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E De Maeyer

Publications and source records attributed to E De Maeyer.

At least 19 recordsLinked to original sources

Lack of barrels in the somatosensory cortex of monoamine oxidase A-deficient mice: role of a serotonin excess during the critical period.

In a transgenic mouse line (Tg8) deficient for the gene encoding monoamine oxidase A (MAOA), we show that the primary somatosensory cortex (S1) lacks the characteristic barrel-like clustering of layer IV neurons, whereas normal pattern formation exists in the thalamus and the trigeminal nuclei. No barrel-like patterns were visible with tenascin or serotonin immunostaining or with labeling of thalamocortical axons. An excess of brain serotonin during the critical period of barrel formation appears to have a causal role in these cortical abnormalities, since early administration of parachlorophenylalanine, an inhibitor of serotonin synthesis, in Tg8 pups restored the formation of barrels in S1, whereas inhibition of catecholamine synthesis did not. Transient inactivation of MAOA in normal newborns reproduced a barrelless phenotype in parts of S1.

Animals

Antiviral activity of autocrine interferon-beta requires the presence of a functional interferon type I receptor.

We and others have previously observed that the antiviral effects of autocrine interferon (IFN)-alpha/beta activity cannot be abolished by neutralizing antibodies, even when present to a large excess. This raises the possibility that the major part of autocrine activity is triggered intracellularly, possibly bypassing the transmembrane IFN-alpha/beta receptor. To examine this possibility, cells derived from IFN-alpha/beta Ro/o knockout mice lacking a functional IFN-alpha/beta receptor were stably transformed with pHMB-KbMuIFN beta or pMFG-MuIFN beta plasmids encoding a constitutively expressed murine IFN-beta gene. Four different clones were isolated and examined for resistance to a retrovirus, MFG-LacZ, and to Semliki Forest virus. Despite the production of autocrine IFN-beta at levels inducing high antiviral resistance in control cells, none of the clones displayed antiviral resistance. Thus, despite its failure to be neutralized by potent antiserum, the antiviral activity of autocrine IFN-beta takes place via the transmembrane IFN-alpha/beta receptor, and no additional pathway is involved.

3T3 Cells

Autocrine interferon-beta synthesis for gene therapy of HIV infection: increased resistance to HIV-1 in lymphocytes from healthy and HIV-infected individuals.

OBJECTIVE: To explore the possibility of gene therapy of HIV infection based on the multiple antiretroviral activities of interferon (IFN)-beta. DESIGN: We introduced into HIV target cells an IFN-beta gene placed under an expression control ensuring a low and constitutive expression, sufficient to confer a permanent antiviral state without impeding normal cell function. METHODS: We transformed, with an efficacy ranging from 20-55%, peripheral blood lymphocytes (PBL) derived from healthy, seronegative donors, and from asymptomatic HIV-infected individuals by the HMB-KbHuIFN beta retroviral vector carrying the human IFN-beta coding sequence driven by a fragment of the murine H-2Kb gene promoter. RESULTS: The replication rate of the IFN-beta-expressing cells was no different from that of untransformed controls during the 21-day period of in vitro observation. When IFN-beta-transformed, purified CD4+ lymphocytes from healthy donors were HIV-1LAI-infected, virus replication was inhibited and most of the cells survived, in contrast to untransformed CD4+ cells which were all destroyed 12 days after infection. Protection of CD4+ cells from the same donors was also observed in suspensions of IFN-beta-transformed total PBL that were infected with HIV-1LAI. In IFN-beta-transformed PBL from four HIV-infected donors, endogenous HIV replication was decreased and 28-69% of the CD4+ cells survived at the end of the 21 days in culture. In the untransformed control PBL suspensions, all CD4+ cells were destroyed. In long-term experiments, HIV-infected, IFN-beta-transformed cell populations of the lymphocytic CEM and the promonocytic U937 line were kept in culture for 60 days, during which time they remained resistant to HIV infection. CONCLUSION: These results indicate that further exploration of autocrine IFN-beta production for somatic cell gene therapy of HIV infection is warranted.

Antiviral Agents

Blocking of retroviral infection at a step prior to reverse transcription in cells transformed to constitutively express interferon beta.

