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C Caux

Publications and source records attributed to C Caux.

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Isolation and characterization of an expressible cDNA encoding human IL-3. Induction of IL-3 mRNA in human T cell clones.

We have isolated cDNA clones encoding human IL-3 from libraries constructed in a modified pcD mammalian expression vector by using mRNA prepared from activated human T cell clones. Amino acid sequence of human IL-3 deduced from DNA sequence of these cDNA clones agrees with that predicted from genomic sequence except at amino acid position 27. Northern blotting analysis and S1 nuclease analysis show that almost all activated T cell clones express IL-3 mRNA with kinetics similar to that observed in mouse T cell clones. However, striking difference was found in the level of granulocyte-macrophage-CSF and IL-3 mRNA expressed in activated human T cells. In contrast to mouse T cell clones, granulocyte-macrophage-CSF mRNA is expressed at least two orders of magnitude more abundant than IL-3 mRNA. Yeast Saccharomyces cerevisiae carrying human IL-3 cDNA fused downstream to alpha-factor leader sequence expressed and secreted biologically active IL-3. Several different rat anti-peptide antisera have been used to confirm the presence of human rIL-3 immunochemically. The immunoreactive human IL-3 expressed in transiently transfected COS7 cells or in yeast was observed to be heterogeneous. Human rIL-3 expressed in COS7 cells has multipotential CSF activity in semisolid cultures of bone marrow cells, and selectively induced the proliferation of My-10+ marrow or cord blood cells in liquid cultures.

Amino Acid Sequence↗

Effects of recombinant human interleukin-3 on CD34-enriched normal hematopoietic progenitors and on myeloblastic leukemia cells.

Induction of proliferation and differentiation in response to recombinant human interleukin-3 (hIL-3) was studied in liquid and semisolid cultures of umbilical cord blood and bone marrow cells that were fractionated by "panning" with anti-My10 antibody according to expression of CD34 antigen. Cells from enriched fractions (70% to 90% CD34+) were found to proliferate strongly in response to hIL-3. Phenotypic analysis and morphologic characterization of the proliferating cells demonstrated a rapid decrease in CD34+ cells and an exponential increase in the number of cells belonging to the neutrophilic, eosinophilic, monocyte/macrophage, and thrombocytic lineages. When combined with recombinant human erythropoietin, burst colonies and cells expressing glycophorin-A were detected, thereby demonstrating the effects of hIL-3 on erythroid progenitors. Further, the development of mixed-erythroid colonies indicated that multipotential cells within CD34-enriched fractions responded to hIL-3. In addition, we examined the effect of hIL-3 on the proliferation of primary acute myeloblastic leukemia cells in liquid culture. We found that hIL-3 was able to induce cell proliferation in a proportion of the cases tested. Heterogeneity of the responses to hIL-3 was in part related to French-American-British classification but could not be correlated with CD34 antigen expression by the leukemic cells. These results indicate that, although the effects of hIL-3 on proliferation and differentiation of cells obtained from normal hematopoietic specimens were primarily borne by CD34+ cells, expression of the CD34 molecule per se is an insufficient condition to determine a growth response to this lymphokine.

Antigens, CD34↗

Canine monocytes express a receptor specific for murine Fc gamma 2a and Fc gamma 3 immunoglobulins.

Murine monoclonal antibodies (mAb) of IgM and IgG subclasses that do not bind to canine cells have been used to detect the expression of Fc receptors on canine peripheral blood mononuclear cells and the cell line MAXEY-DH82. Murine Ig of IgG2a and IgG3 isotypes bound specifically to canine peripheral blood monocytes and to MAXEY-DH82, whereas Ig of IgG1, IgG2b, and IgM did not. No other cell types, including resting and activated peripheral blood lymphocytes, expressed this canine Fc receptor (cFcR) specific for murine IgG2a and IgG3. MAXEY-DH82 was used to characterize this Fc gamma 2a/gamma 3 receptor. Binding of murine IgG2a and IgG3 is trypsin sensitive and partially suppressed by phosphatidyl inositol-phospholipase C (PI-PLC) treatment, indicating that this cFc gamma 2a/gamma 3 receptor is a lipid-anchored protein. Preincubation of MAXEY-DH82 with canine sera or canine IgG prevented the binding of murine gamma 2a/gamma 3 Ig, demonstrating that this receptor is a cFc receptor for canine IgG. The cFc gamma R expressed on canine monocytes and on MAXEY-DH82 is probably the analog of the murine and human Fc gamma RI. The specific expression of this analog by canine cells could be used in identifying and purifying canine monocytes.

Animals↗