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Biomedical subjects

G Gacon

Publications and source records attributed to G Gacon.

At least 19 recordsLinked to original sources

Bridging Ral GTPase to Rho pathways. RLIP76, a Ral effector with CDC42/Rac GTPase-activating protein activity.

Ra1A and Ra1B are GTPases of unknown function and are activated by proteins, Ra1GDS, that interact with the active form of another GTPase, Ras. To elucidate Ral function, we have searched for proteins interacting with an activated form of Ra1A using the two-hybrid method and a Jurkat cell library. We have identified a partial cDNA encoding a protein, RLIP1, which binds to activated Ra1A and this binding requires an intact effector domain of Ra1A. Biochemical data with purified Ra1A confirm the genetic results. This protein also bears a region of homology with GTPase-activating protein (GAP) domains that are involved in the regulation of GTPases of the Rho family and, indeed, RLIP1 displays a GAP activity acting upon Rac1 and CDC42, but not RhoA. This GAP region is not required for RLIP1 binding to Ra1. The whole cDNA was cloned, and it encodes a 76-kDa polypeptide, RLIP76, which also binds RalA. The Rho pathway is involved in membrane and cytoskeleton modifications after mitogenic stimulation and acts in parallel to and synergistically with the Ras pathway. We propose that these pathways are linked through a cascade composed of Ras --> Ra1GDS --> Ra1 --> RLIP76 --> CDC42/Rac1/Rho, allowing modulation of the Rho pathway by the Ras pathway.

ATP-Binding Cassette Transporters

The small GTP-binding protein rac is not recruited to the plasma membrane upon NADPH oxidase activation in human neutrophils.

Superoxide generation by phagocytic cells requires assembly of the enzymatic complex NADPH oxidase, consisting of membranous and cytosolic components which translocate to the plasma membrane upon cell activation. Two highly homologous cytosolic small GTP-binding proteins, rac1 and rac2, have recently been implicated in the activation of NADPH oxidase. We report that, in resting neutrophils, the amount of rac detectable in the plasma membrane-enriched fraction accounted for 1.5% of the cytosolic protein. When the O2- generation was induced by stimulating neutrophils with PMA, fMLP or opsonized zymosan rac proteins were not recruited at the plasma membrane as analysed by immunoblot or immunofluorescence assays. We conclude that rac proteins do not assemble with the NADPH oxidase complex in the plasma membrane, and we propose that they might instead transduce translocation signals to the other cytosolic components.

Cell Adhesion

Regulation of p56lck kinase expression and control of DNA synthesis in activated human B lymphocytes.

In this study, we analyzed the expression and regulation of src kinase p56lck expression during human B lymphocyte activation. We show that upon mitogenic stimulation with anti-IgM antibodies and interleukin-2, specific mRNA for p56lck becomes detectable in B cells after 24 h of activation and is followed by an increase in p56lck protein expression on days 2 and 3. This up-regulation is specific for p56lck since expression of other src kinases such as fyn, lyn, or yes was not modified. Furthermore, immune complex kinase assays show that p56lck protein expressed on day 2 is associated with kinase activity. Experiments using lck-specific antisense oligonucleotides show that the G0-G1 transition does not require p56lck, whereas DNA synthesis is dependent upon its expression. Thus, our data demonstrate that p56lck expression is up-regulated during human B cell stimulation and this kinase plays an important role during the control of late steps of B lymphocyte activation such as S phase entry.

B-Lymphocytes

[Reoperation after failure of unicompartmental knee prosthesis. Therapeutic strategy and results based on 40 cases].

Forty revisions for failure of unicompartmental knee prostheses were assessed. Twenty-eight women and twelve men (mean age: 67 years) were reoperated. Failure of an medial single-compartment prosthesis was involved in 35 cases, of a lateral prosthesis in 5 cases. The initial prostheses had been cemented in 19 cases and uncemented in 21 cases. Preoperative functional conditions were assessed by Hungerford's functional score and a 200-points score. The radiological study before revision showed 35 cases of varus distortion; in 12 of these, the varus distortion exceeded 10 degrees. Rather than studying the causes for failure of the single-compartment prosthesis, it seemed more useful to try to define the adequate reoperation procedure strategy and analyze its results. Our procedure aimed at solving the following difficulties: surgical approach: the same incision as in the initial operation was performed, the primary prosthesis was removed and a two-stage treatment was justified in cases of infection, metallosis involved complete removal of debris, the problem of bone-recutting and, chiefly, the problem of residual bone defect requiring bone-graft. Bone-recutting was performed with the tibial and femoral elements of the primary prosthesis still in place and using the ancillary equipment of the new prosthesis. Bone defects involved the femur as often (14 cases) as the tibia (12 cases); tibial bone defects occurred more frequently with cemented prostheses (9 cases) than with uncemented prostheses (3 cases). Femoral graft being relatively easier to perform one of the two major difficulties in our strategy was the achievement of a tibial graft.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged

Inhibition of superoxide production in B lymphocytes by rac antisense oligonucleotides.

