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Biomedical subjects

A Grandien

Publications and source records attributed to A Grandien.

At least 19 recordsLinked to original sources

Cytokine mRNA expression and iron status in children living in a malaria endemic area.

Iron deficiency has been reported to affect both malaria pathogenesis and cell-mediated immune responses; however, it is unclear whether the protection afforded by iron deficiency is mediated through direct effects on the parasite, through immune effector functions or through both. We have determined cytokine mRNA expression levels in 59 children living in a malaria endemic area on the coast of Kenya who we selected on the basis of their biochemical iron status. Real-time quantitative reverse transcriptase polymerase chain reaction analysis of cytokine mRNA levels of peripheral blood mononuclear cells (PBMC) obtained from these children showed an association between interleukin-4 (IL-4) mRNA levels and all the biochemical indices of iron that we measured. Furthermore, IL-10 mRNA was higher in parasite blood smear-positive children than in blood smear-negative children irrespective of their iron status. This study suggests that IL-4 expression by PBMC may be affected by iron status.

Anemia, Iron-Deficiency↗

Simultaneous expression and detection of multiple retroviral constructs in haematopoietic cells after bone marrow transplantation.

Due to the complexity and redundancy of molecular processes governing the development and function of haematopoietic cells, experimental procedures allowing simultaneous alteration in gene expression of multiple genes in vivo are needed. Here, we describe a protocol allowing for simultaneous transduction of haematopoietic stem cells (HSC) with two different replication incompetent retroviral expression vectors followed by transplantation of lethally irradiated recipient mice. These bicistronic retroviral vectors carried genes for the enhanced green and yellow florescent proteins (EGFP and EYFP) respectively. Spleen cells from reconstituted animals were stained for common lymphocyte and myeloid markers, then analysed on a two-laser, 488 and 635 nm, flow cytometer equipped with a 510/20-nm bandpass filter for FL1, a 550/30-nm bandpass filter for FL2 and a 530-nm short-pass dichroic mirror. It was demonstrated that cells expressing EGFP, EYFP or combinations thereof could be distinguished and analysed for staining with PerCP- and APC-conjugated reagents. We found that a sizable proportion of cells (70%) from reconstituted animals expressed EGFP and/or EYFP and that expression of these genes did not affect lymphoid or myeloid development. We also demonstrated that the alternative optical configuration allowed for conventional multiparameter flow cytometric analyses.

Animals↗

A central role for death receptor-mediated apoptosis in the rejection of tumors by NK cells.

NK cells provide a line of defense against tumors and virus-infected cells that have lost the expression of one or more MHC class I isoforms. Here, we investigate whether inhibitors of apoptosis can block the rejection of tumors mediated by NK cells, by introducing the long form of Fas-associated death domain-like IL-1beta-converting enzyme-associated inhibitory protein (FLIP(L)) and poxvirus cytokine response modifier A (CrmA) into the MHC class I-deficient T lymphoma cell line RMA-S. RMA-S cells do not normally express Fas in vitro, and it was previously postulated that the rejection of these tumors by NK cells is strictly perforin dependent. We show that perforin-deficient NK cells directly mediate Fas up-regulation on RMA-S cells and thereafter kill the cells in a Fas-dependent manner, and that RMA-S FLIP(L) and RMA-S CrmA are protected from such killing. When injected in immunocompetent recipients, RMA-S cells up-regulate Fas, rendering in vivo-passed mock-transduced cells sensitive to Fas-mediated apoptosis. Moreover, RMA-S FLIP(L) and RMA-S CrmA cells establish aggressive tumors, in contrast to RMA-S mock cells that are rejected. These results demonstrate that FLIP(L) and CrmA function as tumor progression factors by protecting MHC class I-deficient tumors from rejection mediated by NK cells. Moreover, our data indicate that death receptor-mediated apoptosis has a more prominent role in the clearance of NK-sensitive tumors than previously suggested.

Animals↗

Expression of a V region-less B cell receptor confers a tolerance-like phenotype on transgenic B cells.

