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Biomedical subjects

C Schiff

Publications and source records attributed to C Schiff.

At least 37 records · Page 2Linked to original sources

Interleukin-7 regulates c-myc expression in murine T cells and thymocytes: a role for tyrosine kinase(s) and calcium mobilization.

Interleukin-7 (IL-7) was originally identified as a pre-B cell growth factor whose proliferating activity has been extended to numerous target cells including T lymphocytes. We investigated c-myc mRNA expression, an oncogene associated with proliferation, in the murine T cell line D10 G4.1 and freshly isolated thymocytes since both target cells proliferate in response to IL-7. We find that blockade of the tyrosine kinase pathway by genistein, a potent tyrosine kinase inhibitor, inhibits both IL-7-dependent D10 G4.1 cell proliferation and c-myc mRNA expression which appears to involve de novo mRNA synthesis and to be under the control of short-lived protein repressor(s). We have also examined possible signal transduction pathways which might regulate c-myc mRNA expression in the murine T cell line. IL-7 biological activity is not affected by stimulation of the protein kinase C pathway by phorbol esters. Thus, IL-7 regulates c-myc mRNA expression in a protein kinase C-independent manner and these data are strengthened by protein kinase C depletion which does not modify IL-7 c-myc mRNA responsiveness. In contrast and independent of protein kinase C activation, intracellular calcium mobilization by means of ionomycin reduces IL-7 induction of c-myc mRNA expression and may represent a physiological mechanism whereby IL-7 bioactivity is regulated. The activity of IL-7 on c-myc mRNA expression has been extended to freshly isolated thymocytes and we find a synergistic effect of IL-7 with concanavalin A. Taken together our results illuminate the molecular mechanism of IL-7 c-myc induction in the T lineage by ascribing a role for tyrosine kinase and increase in intracellular calcium in both IL-7 induced gene induction and cell proliferation.

Animals↗

The human pre-B cell receptor: structural constraints for a tentative model of the pseudo-light (psi L) chain.

In human pre-B cells, the mu chain is associated with a surrogate light chain composed of the lambda-like and Vpre-B gene products. This pre-B cell receptor presumably triggers early steps of B cell differentiation, We have determined the NH2-terminal amino acid sequence of the lambda-like chain, showing that the mature chain results from the cleavage of a leader segment of 44 residues, leaving a polypeptide of 169 amino acids having partial features of the Ig light chain domains, with the exception of the first 50 amino acid NH2-terminal region. We have completed the nucleotide sequence of the Vpre-B gene, which appears to contain 126 residues in its mature form of which the 24 COOH-terminal portion was not Ig-related. Analysis of transfectants has provided direct evidence that lambda-like and Vpre-B chains assemble together even in the absence of heavy chain, prompting the search for a structural basis of this interaction. Comparison with the domain organization of the regular Ig lambda chain suggests that most of the psi L chain can be accommodated within a CL-VL-like structure, with an extra "subdomain" contributed by the non-Ig-like portions of both the lambda-like and Vpre-B polypeptides.

Amino Acid Sequence↗

In vitro activation of a nonproductive immunoglobulin allele by a single base pair insertion.

We have shown that one of the alleles in a hybridoma was nonproductive because the sequence in the N region of the heavy chain caused it to be out of frame and to terminate prematurely. This allele became productive, and the gamma 1 heavy chain that it encoded was secreted when an adenosine was inserted to produce an open reading frame. This event occurred at a very low frequency following mutagenesis of the cultured cells. This result suggests that similar sorts of events must occur in vivo when both productive and nonproductive alleles undergo frequent mutations and that new genes may be expressed in hybridomas as they are being subcloned.

Alleles↗

Human FLT3/FLK2 gene: cDNA cloning and expression in hematopoietic cells.

The human FLT3 cDNA was cloned from a pre-B cell line and characterized. The deduced amino acid sequence shows that FLT3 codes for a receptor-type tyrosine kinase of 993 residues, presenting a strong similarity with the corresponding mouse FLT3/FLK2 protein as well as with the receptors for colony-stimulating factor 1 (CSF1R/FMS) and steel locus factor (SLFR/KIT). An analysis of the expression of the gene using amplification of reverse transcribed FLT3 mRNA by polymerase chain reaction shows that FLT3 is expressed in various lymphohematopoietic cells and tissues, including a series of immature cell lines and leukemias of lymphocytic origin.

Amino Acid Sequence↗

Reconstitution of human immunoglobulin VH repertoire after bone marrow transplantation mimics B-cell ontogeny.