We are developing methods for somatic-cell gene therapy directed against infection with human immunodeficiency virus, by enhancing antiviral resistance of target cells through the constitutive production of autocrine interferon (IFN). Using the human IFN-beta coding sequence under the constitutive low-expression control of a 0.6-kb murine H-2Kb promoter-fragment, we have constructed a retroviral vector, HMB-KbHuIFN beta, and have transformed cells of the T98G human neuroblastoma line, the U-937 human promonocytic line, and the CEM human lymphocytic line. These human IFN-beta-transformed cell populations have acquired a low, constitutive production of human IFN, while replicating at a rate similar to that of untransformed cells and of cells transformed with the control vector carrying a human IFN-beta sequence encoding an inactive, mutated protein. In the three different cell populations tested, transformation with the HMB-KbHuIFN beta vector resulted in a 1.3-2.3 log10 reduction in the number of cells infected with a defective amphotropic MFG-LaZ retrovirus. A kinetic study of the fate of the MFG-LacZ retrovirus in the culture medium and intracellularly immediately after exposure of the cells to virus revealed a significant reduction of the appearance of intracellular virus in human IFN-beta-transformed cells. A similar effect was obtained by treating untransformed T98G, U-937, and CEM cells with exogenous human IFN-beta. The blocking effect of autocrine or exogenous human IFN-beta on viral entry was not limited to virus specific for the amphotropic receptor but was also obtained in murine IFN-beta-treated NIH 3T3 mouse fibroblasts infected with an ecotropic MFG-LacZ retrovirus. Infection of human IFN-beta-transformed CEM cells with human immunodeficiency virus type 1 gave comparable results. Immediately following exposure of the cells to human immunodeficiency virus, a kinetic study of the fate of the virus failed to reveal the appearance of intracellular virus and showed that the majority of the input virus remained in the extracellular medium. We conclude that low autocrine IFN-beta synthesis, or exposure of cells to exogenous IFN-beta, prevents virus from getting inside the cells, regardless of the virus receptor involved.

Animals

Stable antiviral expression (SAVE) as an approach to somatic cell gene therapy directed against HIV infection.

We are developing methods for somatic cell gene therapy directed against infection with human immunodeficiency virus by enhancing the antiviral resistance of target cells through the constitutive production of interferon-beta. Cells that have been transformed by plasmids or retroviral vectors carrying the human interferon-beta gene placed under the expression control of a murine H2Kb promoter fragment become resistant to HIV infection. Part of this enhanced resistance is due to inhibition of virus entry into the transformed cells, a hitherto unreported mechanism of interferon action.

3T3 Cells

Accelerated tumor development in interferon-treated B6.C-Hyal-1 a mice.

The Hyal-1 locus, which we have previously described and mapped to mouse chromosome 9, influences the serum levels and molecular weight forms of hyaluronidase. We have also shown that the growth of two transplantable tumors, the 3LL carcinoma and the B16F10 melanoma, is influenced by the alleles at Hyal-1, in that the tumors develop more slowly in congenic B6.C-Hyal-1a (also called HW23) mice than in the parental Hyal-1b C57BL/6 mice. Here we present evidence that tumor development is stimulated and mortality is accelerated in B6.C-Hyal-1a mice grafted with 3LL carcinoma cells when treated with alpha/beta interferon (IFN-alpha/beta) or with IFN-beta, whereas in IFN-treated C57BL/6 mice 3LL tumor growth is inhibited. Likewise, in B6.C-Hyal-1a mice grafted with B16F10 melanoma cells, IFN-alpha/beta treatment results in stimulation of tumor growth, whereas in IFN-treated C57BL/6 mice tumor growth, whereas in IFN-treated C57BL/6 mice tumor growth is inhibited and mortality delayed. Thus, IFN-alpha/beta treatment of B6.C-Hyal-1a mice results in stimulation of tumor development and sometimes in accelerated mortality. This is the opposite of the usually described effect of IFN treatment in mice, which is inhibition of tumor development and delayed mortality, as was indeed observed in the C57BL/6 mice in the present experiments. These results provide the first indication that host genes can up- or down-regulate the antitumor activity of IFN and that, on some genetic backgrounds, IFN treatment enhances rather than inhibits tumor development. This may help to explain the apparent discordance between mouse model studies, which hitherto have consistently reported inhibition of tumor formation by IFN, and the clinical trials, in which only a limited percentage of individuals show tumor regression while others have no beneficial effect or even have progression of disease in spite of the IFN treatment.