Neoplastic B cells from H chain disease patients express a truncated B cell receptor (BCR), comprising a membrane Ig that lacks part of its extracellular domain. It has been speculated that deletion of the Ag binding domain would confer a constitutive activity on the BCR, as it has been shown for oncogenic growth factor receptors. A V region-less BCR has constitutive activity, because in transgenic mice it causes inhibition of endogenous H chain gene rearrangements and relieves the requirement for surrogate L chain in pre-B cell development. However, it has been speculated that normal Ag receptors also display constitutive activity. Here we show that transgenic B cells expressing a membrane H chain disease protein on their surface are phenotypically and functionally similar to B cells developing in the presence of their cognate Ag and that cells with normal levels of mutant BCR are eliminated in spleen via a bcl-2 sensitive pathway while progressing toward the mature stage. In contrast, cells with lower levels of mutant receptors develop as mature B cells. These findings support the view that the truncated BCR has a constitutive activity that mimics ligand binding, in analogy to what has been shown for oncogenic growth factor receptors.

Animals↗

Effect of colonic luminal components on induction of apoptosis in human colonic cell lines.

Apoptosis is central to cell number regulation in the colonic epithelium, and interest in its role in colon carcinogenesis has been growing rapidly. It thus becomes of interest to characterize luminal components, possibly of dietary origin, that may influence this process. We have investigated the sensitivity of two human colonic cell lines, the human adenocarcinoma cell line (HT-29) and the human fetal colonic mucosa cell line (FHC), to induction of apoptosis by sodium butyrate, bile acids, and human fecal water fractions. The apoptotic effect has been studied by 1) morphological changes in cells examined by fluorescence microscopy, 2) DNA fragmentation analysis by gel electrophoresis, 3) flow cytometry analysis of DNA strand breaks assessed by the terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling assay (TUNEL), and 4) poly(ADP-ribose) polymerase cleavage by Western blot. Sodium butyrate and bile acids induced a time- and concentration-dependent apoptosis in both cell lines. Quantitation of this effect, by use of the TUNEL assay, indicated that deoxycholic acid was most effective in inducing this effect at lower concentrations and at shorter times. Apoptotic effects were also observed, in both cell lines, when the cells were exposed to intact human fecal waters (the fecal fraction in direct contact with the epithelium) and their lipid extracts, with the intact samples being more effective. Although all fecal waters examined induced apoptosis, quantitation of the effect by the TUNEL assay indicated that the ability to induce apoptosis differed markedly between samples. Induction of apoptosis by the fecal waters was not correlated to cytotoxicity but was negatively correlated to the pH of the samples. Interestingly, the cells derived from the fetal mucosa (FHC) were consistently less sensitive to apoptotic effects of the luminal components than the tumor-derived cells (HT-29). Thus human fecal water fractions induce apoptosis in colonic cells, and this effect is not due to lipid components alone.

Apoptosis↗

The inhibitor of death receptor signaling, FLICE-inhibitory protein defines a new class of tumor progression factors.

Death receptor-mediated apoptosis can be modulated by several antiapoptotic proteins, such as the FLICE (FADD [Fas-associated death domain]-like IL-1beta-converting enzyme)-inhibitory proteins (FLIPs). The FLIP family includes both cellular and viral members. The Kaposi's sarcoma-associated herpesvirus protein (KSHV)-FLIP is expressed by human herpesvirus 8 (HHV-8), which is associated with malignancies such as Kaposi's sarcoma and certain lymphomas. In this paper, we demonstrate that KSHV-FLIP protects cells from Fas-mediated apoptosis by inhibiting caspase activation and permits clonal growth in the presence of death stimuli in vitro. Furthermore, we show that KSHV-FLIP can act as a tumor progression factor by promoting tumor establishment and growth in vivo. When injected into immunocompetent recipient mouse strains, murine B lymphoma cells (A20) transduced with KSHV-FLIP rapidly develop into aggressive tumors showing a high rate of survival and growth. The tumor-progressive activity of KSHV-FLIP is mediated by prevention of death receptor-induced apoptosis triggered by conventional T cells. Consequently, inhibitors of death receptor signaling can be regarded as a new class of tumor progression factors, and HHV-8-associated tumors may represent naturally occurring examples of the tumorigenic effect of such inhibitors.

Animals↗

DIO-1 is a gene involved in onset of apoptosis in vitro, whose misexpression disrupts limb development.

The DIO-1 (death inducer-obliterator-1) gene, identified by differential display PCR in pre-B WOL-1 cells undergoing apoptosis, encodes a putative transcription factor whose protein has two Zn finger motifs, nuclear localization signals, and transcriptional activation domains, expressed in the limb interdigitating webs during development. When overexpressed, DIO-1 translocates to the nucleus and activates apoptosis in vitro. Nuclear translocation as well as induction of apoptosis are lost after deletion of the nuclear localization sequences. DIO-1 apoptotic induction is prevented by caspase inhibitors and Bcl-2 overexpression. The in vivo role of DIO-1 was studied by misexpressing DIO-1 during chicken limb development. The most frequently observed phenotype was an arrest in limb outgrowth, an effect that correlates with the inhibition of mesodermal and ectodermal genes involved in this process. Our data demonstrate the ability of DIO-1 to trigger apoptotic processes in vitro and suggest a role for this gene in cell death during development.