Rac1 and Rac2 gene products are small GTP-binding proteins showing 92% homology to each other. According to recent studies performed in cell-free systems, Rac1 and Rac2 proteins may be involved in the activation of NADPH-oxidase, the superoxide-generating enzymatic complex active in phagocytes. Epstein-Barr virus (EBV) transformed B lymphocytes, which express rac1 and rac2 genes, also efficiently release superoxide anions when triggered by various cell surface stimuli. To investigate the regulatory role of Rac proteins in living cells, we analyzed superoxide production in response to cross-linking of surface immunoglobulins or phorbol ester treatment in human EBV-transformed B lymphocytes pretreated with Rac sense and antisense oligonucleotides. We report here that (i) the rac protein content estimated by immunoblotting can be decreased by 60% in Rac antisense pretreated cells and (ii) a strong (50-60%), dose-dependent inhibition of superoxide production is observed in antisense pretreated cells whereas cells pretreated with sense oligonucleotide are unaffected. The data presented show, for the first time in whole cells, that superoxide production is modulated by the Rac protein content, thus demonstrating the physiological role of Rac proteins in the regulation of NADPH-oxidase.

B-Lymphocytes

ADP-ribosylation of the ras-related, GTP-binding protein RhoA inhibits lymphocyte-mediated cytotoxicity.

The Rho proteins are identified as a subgroup of the Ras superfamily of low molecular weight GTP-binding proteins. We have studied the expression of these proteins in human cytotoxic natural killer cells and found that RhoA is the most abundantly expressed member of the Rho family. The Rho proteins are specific substrates for ADP-ribosylation catalyzed by the C3 exoenzyme from Clostridium botulinum. We report here that introduction of recombinant C3 in electropermeabilized natural killer cells or in cytotoxic T lymphocytes resulted in a dose-dependent inhibition of their cytolytic function. Furthermore, a single substrate is efficiently ADP-ribosylated by C3 in extracts from cytotoxic cells. Biochemical analyses indicate that this substrate is RhoA, and subcellular fractionation experiments demonstrate that it is essentially present in the cytosol of the cells. Western blot analysis, however, revealed that a small proportion of the Rho protein can be found associated with the cell membrane as well as with the cytotoxic granules. These results indicate that the low molecular weight GTP-binding protein RhoA is present in cytotoxic lymphocytes and plays a critical role in cell-mediated cytotoxicity.

ADP Ribose Transferases

Phosphorylation of the lymphoid cell kinase p56lck is stimulated by micromolar concentrations of Zn2+.

In particulate fractions from LSTRA lymphoma cells, tyrosine phosphorylation of the lymphoid specific tyrosine kinase p56lck is elicited by Zn2+ in the absence of other divalent cations. Zn2+ alone also induces autophosphorylation of immunoprecipitated p56lck. The effect of Zn2+ is dose dependent; it is detected at concentrations of Zn2+ as low as 5 microM and reaches a maximum at 100 microM Zn2+. Among other divalent cations tested, Mn2+, and Co2+ to a lesser extent, were also effective. Zn2+ also stimulated p56lck phosphorylation in the presence of Mg2+ ions at physiological concentration, whereas orthovanadate had no effect. These results suggest that Zn2+ activates the autophosphorylation of p56lck; this fact could be related with the stimulating effect of Zn2+ in the activation of T lymphocytes.

Animals

A hemopoietic specific gene encoding a small GTP binding protein is overexpressed during T cell activation.

We have isolated, from a human B cell line cDNA library, a cDNA (Gx) encoding a small G protein identical to rac 2, a member of the ras superfamily. Gx/rac 2 gene is expressed as a unique mRNA of 1,7 Kb in peripheral blood lymphocytes, in purified B and T cells, in thymus as well as in several B and T cell lines. It is not expressed in many other tissues analysed including liver, brain, lung, heart and kidney. Upon in vitro stimulation with phytohemagglutinin A, peripheral blood lymphocytes show a clear increase of the Gx/rac 2 mRNA after 6 hours; a 30-50 fold accumulation is reached at 24 hours and persists thereafter. Purified T lymphocytes exhibit a similar increase in Gx/rac 2 mRNA expression upon mitogenic stimulation. Therefore, the expression of the Gx/rac 2 gene appears to be restricted to cells of the hemopoietic lineage and to be strongly stimulated during T cell activation. Gx/rac 2 protein must fulfill a specific role in activated T cells that could provide a new model for studying the function of small G proteins.

Amino Acid Sequence

[Stress fractures of the tibia: uncommon mechanical complication of osteoarthritis of the knee. Report of 3 cases].

Three cases are reported of spontaneous fracture of the tibia complicating osteoarthritis of the knee with genu varum. These fractures, which are very rare, with only eight cases published in the literature, seem to be associated with severe osteoarthritis in small, obese women. They usually progress to union with simple relief from weight-bearing but non-union may develop which makes the treatment of the causative osteoarthritis more difficult. A review of the published cases helped the indications for treatment to be defined.

Aged

Interleukin 2 stimulates tyrosine phosphorylation in T cell membrane fractions.