Reconstitution of the human Ig repertoire after allogeneic and autologous bone marrow transplantation (BMT) was followed by analysis of the expression of the six VH families using in situ hybridization on BM cells at 30, 60, and 90 days postgraft. Our results indicate that during the early post-transplantation period, the expressed repertoire of VH is dramatically affected: VH3, the major expressed family in adult B cells, is decreased two- to threefold and is compensated by transient overexpression of the other families, especially VH4, VH5, and VH6. Similar results were observed in allogeneic and autologous grafted patients. Kinetics of reconstitution mimics normal repertoire development described in ontogeny, although normalization, as compared with the adult pattern, may take as long as 1 year.

Adult↗

Induction by anti-CD40 antibody or soluble CD40 ligand and cytokines of IgG, IgA and IgE production by B cells from patients with X-linked hyper IgM syndrome.

We studied the ability of B lymphocytes from patients with X-linked hyper IgM syndrome (HIGM1) to be activated via the CD40 membrane receptor. HIGM1 is caused by a CD40 ligand gene mutation, leading to defective expression on the membrane of activated T lymphocytes. We found that triggering of B cells by an anti-CD40 monoclonal antibody or the soluble CD40 ligand plus interleukin (IL)-4 or IL-10 led to B cell proliferation and/or differentiation towards IgG, IgA and IgE secretion. This was reflected by transcription of C gamma, alpha and epsilon membrane isotype expression and IgG, IgA and IgE production. These results confirm the integrity of B cells in patients with the HIGM1 immunodeficiency and open up new therapeutic possibilities.

Antibodies, Monoclonal↗

Structure, biosynthesis, and transduction properties of the human mu-psi L complex: similar behavior of preB and intermediate preB-B cells in transducing ability.

In human preB cells, the mu chain is associated with a surrogate light chain composed of the VpreB and lambda-like gene products. Using anti-peptide antibodies directed against VpreB and lambda-like epitopes, we identified the discrete components of the mu-psi L (pseudo-light) chain complex in various preB cell lines, and in intermediate preB-B cells that co-expressed the psi L and the kappa chain. The lambda-like gene product was identified as a single band at 20 kDa, disulfide linked to the mu chain. VpreB was detected at 16 kDa and, depending upon the cell lines, an isoform of this polypeptide was also present at 15 kDa. In addition, lambda-like--VpreB chain complexes not associated with mu were identified both in cell lysates and culture supernatants. Pulse-chase experiments indicated that VpreB was transiently associated with two new polypeptides of molecular weights 17.5 and 36 kDa. Expression of mu-psi L and co-expression of mu-psi L and microL at the surface of preB and intermediate preB-B cells respectively was detected by cytofluorimetry. The signal transduction ability of the complex in both types of cells was shown by measuring the calcium mobilization and the phosphorylation of tyrosyl residues upon stimulation by anti-mu. Signal events were similar in both cases, but differed from those induced in a mature B cell line. This points to a definite function of the preB cell receptor and suggests that the intermediate preB-B cell line still lacks some molecular components that condition initiation of a mature B cell transduction signal.

Amino Acid Sequence↗

Bone marrow cells in X-linked agammaglobulinemia express pre-B-specific genes (lambda-like and V pre-B) and present immunoglobulin V-D-J gene usage strongly biased to a fetal-like repertoire.

Expression of Ig and Ig-related genes has been studied in bone marrow cells from two patients with severe form of X-linked agammaglobulinemia (XLA). Phenotypic analysis revealed the presence of pre-B cells, in the absence of mature B cell markers. The pre-B-specific genes, lambda-like and V pre-B, were normally transcribed. Sequence analysis of 48 distinct V-D-J cDNA clones directly derived from XLA bone marrow cells indicated that they had characteristics of an early fetal pre-B repertoire. All VH families were identified, with a strong bias in the gene usage: a few VH genes were largely overexpressed, either germline or slightly mutated; most genes had been located 3' of the VH locus and were also used in fetal liver (8-13 wk of gestation). Short D regions, (resulting from D-D fusion, making usage of all D genes in both orientations with utilization of the three reading frames), restricted N diversity, and a fetal JH usage pattern were also observed. Taken together, our data suggest that the XLA defect does not alter V-D-J rearrangements nor the expression of mu, lambda-like, and V pre-B transcripts and most likely results in a poor efficiency of some critical steps of the B cell maturation.

Adult↗

Organization and expression of the pseudo-light chain genes in human B-cell ontogeny.

