Search PubMed⌕ Search

Biomedical subjects

A Rambaldi

Publications and source records attributed to A Rambaldi.

At least 145 records · Page 8Linked to original sources

Structure of the gene encoding the human leukocyte adhesion molecule-1 (TQ1, Leu-8) of lymphocytes and neutrophils.

The leukocyte adhesion molecule-1 (LAM-1, TQ1, Leu-8), expressed by human lymphocytes, neutrophils, monocytes, and their precursors, is a member of the selectin family of cellular adhesion/homing receptors which play important roles in leukocyte-endothelial cell interactions. These cell surface molecules contain an amino-terminal lectin-like domain followed by an epidermal growth factor-like domain and a variable number of short consensus repeat sequences similar to those found in C3/C4 binding proteins. In this report, the structure of the lyam-1 gene that encodes the LAM-1 protein was determined by isolating overlapping genomic DNA clones that hybridized with a LAM-1 cDNA probe. The lyam-1 gene spans greater than 30 kilo base pairs of DNA and is composed of at least 10 exons. The 5' end of the LAM-1 mRNA was mapped by primer extension analysis revealing a single initiation region for transcription. Exons II through X contain translated sequences; exon II encodes the translation initiation codon; exon III, the leader peptide; IV, the lectin-like domain; V, the epidermal growth factor-like domain; VI and VII, the short consensus repeat units; exon VIII, the transmembrane region; exon IX encodes seven amino acids containing a potential phosphorylation site; and exon X encodes the five remaining amino acids of the cytoplasmic tail and the long 3' untranslated region. Sequencing of LAM-1 cDNA clones derived from neutrophils revealed that the protein expressed by neutrophils would be identical in sequence with the protein expressed by lymphocytes and cDNAs that would encode different isoforms of LAM-1 protein were not detected. In addition, the level of LAM-1 expression by lymphocytes and neutrophils from two patients with paroxysmal nocturnal hemoglobinuria, a disorder in which linkage of phosphatidylinositol anchors to proteins is defective, was similar to that of normal controls. Therefore, the usage of exons II through X results in the generation of a single major LAM-1 protein product expressed by lymphocytes and neutrophils.

Base Sequence↗

A paracrine circuit in the regulation of the proliferation of macrophages infiltrating murine sarcomas.

Tumor-associated macrophages (TAM) isolated from two murine sarcomas (mFS6 and MN/MCA1) had high levels of proliferative activity (7 to 11% of cells in S phase) compared to peritoneal macrophages (1 to 2% of cells in S phase). In an effort to elucidate the mechanisms responsible for the proliferative activity of TAM, expression of c-fms and macrophage (M)-CSF was investigated in TAM and sarcoma cells. TAM had high levels of mRNA transcripts of the c-fms protooncogene, which encodes a tyrosine kinase probably identical to the M-CSF receptor, but did not express M-CSF transcripts whereas sarcoma cells had high levels of M-CSF mRNA. Sarcoma cell conditioned medium had M-CSF activity on bone marrow cells and induced proliferation of peritoneal exudate and bone marrow-derived macrophages. These activities were blocked by anti-M-CSF antibodies. These findings outline a paracrine circuit in the regulation of TAM proliferation, involving M-CSF, secreted by sarcoma cells and acting on c-fms expressing TAM. Inasmuch as TAM from these murine sarcomas have tumor growth promoting activity, a "ping pong" reciprocal feeding interaction may occur between macrophages and neoplastic cells in these tumors.

Animals↗

Association of NK-cell lymphoproliferative disease and nephrotic syndrome.

A 56-year-old white man with a seven-year history of lymphocytosis of large granular lymphocytes (LGL) developed mild renal insufficiency (serum creatinine 150 mumol/L (1.7 mg/dL) with proteinuria (3.4 g/day). Laboratory investigations confirmed a proliferative disease of non-T lineage cytotoxic LGL/natural killer (NK) cells, and the renal biopsy documented focal and segmental glomerulosclerosis associated with interstitial inflammation and tubular atrophy. These findings could be explained by production and release of humoral mediators by pathologic LGL/NK cells. The renal function must be carefully monitored in patients with LGL/NK proliferative disorders, and the role of the NK cell system in renal diseases should be investigated.

Biopsy↗

T cell receptor delta gene organization and expression in normal and leukemic natural killer cells.