Alleles

Development of methods for somatic cell gene therapy directed against viral diseases, using retroviral vectors carrying the murine or human interferon-beta coding sequence: establishment of the antiviral state in human cells.

We are developing methods for somatic cell gene therapy directed against chronic and fatal virus infections, such as acquired immunodeficiency (AIDS), by transforming cells with a constitutively expressed interferon (IFN) coding sequence. Previous work from our laboratory has shown that stable antiviral expression (SAVE) can be obtained in murine BALB/c 3T3 cells and human U937 cells transformed with plasmids carrying either the murine or the human IFN-beta coding sequence placed under the expression control of a 0.6-kb Xho II-Nru I promoter region of the murine H-2Kb major histocompatibility complex (MHC) gene (Macé et al., 1991; Seif et al., 1991). In the present paper, we report the construction of murine (Mu) and human (Hu) IFN-beta-expressing retroviral vectors (pMPZen-MuIFN beta, pHMB-KbMuIFN beta) and the problems encountered. Because of the murine origin of commonly used packaging cells and the species specificity of IFN, it was evident that placing the murine IFN-beta sequence under constitutive expression control could result in the production of Mu IFN in the murine packaging system, and thereby lead to decreased vector production and also to enhanced resistance of target cells. Using a packaging cell line that releases a beta-galactosidase-expressing vector, we show that, as expected, Mu IFN-alpha/beta decreases vector production of murine packaging cells and also inhibits the transformation of target NIH-3T3 cells with this vector, but the presence of anti-Mu IFN antibodies rescues the viral titer of the packaging cells and restores the sensitivity of target cells to virus transformation. However, the same antibody treatment is unable to rescue the viral titer of psi-2 packaging cells producing autocrine Mu IFN-beta encoded by the pMPZen-MuIFN beta and pHMB-KbMuIFN beta vectors. Because of the species specificity of IFN, this problem is circumvented with the pMFG-HuIFN beta vector carrying the human IFN-beta sequence. In spite of the production of Hu IFN, murine psi-CRIP packaging cells are able to release retroviral vectors expressing Hu IFN-beta, and these amphotropic vectors can transform human MRC-5 cells and confer to these cells an enhanced resistance to vesicular stomatitis virus (VSV) infection.

3T3 Cells

The growth rate of two transplantable murine tumors, 3LL lung carcinoma and B16F10 melanoma, is influenced by Hyal-1, a locus determining hyaluronidase levels and polymorphism.

The effect of 2 different levels of serum hyaluronidase on tumor development was studied by comparing the development of 2 transplantable tumors, the 3LL lung carcinoma and the B16F10 melanoma, in mice of the C57BL/6 and the congenic HW23 strains. The reasoning behind the study was that, in vitro, removal by hyaluronidase of the hyaluronan present in the extracellular matrix of tumor cells renders the latter more accessible to effector T cells. In the mouse, the levels and molecular forms of circulating hyaluronidase are under the influence of different alleles at the Hyal-1 locus on chromosome 9. C57BL/6 mice which have the Hyal-1b allele have only a 60,000-kDa form of hyaluronidase in the circulation, whereas the congenic HW23 strain has, on a C57BL/6 background, the BALB/c-derived Hyal-1a allele, characterized by the presence of the 60-, 120- and 140-kDa forms and of 3 times as much enzyme activity as the C57BL/6 strain. These 2 mouse strains that are genetically almost identical can therefore be used to compare the effect of different levels of circulating hyaluronidase on tumor development. Two different tumors were studied: the 3LL lung carcinoma and the B16F10 melanoma. After intrafootpad inoculation, both tumors developed more slowly in the congenic Hyal-1a HW23 strain, as measured by a slower rate of increase in local tumor size and by a prolonged survival time. These results are in favor of the hypothesis that the Hyal-1a allele, determining higher hyaluronidase levels, enhances resistance to tumor development.

Alleles

Interferon-gamma.

During the past year, the most striking progress in our understanding of interferon-gamma has been made in the elucidation of the three-dimensional structure of the molecule and in the analysis of the molecular structure and the functional domains of the interferon-gamma receptor. A greater insight into the molecular mechanisms of gene activation by interferon-gamma has been gained, and the immunoregulatory role of interferon-gamma has been better defined in studies dealing with its effects on B-cell function and with its production by the various T-cell subsets. Finally, the effects of interferon-gamma on intracellular parasites is an important aspect of interferon-gamma activity that is giving rise to several clinical trials.