Amino Acid Sequence↗

Blocked negative selection of developing T cells in mice expressing the baculovirus p35 caspase inhibitor.

Clonal deletion in the thymus by apoptosis is involved in purging the immune system of self-reactive T lymphocytes (negative selection). Cysteine proteases (caspases) belonging to the CPP32 family are activated during this process. We have produced transgenic mice expressing baculovirus p35, a broad-range caspase inhibitor. Thymocytes from p35 transgenic mice were resistant in vitro to several apoptosis-inducing agents; this resistance correlated with the inhibition of CPP32-like activity. Negative selection in vivo of thymocytes triggered by two exogenous antigens, staphylococcal enterotoxin B superantigen and an antigenic peptide in the F5 T-cell receptor transgenic model, was specifically inhibited in p35 transgenic mice. Our results provide direct evidence for caspase involvement in negative selection during thymocyte development.

Amino Acid Sequence↗

Functional diversity and clonal frequencies of reactivity in the available antibody repertoire.

The present experiments address functional antibody diversity and clonal distribution in murine available repertoires. IgM-containing supernatants were prepared by unbiased, polyclonal stimulation of resting splenic B cells from C57BL/6 mice, to ensure similar numbers of responding clones/culture and equivalent growth and maturation of all clones. The repertoires of clones and clonal mixtures were quantitatively assayed by limiting dilution analysis (LDA) on immunoblots of sodium dodecylsulfate polyacrylamide gel electrophoresis of homologous liver extracts, allowing to determine specific clonal frequencies towards the many hundred blotted antigens. The clonal frequency of reactivity of B cells with the extract was shown to be a bi-modal distribution of specific frequencies between 1/220 and 1/100,000. Cross-correlation analysis of reactivity to different bands in individual supernatants revealed low levels of cross-reactivity, suggesting that the blotted extract provides a very diverse set of antigens. Investigation of the affinity/concentration thresholds for detection of antigen-antibody interactions of our assay supports the notion that global repertoire analyses on immunoblots were highly discriminative and non-degenerate. Furthermore, reactivity patterns obtained with complex antibody mixtures correlated with the frequency of clonal reactivities as determined by LDA. The results demonstrate a large functional diversity of resting B lymphocytes, indicating a minimal repertoire size that is orders of magnitude higher than previous theoretical proposals suggested, and extensively heterogeneous in the size of clonal specificities.

Animals↗

The repertoire of serum IgM in normal mice is largely independent of external antigenic contact.

Antigen-free (AGF) and germ-free (GF) mice, although essentially free of serum IgG, maintain normal levels of circulating IgM. Using a quantitative immunoblot assay, we have now analyzed the repertoire of serum IgM from AGF, GF, and specific pathogen-free (SPF) BALB/c mice, on large panels of natural antigens from homologous tissues and bacteria. The reactivity profiles were very similar in the three groups of mice. Multiparametric statistic evaluation of the data showed that BALB/c animals, SPF, GF, and AGF mice constitute an homogeneous group with similar immunoreactivity profiles when compared to C57BL/6. Differences between immunoreactivity profiles of GF and AGF mice were observed, but were not statistically significant. These results suggest that the serum IgM repertoire of normal mice is strictly regulated and selected by endogenous ligands.

Animals↗

An example of idiotypic mimicry.

We have evaluated the impact of transgenic immunoglobulin (TGIg) expression on endogenous antibody repertoires. The transgenic system was chosen as to allow for normal recombination of endogenous Ig genes, secretion of TGIg from early development on, and distinguishing the TGIg from endogenous Ig by several serological markers on the C and V regions of the molecules. The transgenic construct encodes a complete anti-(4-hydroxy-3-iodo-5-nitrophenyl)acetyl (NP) antibody molecule carrying a well-defined idiotype, bearing a lambda 1 light chain and a chimeric heavy chain encoded by a human alpha 2 C region devoid of its membrane exon, and the murine B1.8 VDJ-region. Endogenous antibody repertoires were analyzed in mitogen-driven limiting dilution cultures, in single-cell assays for naturally activated Ig-secreting cells, and in hybridomas derived by direct fusion of spleen cells from unmanipulated animals. The results show that a very high frequency of splenic resting B cells and plasma cells in transgenic animals produce IgM with B1.8-cross-reactive idiotypes. This was confirmed by hybridoma analysis which also established that the levels of transgene expression and of idiotype-positive IgM production by the same cell are not correlated. The affinities of idiotype-positive endogenous Ig varied, but were generally several orders of magnitude lower than the transgene-encoded idiotype. V regions from idiotype-cross-reactive IgM heavy chains showed marked diversity in sequences that were all different from the transgenic B1.8. These results are compatible with idiotypic mimicry resulting from intercellular selection based on degenerate, whole V region reactivities.