In peripheral blood most NK activity is mediated by CD3- cells with large granular lymphocyte morphology which cannot be assigned to a specific hemopoietic lineage. In accordance with previous studies we have analyzed the organization of the TCR delta gene, which rearranges early in thymic ontogeny, in normal NK cells, and in granular lymphocytes proliferative disorders (GLPD), in an effort to further define their relationship to the T cell differentiation pathway and to identify a possible marker of clonality for CD3- GLPD. The alpha/delta locus was rearranged in five cases of CD3+ GLPD with a biallelic deletion of the C delta region, suggesting V-J alpha rearrangement, whereas CD3- GLPD and normal CD3- NK cells had the delta gene in germ-line configuration, but surprisingly expressed high levels of TCR delta-related mRNA. On the basis of this finding and of the presence of truncated TCR-beta and CD3-epsilon mRNA, we are led to speculate on a possible ontogenic relationship of NK cells to the T cell differentiation pathway at stages preceding TCR gene rearrangement.

Antigens, Differentiation, T-Lymphocyte↗

Autoimmunity and B-cell dysfunction in chronic proliferative disorders of large granular lymphocytes/natural killer cells.

Clinical and laboratory findings of B-cell immune dysfunction were evaluated in ten patients with a large granular lymphocyte/natural killer cell proliferative disease (LGL/NK-PD). Increased immunoglobulin synthesis with autoantibody formation was documented: polyclonal hypergammaglobulinaemia (six patients), neutrophil autoantibody (one patient), antinuclear antibody (one patient), and rheumatoid factor (five patients). In addition, serum beta 2-microglobulin level was raised in seven patients, a benign monoclonal gammopathy was detected in one, and concurrent B-type hairy cell leukemia in another. Most patients experienced the complications of hemocytopenia, polyarthritis or rheumatoid arthritis, and immediate allergic reactions to drugs or environmental substances, rather than from symptoms of progressive LGL/NK-PD. A review of the literature confirms that an increased immunoglobulin production is common in LGL/NK-PD, and that patients are likely to develop multiple autoantibodies. The incapacity of proliferating, abnormal LGL/NK cells to suppress B-cell activation and immunoglobulin synthesis, documented by several in vitro studies, offers a pathogenetic explanation for these phenomena. This study shows that an anomalous B-cell function contributes greatly to the morbidity of disease in LGL/NK-PD, and points out the utility of investigating the LGL/NK cell system in patients with autoimmune pathologic characteristics of unclear origin.

Adult↗

Functional consequences of monocyte IL-2 receptor expression. Induction of IL-1 beta secretion by IFN gamma and IL-2.

The generation of an immune response involves the interaction of monocytes and T cells, but the events which regulate this interaction are not well understood. Culture of human peripheral blood monocytes in vitro induces low level surface expression of the p55 protein of the IL-2R and the expression of this receptor can be enhanced significantly by exposure to IFN-gamma. The addition of IL-2 to IFN-gamma-treated monocytes was shown to augment subsequent IL-1 beta secretion in the presence or absence of LPS. These effects could be partially blocked by anti-p55-IL-2R mAb. Nuclear "run on" assays and Northern analysis to probe for IL-1 beta transcripts showed enhanced IL-1 beta gene transcription and mRNA accumulation by monocytes treated with IFN-gamma and IL-2 but not in cultures that were obtained from monocytes treated with IL-2 alone. These results suggest that the T cell lymphokines IFN-gamma and IL-2 may act in a sequential fashion on monocytes to amplify the immune response by establishing a positive feedback circuit.

Adjuvants, Immunologic↗

Recombinant human interleukin 5 is a selective eosinophil chemoattractant.

Human recombinant interleukin (IL) induced migration across polycarbonate filters of human peripheral blood eosinophils. The contribution of chemotaxis vs. chemokinesis was investigated using a checkerboard design with both polycarbonate and nitrocellulose filters. When different cytokine concentrations were seeded above and below the filter, maximal induction of migration required a positive concentration gradient between the lower and upper compartments of the chamber, though some gradient-independent augmentation of migration occurred. These results indicate that induction of eosinophil migration across filter involves actual chemotaxis. The effect of IL5 was selective for eosinophils with no effect on neutrophils and monocytes. Conversely, granulocyte-macrophage colony-stimulating factor elicited migration of both eosinophils and neutrophils. Thus, human IL5 is a potent and selective chemoattractant for human eosinophils. Eosinophils are selectively localized in tissues under a variety of physiological and pathological conditions. Locally produced IL5 may play a role in the selective recruitment of eosinophils from the blood compartment.