Animals

Enhanced resistance to HIV-1 replication in U937 cells stably transfected with the human IFN-beta gene behind an MHC promoter fragment.

Cells of the monocyte lineage act as a major reservoir for HIV, and ways of enhancing the resistance of mononuclear phagocytes to HIV replication would be useful for delaying the onset of AIDS in infected individuals. Seif et al. (J. Virol. 65:664, 1991) have recently shown the possibility of obtaining stable antiviral expression (SAVE), directed against three nonretroviral RNA viruses, and normal cell viability in a significant percentage of murine BALB/c 3T3 cells transformed with an IFN-beta expression plasmid under the control of the 0.6-kb XhoII-NruI promoter region of the murine H-2Kb MHC gene. In the present paper, we show that it is possible to establish SAVE in human promonocytic cells. Cells of the human promonocytic U937 line were stably transfected with a human IFN-beta expression plasmid carrying the neo- and human IFN-beta-coding sequences under the control of the H-2Kb promoter fragment previously used in murine cells. After selection with G418, two transformed clones were isolated that released small amounts of human IFN-beta into the culture medium, without affecting the expression of CD4 and leucocyte function-associated Ag-1 differentiation Ag. The presence of construct-derived IFN-beta mRNA was demonstrated by polymerase chain reaction amplification of cDNA, and the level of 2-5A synthetase, one of the major IFN-induced antiviral proteins, was shown to be constitutively increased. These clones were less permissive for HIV-1 than control clones transformed with the neo gene only. The antiviral state could be modulated by anti-IFN-beta antibodies, in that the continuous presence of antibodies in the culture medium abolished the enhanced resistance to HIV-1 replication, whereas the withdrawal of the antiserum restored the antiviral state, indicating that it did indeed result from the constitutive synthesis of human IFN-beta. These results demonstrate the possibility of restricting HIV-1 replication in human promonocytic cells by establishing SAVE. Further exploration of this method as a possible approach to somatic cell gene therapy of HIV infection appears worthwhile.

2',5'-Oligoadenylate Synthetase

Linkage analysis of the murine Hyal-1 locus on chromosome 9.

We have recently described a new locus, Hyal-1, which determines hyaluronidase variants in mouse serum. On the basis of segregation in recombinant inbred and congenic strains, Hyal-1 was tentatively assigned to chromosome 9 (Fiszer-Szafarz and De Maeyer, '89). In the present study we have performed a linkage analysis of Hyal-1 using 156 backcross progeny of an interspecies cross of laboratory mice and Mus Spretus. Linkage was tested to two anchor loci on chromosome 9: d (dilute, a coat color locus) and Bgl-s (a locus controlling beta-galactosidase activity). The gene order (from centromere) with intervening percentage recombination is d-16.6 (+/- 2.9)-Hyal-1-10.9 (+/- 2.4)-Bgl-s, indicating close linkage to H-7 and Fv-2.

Animals

Stable antiviral expression in BALB/c 3T3 cells carrying a beta interferon sequence behind a major histocompatibility complex promoter fragment.

We are exploring the use of interferon (IFN) genes for somatic cell gene therapy and have investigated the possibility of transforming cells into low constitutive IFN producers over prolonged periods of time without impeding cell survival or replication. Here we report the possibility of conferring a permanent antiviral state to cells by introducing an IFN-beta gene with a modified transcriptional control. This was achieved by placing the murine IFN-beta-coding sequence behind the IFN-inducible 0.6-kb XhoII-NruI promoter region of the H-2Kb major histocompatibility complex gene. BALB/c 3T3 cells that are normally permissive for virus infection were transformed with this construction, and 14 of the 21 clonal cell lines obtained displayed different levels of enhanced resistance to the replication of vesicular stomatitis virus, encephalomyocarditis virus, and Semliki Forest virus. The permanent antiviral state was dependent on the presence of new IFN-beta fragments in Southern blots and was accompanied by very low constitutive synthesis of IFN-beta, and the presence of construct-derived IFN mRNA could be demonstrated only after polymerase chain reaction amplification of cDNA. The antiviral state was stable over a 9-month period in culture, corresponding to about 250 cell generations, and did not affect cell replication, since the average population doubling time of these cells was not significantly different from that of the control clone. Twenty-nine control clonal cell lines, stably transformed with either the neo gene alone (22 lines) or the neo gene together with a mutated murine IFN-beta gene coding for an inactive protein (7 lines), did not develop stable antiviral expression. We conclude that low constitutive synthesis of autocrine IFN-beta is sufficient to induce a permanent antiviral state, is compatible with cell survival and replication, and therefore merits further exploration for use in somatic cell gene therapy.