Amino Acid Sequence↗

B lymphocyte sensitivity to IgM receptor ligation is independent of maturation stage and locally determined by macrophage-derived IFN-beta.

Compartmentation of B lymphocyte populations is associated with differences in both development stage and sensitivity to Ig (sIg)-dependent triggering. In order to characterize the factors that contribute in setting the level of sensitivity of a B cell, we quantified sIgM-dependent regulation of Ig secretion in purified mature and immature B cells after ex vivo and in vivo modification of their environment. These analyses formally demonstrate that the bone marrow (BM) microenvironment locally induces high B cell sensitivity to sIgM ligation irrespective of differentiation stage. We further provide evidence that BM macrophages create a dominant environment that enhances B cell sensitivity to B cell receptor triggering. Finally, using ex vivo assays as well as type I IFN receptor-deficient mice we show that IFN-beta produced by resident BM macrophages is necessary and sufficient to define B cell sensitivity. Implications of these findings for the understanding of B cell selection processes are discussed.

Animals↗

Differential sensitivity of B lymphocyte populations to IgM receptor ligation is determined by local factors.

Ligation of surface IgM on B cells responding to lipopolysaccharide (LPS) suppresses terminal differentiation and high-rate Ig secretion with no effect on proliferation. As shown here, different B cell populations show characteristic mean values of ligand concentration required for 50% inhibition, with Gaussian distributions of sensitivity to IgM receptor ligation that reflect cellular heterogeneity of 'al-or-none' inhibitions in single cells. Differential sensitivity of B cell populations to IgM ligation seems to be locally determined by the cellular environment and unrelated to the 'maturity' of the responding cells. Thus, while long-lived peritoneal B cells are 3- to 5-fold more resistant than splenic B cells, there is no difference in sensitivity between short- and long-lived B cells in the spleen. Furthermore, while B cells in bone marrow and spleen differ in sensitivity by two orders of magnitude, B cells differentiated in vitro from bone marrow pre-B cells are as resistant as splenic B cells. Moreover, bone marrow cell culture supernatants restore a high level of sensitivity in such cell populations. Differential sensitivity to IgM receptor ligation is reproduced by multivalent nominal antigen, in cell populations that show identical dose-response inhibition curves to direct activation of protein kinase C by phorbol esters. We conclude that the level of sensitivity to IgM ligation is independent of the life span or maturity of the B cell, but differentially regulated in vivo by putative tissue factors.

Animals↗

Acquisition of CD40 expression during murine B-cell differentiation.

Expression of CD40 on mouse cells was investigated comparing the binding to cells of a monoclonal antibody against CD40, to that of a soluble fusion protein consisting of the extracellular domains of the mouse CD40-ligand. The analysis of a series of established cell lines failed to demonstrate expression of CD40 on pro- or pre-B cells, and indicated that CD40 expression was restricted to cells that had undergone productive heavy- and light-chain gene rearrangements, and expressed surface Ig. In cells from normal mice, CD40 first becomes detectable, although at low levels, on a subset of small pre-B-II cells in bone marrow, the levels of CD40 expression increasing thereafter during B-cell maturation. Thus, immature B cells (IgM+ IgDlo B220lo) express intermediate levels of CD40, and mature B cells (IgM+ IgDhi B220hi) express high levels of CD40. Anatomical location also seems to correlate with the levels of CD40 expression, as B cells expressing the highest levels of CD40 were found in lymph nodes and Peyer's patches.

Animals↗

Anergy and exhaustion are independent mechanisms of peripheral T cell tolerance.