Chemotaxis, Leukocyte↗

Expression of c-jun protooncogene in human myelomonocytic cells.

A prototypic "immediate early" gene, c-fos, has been extensively investigated in relation to the differentiation and activation of myelomonocytic cells. The c-fos gene product is associated in transcriptional complexes with the c-jun product. These protooncogenes are part of the regulatory network of gene expression. The present study was designed to investigate expression of the c-jun protooncogene in human circulating myelomonocytic cells. We found that c-jun is constitutively expressed in normal monocytes and granulocytes, whereas low levels of transcripts are found in lymphocytes. Acute myelogenous leukemia (AML) samples of French-American-British Cooperative Group (FAB) subtypes 1 through 4 express appreciable levels of this protooncogene. Normal phytohemagglutinin (PHA)-activated lymphocytes express high levels of c-jun. Expression in normal myelomonocytic cells is detectable even after 18 hours of culture. The c-jun transcripts in myelomonocytic cells have a half-life of approximately 20 minutes and are superinduced by cycloheximide, which affects both the degradation rate of mRNA and the transcriptional activity of the c-jun gene. Functional activation of monocytes and granulocytes with phorbol esters, lipopolysaccharide, and tumor necrosis factor (TNF) increase c-jun expression. This induction is rapid, transient, and does not require intervening protein synthesis. Runoff experiments showed that in freshly isolated untreated monocytes, the c-jun gene is constitutively transcribed, and that induction by lipopolysaccharide is at least in part at the transcriptional level. Moreover, lipopolysaccharide (LPS) treatment reduced the degradation rate of c-jun transcripts, prolonging the half-life to approximately two hours. Expression of c-jun in resting and activated monocytes and granulocytes suggests that this protooncogene may play a role in the differentiation and activation of cells belonging to the myelomonocytic lineage.

Cells, Cultured↗

Constitutive expression of the interleukin-6 gene in chronic lymphocytic leukemia.

Interleukin-6 (IL-6) is a pleiotropic lymphokine active as a growth factor on B-cell hybridomas and plasmacytomas and found to be identical with B-cell stimulatory factor 2, interferon beta 2, 26-Kd protein, and hepatocytes stimulating factor. IL-6 gene expression was investigated in fresh human chronic lymphocytic leukemia (B-CLL) and in acute lymphoblastic leukemia (ALL) by Northern blot analysis using a specific cDNA probe. 1.3-kb IL-6 transcript was found in six out of 11 B-CLL patients, while no hybridization was observed in ten cases of ALL of both T- and B-cell origin. The constitutive expression of IL-6 transcripts was associated with production of a biologically active protein as determined by using the IL-6-dependent 7TD1 cell line. It remains to be elucidated whether IL-6 gene expression is indeed important in the regulation of B-CLL growth or in its clinical manifestation.

Animals↗

Differences in the expression of alkaline phosphatase mRNA in chronic myelogenous leukemia and paroxysmal nocturnal hemoglobinuria polymorphonuclear leukocytes.

Paroxysmal nocturnal hemoglobinuria (PNH) and the stable phase of chronic myelogenous leukemia (CML) are the two hematological conditions known to be associated with low levels of leukocyte alkaline phosphatase (LAP) activity in peripheral blood polymorphonuclear cells (PMN). LAP mRNA levels were determined in PMN from PNH and CML patients by RNA blotting analysis. In CML, LAP mRNA is undetectable, suggesting either decreased transcription or rapid degradation of the message. Contrarily, in PNH normal or high levels of LAP mRNA are present. This latter finding supports the concept of a deficit in the anchorage of the protein to the plasma membrane through the glycolipid pathway, even though other post-transcriptional mechanisms could be involved.

Alkaline Phosphatase↗

Induction of monocyte migration by recombinant macrophage colony-stimulating factor.