In pre-B cells, the mu chain is expressed at the cell surface in association with a "light chain surrogate" encoded by the V pre-B and the lambda-like genes. This mu-psi-L complex presumably triggers early steps of the B cell differentiation, possibly by controlling the Ig gene rearrangements. In the humans, the lambda-like complex contains 3 genes, located in the 22q11.2-q12.3 band, telomeric to the IGCL locus, with which they share a similar organization, pointing to a common genetic origin. Only one lambda-like gene, 14.1, is functional and specifically expressed with V pre-B in pre-B cells. This expression starts in cells which still have the IGH locus in germline configuration (pro-B stage) and ceases as soon as the IGL loci rearrange. These pre-B specific transcripts provide useful markers of cells of the B lineage in both physiological and pathological situations.

B-Lymphocytes↗

Lambda-like and V pre-B genes expression: an early B-lineage marker of human leukemias.

V pre-B and lambda-like genes are selectively expressed in human pre-B cells and encode polypeptide chains that associate in a mu-pseudolight chain complex that may regulate some crucial steps of early B-cell differentiation. We have followed by polymerase chain reaction and Northern blot analysis the expression of these "pre-B-specific" genes in correlation with the status (rearranged v germline) of Ig gene loci (H, kappa, lambda) in a panel of 32 leukemias pertaining mostly to the B lineage and including a number of ambiguously characterized samples. All cells that had rearranged the H locus only expressed V pre-B and lambda-like transcripts, in agreement with a pre-B status. In this group, some biphenotypic leukemias (mostly My/B) might, in fact, be already engaged in the B lineage. Rearrangement of V kappa or V lambda loci correlated with the disappearance of the pre-B gene products. In a pre-B acute lymphoblastic leukemia cell line that was induced to mature to the B-cell stage in culture upon kappa gene rearrangement, the mu-pseudolight chain complex was actually replaced by the classical mu-kappa molecule. Finally, V pre-B and lambda-like genes were found expressed in two leukemic cells that had retained all Ig loci in germline configuration. This finding raises the possibility of having an early pro-B progenitor in which V pre-B and lambda-like products associate with a H chain surrogate in a complex that would trigger an early event of B-cell differentiation such as the H locus rearrangements.

Antigens, CD↗

Early occurrence of immunoglobulin isotype switching in human fetal liver.

A cDNA library prepared from a human fetal liver of the first trimester of gestation was screened with Ig C mu, C gamma, C kappa and C lambda probes. Ten heavy chain clones were isolated and characterized by restriction mapping and partial sequencing. The absence of Ig light chain clone and the presence of pre-B-specific lambda-like transcripts suggest that the immune compartment of this cDNA library was mostly derived from pre-B cells. Three transcripts of mu, gamma 2 and gamma 4 isotypes contained a V-D-J-C region with an open reading frame and used members of the VHIV, VHIII and VHI families, respectively. Seven clones were derived from sterile transcripts, one C mu and six C gamma. In addition to C mu exons, the sterile mu transcript contained the 5' flanking germline region. By contrast, the gamma sterile transcripts used a 5' sequence that was spliced from the I gamma 1 region onto the first C gamma 1 exon. In addition several of these transcripts were derived from alternative splicing. The simultaneous expression of both sterile and functional gamma transcripts suggests that the switch mechanism operates in normal fetal liver very early in ontogeny.

Antigenic Variation↗

The human pre-B-specific lambda-like cluster is located in the 22q11.2-22q12.3 region, distal to the IgC lambda locus.

The chromosomal location of the lambda-like gene cluster, a gene family selectively expressed in human pre-B cells, was analyzed by in situ hybridization with a probe specific for the lambda-like genes. This cluster mapped in the q11.2-q12.3 region of chromosome 22. The use of Burkitt lymphoma and myelogenous leukemia cell lines with translocations in the 22q11 region led to a refinement in the location according to the following order: cen----BCRL2, VpreB, IgV lambda 1----BCRL4, IgV lambda----IgC lambda----BCR----BCRL3, lambda-like----tel. Unlike those of the mouse system, the pre-B-specific genes VpreB and lambda-like do not belong to the same transcriptional unit.

Animals↗

Organization and expression of the lambda-like genes that contribute to the mu-psi light chain complex in human pre-B cells.