Animals

Anti-tumor effects of interferon in mice injected with interferon-sensitive and interferon-resistant Friend erythroleukemia cells. VIII. Role of the immune system in the inhibition of visceral metastases.

DBA/2 mice were injected i.v. with IFN alpha/beta-resistant 3CI8 Friend erythroleukemia cells (FLC) which metastasize to the liver and spleen. IFN alpha/beta treatment of FLC-injected mice increased their survival time and these mice developed a resistance to a second challenge with FLC. The efficacy of IFN alpha/beta in increasing the survival time was compared between normal immunocompetent and immunodeficient mice. The anti-tumor action of IFN was markedly reduced or abolished in newborn DBA/2 mice, in adult athymic nu/nu and beige DBA/2 mice, and in BALB/c scid/scid mice. To determine the phenotype of the effector cells involved, FLC-injected DBA/2 mice were treated with antibodies to asialo-GMI, CD4, or CD8 antigens, or with cyclosporin A or silica. IFN alpha/beta treatment proved much less effective in these mice, indicating that a variety of effector cell types participated in the IFN-induced suppression of visceral metastases. Thus, an intact immune system appears to be essential to obtain optimal therapeutic effects of IFN alpha/beta in this experimental model.

Animals

Hyal-1, a locus determining serum hyaluronidase polymorphism, on chromosome 9 in mice.

Analysis of mouse serum hyaluronidase by polyacrylamide gel electrophoresis, with the substrate high-molecular-weight hyaluronan (hyaluronic acid) included in the gel performed in mice of two different strains, BALB/cBy and C57BL/6By, reveals a pattern of multiple enzyme forms specific for each genotype. In BALB/c serum, seven different forms are present, only one of which is found in C57BL/6 serum. Segregation analysis of the enzyme polymorphism in backcross progeny and in recombinant inbred and bilineal congenic lines shows that the difference is due to a single locus, which we have designated as Hyal-1. Hyal-1 is linked to the histocompatibility locus H-7, on chromosome 9.

Animals

Linkage analysis of the murine mos proto-oncogene on chromosome 4.

A linkage analysis of the murine Mos gene, which codes for the c-mos proto-oncogene, was performed in 88 backcross progeny of an interspecies cross of laboratory mice and Mus spretus. Linkage was tested for four different genes on mouse chromosome 4: Aco-1, Mup-1, b, and Ifb. The gene order (from centromere) with intervening percentage recombination is Mos-15.9 (+/- 3.9)-Aco-1-5.6 (+/- 2.4)-Mup-1-3.4 (+/- 1.9)-b-5.6 (+/- 2.4)-Ifb. These results confirm the previous assignment of Mos to chromosome 4 on the basis of segregation in somatic cell hybrids (D. Swan et al., 1982, J. Virol. 44: 752-754) and show furthermore that Mos and the Ifa/Ifb clusters are not tightly linked as a group of intronless genes, but are separated by a map distance of 30.6 +/- 4.9 recombination units. The linkage data obtained in the present study place Mos in a region compatible with the physical map (D. W. Threadgill and J. E. Womack, 1988, Genomics 3: 82-86).

Aconitate Hydratase

Natural antibodies to interferon-alpha and interferon-beta are a common feature of inbred mouse strains.

Neutralizing antibodies to murine interferon-alpha (MuIFN-alpha) and MuIFN-beta of the immunoglobulin (Ig)G and IgM class were naturally present in sera of BALB/c and C57BL/6 mice of four different age groups, ranging from 1 to 15 mo. These antibodies not only neutralized IFN made by C-243 cells (Swiss genotype), but also isogenic IFN-alpha and IFN-beta, and can therefore be considered to be real autoantibodies. Natural anti-MuIFN antibodies were also found in the sera of mice from 12 other inbred strains, and seem to be a common feature of inbred mouse strains.

Animals