Human recombinant macrophage-CSF (M-CSF) induced migration across polycarbonate or nitrocellulose filters of human peripheral blood monocytes. Checkerboard analysis of M-CSF-induced migration, performed by seeding different cytokine concentrations above and below the filter, revealed that the locomotory response involved chemotaxis, though some gradient-independent augmentation of migration occurred. Polymixin B did not affect M-CSF chemotaxis and M-CSF was active on monocytes from the LPS-unresponsive mouse strain C3H/HeJ. These findings rule out a contribution of minute endotoxin contamination, below the sensitivity of the Limulus assay, in M-CSF chemotaxis. Rabbit anti-M-CSF antibodies inhibited the chemotactic activity of recombinant M-CSF, thus further indicating that the M-CSF molecule was indeed responsible for chemotaxis. M-CSF preparations encoded by 224 or 522 amino acid cDNA clones were equally effective in inducing monocyte migration. Recombinant M-CSF did not elicit a migratory response in large granular lymphocytes and in endothelial cells under conditions in which appropriate reference attractants were active. A modest stimulation of migration of polymorphonuclear leukocytes, inhibitable by antibodies, was observed at high cytokine concentrations (10 to 100 times higher than those required for monocyte locomotion). The maximal polymorphonuclear leukocytes response evoked by M-CSF was small compared to that evoked by reference chemoattractants or to that evoked by the same cytokine in monocytes. Hence, M-CSF is a potent chemoattractant for mononuclear phagocytes and exerts its action preferentially on cells of the monocyte-macrophage lineage. M-CSF, produced locally by activated macrophages, may play a role in the selective recruitment from the blood compartment of mononuclear phagocytes to amplify resistance against certain noxious agents.

Chemotactic Factors↗

Association of large granular lymphocyte/natural killer cell proliferative disease and second hematologic malignancy.

We describe the first three patients with a large granular lymphocytosis/lymphocytic leukemia and another blood malignancy. In two, a myeloproliferative disorder developed soon after the diagnosis of abnormal proliferation of large granular lymphocytes-natural killer (LGL-NK) cells, a myelodysplastic syndrome evolving to acute leukemia and a Philadelphia-positive chronic myelogenous leukemia. In these cases, LGLs expressed the phenotype of CD3+ NK and CD3- NK cells, respectively, and were clonal in the first patient as demonstrated by T-cell receptor gene rearrangement study. In the third case, a similarly clonal excess of LGLs, phenotypically CD3+ NK cells, was detected following a diagnosis of B-cell hairy-cell leukemia. Clinically, the concurrence of LGL proliferation and other leukemia did not seem to confer a worse prognosis on the patients. Although an association by chance remains a possible explanation, a common origin from an altered precursor cell for both myeloid and LGL proliferations in the first two cases is discussed, whereas in the third it might be related to the severe immune derangement frequently observed in hairy-cell leukemia.

Adult↗

Investigation of chronic lymphocytosis in adults.

Thirteen cases of idiopathic chronic lymphocytosis are the subject of this report. Patients showed a lymphocyte count between 4 and 15 X 10(9)/L for at least six months, marrow lymphocytosis not exceeding 25%, absence of lymphomegaly and hepatosplenomegaly, and no associated infections, immune, or neoplastic disease. Morphologic examination of smears revealed a lymphocytosis of large granular lymphocytes in five. A selected battery of polyclonal and monoclonal antisera to antigens commonly found on B-, T-, and natural killer cells allowed the identification of six cases of early B-cell chronic lymphocytic leukemia, two cases of T-cell lymphocytosis with a suppressor or helper T-cell phenotype, and five cases of large granular lymphocyte/natural killer cell proliferative disease. The results demonstrate the usefulness of combining morphologic and phenotype studies for the investigation of chronic lymphocytosis, which often appears as an early leukemia or a benign clonal proliferative disorder of lymphocyte subsets.

Adult↗

Expression of the macrophage colony-stimulating factor and c-fms genes in human acute myeloblastic leukemia cells.

Macrophage colony-stimulating factor (CSF-1; M-CSF) is a growth factor required for growth and differentiation of mononuclear phagocytes. The effects of CSF-1 are mediated through binding to specific, high-affinity surface receptors encoded by the c-fms gene. CSF-1 and c-fms gene expression was investigated in fresh human acute myeloblastic leukemic cells by Northern blot hybridization using cDNA probes. 4.0-kb CSF-1 transcripts were detected in 10 of 17 cases of acute myeloblastic leukemia (AML), while c-fms transcripts were detected in 7 of 15. Coexpression of CSF-1 and c-fms was observed in five cases, and in five other cases neither gene was expressed. In situ hybridization demonstrated that transcripts for CSF-1 were present in 70-90% of cells in each of three cases studied while c-fms mRNA was detected in 40-70% of cells. The constitutive expression of CSF-1 transcripts was associated with production of CSF-1 protein, although detectable amounts of CSF-1 were not secreted unless the cells were exposed to phorbol ester. These results demonstrate that leukemic myeloblasts from a subset of patients with AML express transcripts for both the CSF-1 and CSF-1 receptor genes, often in the same leukemic cells in vitro.