Lambda-like genes encode a polypeptide chain that associates with VpreB and mu chain in the so-called mu-psi light chain complex specifically expressed in pre-B cells. In humans, the lambda-like gene cluster contains three genes, termed 14.1, 16.1, and F lambda 1. The 14.1 gene contains three exons and was previously sequenced. The 16.1 and F lambda 1 have been isolated from cosmid libraries. They both contain only the exons 2 and 3 that appear highly homologous to their 14.1 counterparts. The lambda-like gene cluster has been mapped on chromosome 22, close and distal to the BCR gene, in the order (14.1; F lambda 1) and 16.1. Hybridization with the 14.1 exon 1 probe did not detect an equivalent on 16.1 and F lambda 1 genes, but instead, only revealed the X6 gene, that was previously identified 5 kb upstream of the IGLC locus. It appears, therefore, that the gene organization of the lambda and lambda-like loci is strikingly similar, with a three-exon-containing gene 5' of a series of J lambda-C lambda or J lambda-C lambda-like tandemly organized genes. Analysis of the transcripts in a 8 week old human fetal liver clearly indicated that 14.1 was the only functional gene of the lambda-like cluster. Various forms of transcripts resulting from alternate splicing have been characterized. The major component consisted of a full-length (exons 1-2-3) mRNA, whereas a minor (1-3) transcript was identified. Only the full-length transcript could encode a functional polypeptide chain corresponding to the 22 kDa light chain surrogate.

Amino Acid Sequence↗

Individual germinal centres of myasthenia gravis human thymuses contain polyclonal activated B cells that express all the Vh and Vk families.

Using in situ hybridization, we analysed the immunoglobulin repertoire expressed by the B cells present in myasthenia gravis thymuses from four patients. B cells, mostly in activated state, were clustered in germinal centres, in which multiple isotypes were identified. A majority of cells expressed IgG as compared with IgM, with a roughly similar contribution of kappa and lambda chains. Hybridization with the six VH and the 4 VK human family probes was observed in serial sections, providing additional evidence that individual germinal centres were polyclonal. The thymic B cell repertoire closely reflected the VH and the VK family usage of normal peripheral blood lymphocytes with the preferential utilization of VH3, VK1 and VK3.

Adult↗

The immunoglobulin lambda-like gene cluster (14.1, 16.1 and F lambda 1) contains gene(s) selectively expressed in pre-B cells and is the human counterpart of the mouse lambda 5 gene.

A human immunoglobulin (Ig)-related gene, covering approximately 8 kb, was isolated from a cosmid genomic library, by hybridization with a C lambda probe and with a lambda-like probe. This gene was identified as 14.1 It belongs to the human lambda-like cluster which is composed of three genes (14.1, 16.1 and F lambda 1) that do not rearrange. Sequence data indicate that 14.1 is organized similarly to the mouse lambda 5 gene. It contains three exons with lengths of 69, 38, and 106 codons as compared with 65, 38, and 106 for exons 1, 2, and 3 of mouse lambda 5, respectively. The corresponding homology values were 61, 66 and 75.5%. Using a 14.1 specific probe containing exon 1, we showed that this gene was selectively expressed in human pre-B cell lines. It is likely to encode a 213-amino acid lambda-like light chain that would associate with mu chains and play an important role in the early steps of B cell differentiation.

Amino Acid Sequence↗

Rapid expansion of human immunoglobulin repertoire (VH, V kappa, V lambda) expressed in early fetal bone marrow.

We have isolated pre-B- and B-cell clones after transformation by Epstein-Barr virus (EBV) of human fetal bone marrow cells between weeks 8 and 13 of gestation. These clones were characterized for immunoglobulin (Ig) chain synthesis, the status (rearranged versus germ line) of the heavy (H) chain, kappa, and lambda loci, and of the Ig mRNA transcripts by using specific variable (V), VH, V kappa, and V lambda probes covering the almost complete IgV repertoire. Mature B cells could already be identified in the 8-week-old bone marrow, with both kappa and lambda isotypes being present. Nevertheless, at this stage, most of the clones had Xhe characteristics of pre-B cells, as indicated by the presence of mu transcripts (either functional or sterile) in the absence of L chains. The kinetics of gene rearrangements were compatible with the classical scheme H----kappa----lambda. A rapid expansion of the expressed repertoire occurred between the weeks 8 and 11, with 95% of the EBV clones having the characteristics of mature B cells. V gene family usage was analyzed for the three loci and compared with the pattern of expression observed at 30 weeks of gestation and in adult clones. The "adult" pattern was rapidly acquired for the H and kappa loci, with the major subgroups being VH3 and V kappa 1. When the expression of the repertoire was "normalized," the pattern of V usage correlated fairly well with the estimated number of VH genes, but differed noticeably for the kappa chains, suggesting that the VH and V kappa repertoires are not regulated by similar processes.

Amino Acid Sequence↗