We studied the interactions of male-specific T cell receptor (TCR)-alpha/beta-transgenic (TG) cells with different concentrations of male antigen in vivo. We constructed mouse chimeras expressing different amounts of male antigen by injecting thymectomized, lethally irradiated mice with various ratios of male (immunoglobulin [Ig] Ha) and female (IgHb) bone marrow. These chimeras were injected with male-specific TCR-alpha/beta-trangenic cells. These experiments allowed us to monitor antigen persistence and characterize antigen-specific T cells in terms of their frequency, reactivity, and effector functions (as tested by elimination of male B cells in vivo). In the absence of antigen, virgin TG cells persisted but did not expand. Transient exposure to antigen resulted in cell expansion, followed by the persistence of increased numbers of antigen-reactive T cells. In contrast, antigen persistence was followed by two independent mechanisms of tolerance induction: anergy (at high antigen concentrations), where T cells did not differentiate into effector functions but persisted in vivo as unresponsive T cells, and exhaustion (at lower antigen concentrations), where differentiation into effector functions (B cell elimination) occurred but was followed by the disappearance of antigen-specific T cells.

Animals↗

The role of cellular competition in B cell survival and selection of B cell repertoires.

We studied the competitive repopulation by different B cells of irradiated mice reconstituted with bone marrow from either congenic or Ig-transgenic (TG) mice mixed at different ratios. We found that after reconstitution, the number of B cells recovered in the different chimeras is similar and independent of the ratio of injected cells. In chimeras hosting TG and non-TG cells, the relative representation of the donor cell lineages diverges from the ratios present in the inoculum, i.e. at the periphery, non-TG cells are preferentially selected. Selection of non-TG cells only occurs when population growth plateaus, i.e. when resources become limiting and competition starts to operate. Selection of non-TG cells depends on surface Ig expression, and they are selected because they have a longer survival. Finally, the life-expectancy of the same B cell population differs depending upon the second population present. The present results show that the life-span and the population size of each B cell clone can be altered (interfered with) by the presence of a second cell population, demonstrating the existence of cellular competition among B cells. Our findings establish the role of cellular competition in the selection of B cell repertoires and the existence of a hierarchy of B cell selection in the absence of antigenic stimulation. The implications of cellular competition on our understanding of the immune system are discussed.

Animals↗

Negative selection of multireactive B cell clones in normal adult mice.

In the absence of intentional immunizations, normal mice produce natural antibodies that react with a variety of self and foreign antigens. We have now addressed the putative physiological selection of such reactivities and some of their clonal characteristics, by analyzing antibodies produced by B cells at different stages of differentiation. Using an antigen-specific spot-enzyme-linked immunosorbent assay (ELISA) with a panel of self and foreign antigens, we found that newly formed B cells, either from adult bone marrow or from newborn spleen, contain the highest frequencies of IgM antibodies with reactivities towards the panel. Resting peripheral B cells show lower frequencies of such antibodies, that are lowest among naturally activated splenic plasma cells. Analyses of monoclonal IgM antibodies derived from lipopolysaccharide-stimulated bone marrow and spleen cell hybridomas in normal mice show that the majority of reactivities scored in spot-ELISA originate from multireactive IgM clones. In Western blots against a large number of self antigens, each multireactive IgM antibody studied shows a unique and specific pattern of reactivity. We conclude that multireactive B cell clones are very frequent in the emergent repertoires of newborns and adults, but are subsequently negatively selected from bone marrow to periphery, and from the available repertoire to that of natural plasma cells. It, thus, seems that multireactivity of natural antibodies is not a positively selected property, but represents the sum of unique multireactive clones that have escaped inactivation or deletion.

Animals↗

Global analysis of antibody repertoires. 1. An immunoblot method for the quantitative screening of a large number of reactivities.

This paper describes a procedure for analysing multiple antibody reactivities that explores a commercially available immunoblot system, and is based on a double staining of nitrocellulose membranes, revealing both antibody reactivities and the migration position of the blotted proteins in the membrane. Quantification of both stainings by densitometry allowed the accurate superposition of the immunoreactivity and total protein profiles of each lane. Moreover, the protein stainings of the different lanes could be adjusted with a simple-scale transformation algorithm, correcting for possible distortions during electrophoretic migration, and allowing for the precise comparison of the immunoreactivity profiles in different lanes. The procedure is discriminatory enough to identify unique reactivity patterns in random pools of 10(4) activated B cells, and to define strain-specific natural antibody repertoires. The utility of this immunoblot method as an assay for simultaneously scoring multiple reactivities to hundreds of antigens in complex mixtures of antibodies, and thus defining antibody repertoires in a global manner, is discussed.

Animals↗