Colony-Stimulating Factors↗

Independent regulation of M-CSF and G-CSF gene expression in human monocytes.

The macrophage and granulocyte colony-stimulating factors, M-CSF and G-CSF, act in vitro to induce proliferation and differentiation of monocyte and granulocyte progenitor cells, respectively. We show here that both of these CSFs can be produced by stimulated human blood monocytes, but the M-CSF and G-CSF genes are independently regulated. Recombinant human interleukin-3 (IL-3) and GM-CSF primarily induce expression of the M-CSF gene and secretion of M-CSF, whereas bacterial lipopolysaccharide primarily induces expression of the G-CSF gene and secretion of G-CSF. These results suggest that under different conditions of in vitro stimulation the monocyte secretes factors that could lead selectively to either granulocyte or monocyte production.

Cell Adhesion↗

c-sis but not c-fos gene expression is lineage specific in human myeloid cells.

Expression of both the c-fos and c-sis protooncogenes during myeloid differentiation has been detected in cells of the monocytic lineage. Since an increase in c-fos transcripts was not detected during dimethylsulfoxide induced HL-60 granulocytic differentiation, it was suggested that within the myeloid series c-fos gene expression might be lineage specific. In the present study, we have determined whether expression of the c-fos and c-sis genes is indeed specific for the monocytic pathway or rather common to both the granulocyte and monocyte pathways. C-fos and c-sis gene expression was analyzed in freshly isolated human granulocytes and monocytes, in human HL-60 promyelocytic leukemia cells induced to differentiate along the granulocytic or monocytic pathway, in myeloblasts from five patients with the M1 or M2 subtype of acute myeloblastic leukemia (AML) and in blasts from six patients with M4 myelomonocytic leukemia. The level of c-fos mRNA was fifteen times higher in granulocytes as compared with monocytes. An increase in c-fos expression was also found in HL-60 cells differentiated along the granulocytic pathway after exposure to hypoxanthine, hexamethylene bisacetamide, and the combination of retinoic acid and dibutyryl adenosine 3'5' cyclic monophosphate. Three of 5 M1 and M2 leukemic myeloblast preparations depleted of lymphoid and monocytic cells and all six M4 leukemic cells expressed c-fos transcripts. In contrast, c-sis gene transcripts were detectable in monocytes and during drug induced monocytic differentiation of the HL-60 cells but not in granulocytes during granulocytic differentiation of the HL-60 cells or in AML samples. Thus, in the myeloid series, c-sis gene expression is lineage specific while expression of the c-fos gene is found in both lineages and may be related to metabolic pathways common to both granulocytes and monocytes.

Actins↗

Human granulocyte-monocyte colony-stimulating factor and interleukin 3 stimulate monocyte cytotoxicity through a tumor necrosis factor-dependent mechanism.

Human colony-stimulating factors (CSF) exert multiple effects on the proliferation, differentiation, and function of myeloid lineage cells. In this study, the effects of three recombinant human CSFs (granulocyte-monocyte CSF [GM-CSF], interleukin 3 [IL-3], and granulocyte CSF [G-CSF]) on antibody-independent monocyte tumoricidal activity were investigated by using WEHI 164 fibrosarcoma cells as monocyte-sensitive targets. None of the CSFs directly induced monocyte cytotoxicity, although both GM-CSF and IL-3 were found to significantly enhance monocyte killing in response to a second stimulatory event (endotoxin). No effect was seen with G-CSF. Antitumor necrosis factor antibody completely abolished CSF-enhanced monocyte cytotoxicity, which suggests that this effect was mediated through increased release of tumor necrosis factor (TNF). As previously shown for GM-CSF, IL-3 was found to induce cytoplasmic accumulation of TNF messenger RNA (mRNA) after 18 hours of exposure. These results suggest that GM-CSF and IL-3 may stimulate monocyte killing indirectly by enhancing expression of TNF mRNA, thereby leading to augmented TNF protein secretion in response to a second activation signal.

Biomechanical Phenomena↗