinted genes that are expressed only from the paternal genome. In a systematic screen using subtraction hybridization between cDNAs from normal and parthenogenetic embryos, we initially identified two apparently novel imprinted genes, Peg1 and Peg3. Peg1 (paternally expressed gene 1) or Mest, the first imprinted gene found on the mouse chromosome 6, may contribute to the lethality of parthenogenones and of embryos with a maternal duplication for the proximal chromosome 6. Peg1/Mest is widely expressed in mesodermal tissues and belongs to the alpha/beta hydrolase fold family. A similar approach with androgenones can be used to identify imprinted genes that are expressed from the maternal genome only.
Treatment with an anti-IL-4 monoclonal antibody protected susceptible C57BL/6 mice against challenge with an avirulent strain of T. gondii. Antibody therapy with 100 micrograms on days 0 and 7 post infection resulted in 100% survival of C57/BL6 mice infected orally. Survival was dose-dependent. Treatment prolonged parasitaemia but did not alter tissue parasite load. Increased serum IgG2a and IFN-gamma levels, together with low levels of IgG1, in mice treated with anti-IL-4 or an isotype control, indicated a trend towards a predominant Th1 response in all survivors. The persistence of an IgE response after treatment suggests that endogenous IL-4 was only partly neutralized or that other factors can induce the production of IgE in murine toxoplasmosis.
Imprinting is vital for normal development, and disruption of imprinting mechanisms on syntenic chromosomes gives very similar phenotypes in mouse and humans. In addition, disruption of normal imprinting provides a plausible explanation for preferential LOH in some embryonal tumours. Moreover, there is evidence that in Wilms' tumour, dysregulation of specific imprinted genes may give rise to the cancer phenotype. Many more questions regarding genomic imprinting need to be answered before the associations described in this review can be properly understood. The most basic issues, such as when and how the imprint is established, can still only be speculated upon. Further study of new imprinted genes and the relationship between their domains and differential replication may show us higher control mechanisms than methylation alone. It remains to be seen if these epigenetic modifications are amenable to therapeutic change in the treatment of inherited syndromes and cancer, or if they can be used to assess individuals at risk of disease. Until then it is probably unwise to speculate on a single unifying theory that explains why a subset of the genome shows such a peculiar non-Mendelian form of inheritance.
The invariant chain (Ii) binds nascent major histocompatibility complex (MHC) class II molecules, blocking peptide binding until the complex dissociates in the endosomes. This may serve to differentiate the MHC class I and II antigen presentation pathways and enable class II molecules to efficiently bind peptides in the endosomes. This hypothesis was addressed by probing spleen cells from a combination of knock-out and transgenic mice with a large panel of T cell hybridomas. The Ii molecule blocked the presentation of a range of endogenously synthesized epitopes, but some epitopes actually required Ii. Thus, the influence of Ii on presentation does not follow simple rules. In addition, mice expressing Ii were not tolerant to epitopes unmasked in its absence, a finding with possible implications for autoimmunity.
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