Interleukin 2 is a growth factor secreted by T lymphocytes upon antigenic stimulation and inducing the proliferation of T cells bearing at their surface the heterodimeric high-affinity form of its receptor. No enzymatic function has so far been demonstrated in the receptor subunits. In an attempt to elucidate the biochemical pathway of signal transduction, we investigated the capacity of interleukin 2 to modulate tyrosine phosphorylation in T cell membranes. Membrane-rich fractions from T cells were tested for their ability to phosphorylate tyrosine in the presence or absence of added recombinant interleukin 2. Using as substrate a synthetic polymer of glutamic acid and tyrosine, we demonstrated a 3-4-fold stimulation of tyrosine phosphorylation in the presence of interleukin 2; this stimulating effect appeared to be well correlated with interleukin 2 function since (a) it was not observed in insensitive cells, (b) it required the presence of the high-affinity form of the receptor and (c) it was dose-dependent. Confirmatory results were obtained by phosphorylating membrane-rich fractions with [gamma-32P]ATP and by analysing the resulting phosphoproteins: only in fractions from cells with the high-affinity form of the receptor were several membrane proteins specifically phosphorylated on tyrosine residues in response to interleukin 2. At least two proteins of 115 and 58 kDa were consistently hyperphosphorylated on tyrosine in an interleukin-2-dependent manner. This stimulation was strongly dependent on the presence of the protein tyrosine phosphatase inhibitor, sodium orthovanadate. Thus, we propose that interleukin 2 enhances tyrosine phosphorylation by stimulating a tyrosine kinase activity. The nature of the enzyme involved remains to be determined.

Cell Fractionation

The inhibitory effect of PGE2 on T cell activation is not associated with inhibition of PKC translocation.

We have recently reported on the effect of PGE2 on T cell activation and suggested that their immunosuppressive effect may involve the PKC activation pathway. In the present study, we further investigated the potential interference of PGE2 with PHA induced signaling in T lymphocytes. We demonstrate that the PHA mediated increase in IP3, the putative mobilizer of intracellular Ca2+, is slightly affected following cell incubation with PGE2. Treatment of cell culture with the tumor promoter TPA abrogates the suppressive activity of PGE2 whereas exogenous diacylglycerol (1,2-diolein) has only a marginal effect. This suggests that PGE2 affect PKC activity at sites distal to IP3 and DG generation. We also demonstrate that the PGE2 suppressive effect on T lymphocyte activation is not related to an inhibition of PKC translocation.

Cells, Cultured

Comparison of interleukin 2 and 12-O-tetradecanoylphorbol 13-acetate as signals for protein kinase C activation in purified human T lymphocytes.

Interleukin 2 (IL2) and 12-O-tetradecanoylphorbol 13-acetate (TPA) have been compared for their ability to induce translocation of protein kinase C (PKC) in T lymphocytes prestimulated with anti-CD3 monoclonal antibody (mAb), either in the presence or absence of monocytes. TPA alone did not promote purified T cell growth, but it was able to induce a transient, within 30 min, translocation of PKC activity. The profiles of PKC association with the membrane of the T cells under TPA stimulation were quite similar when either the anti-CD3 mAb or the fixed monocytes, or both, were added to the T cells. The decrease of cytosolic PKC under TPA stimulation was less pronounced for the purified T cells stimulated with anti-CD3 mAb, fixed monocytes alone or both than for unstimulated purified T cells. Even in the absence of monocytes, the addition of exogenous IL2 to the anti-CD3 mAb-treated T cells resulted in PKC translocation, with a transient increase in the PKC activity found in both the particulate and cytosolic fractions. When exogenous IL2 was added to the proliferating T cells, the association of PKC with the membrane was prolonged and the activity did not reach a plateau during the first 2 h after the IL2 stimulation. In parallel, the level of PKC associated with the membrane was higher in proliferating cells than in resting cells even 4 days after stimulation. These results suggest that activation of PKC by IL2 might be different from the direct activation of PKC by TPA and that a specific activation pathway, at least kinetically distinct from the classical phosphatidyl inositol diphosphate degradation by phospholipase C, might be involved during IL2 stimulation of T lymphocytes through high-affinity IL2 receptors.

Antigens, Differentiation, T-Lymphocyte

Vesicular stomatitis virus produced from infected LSTRA lymphoma cells bear tyrosine protein kinase activity (p56).

Murine LSTRA lymphoma cells contain a very active tyrosine protein kinase of 56 kDa (p56) which is not related to any of the other known tyrosine kinases. In the past the purification and characterization of the p56 have been hampered because of the low amount of this protein in LSTRA membranes. In this study, we have utilized a different approach for purification which consisted of trapping the protein in the membrane of vesicular stomatitis virus. Incubation of the virions with [gamma-32P]ATP resulted in the phosphorylation of p56 on tyrosine residues. Moreover, the phosphopeptide digest profile of vesicular stomatitis virus-p56 was identical to that observed with authentic LSTRA-p56. The p56 from such virions could be resolved from other proteins by two-dimensional gels, and furthermore, such virions have been used to prepare several antisera directed against the p56.

Amino Acids

Phosphoinositides are not phosphorylated by the very active tyrosine protein kinase from the murine lymphoma LSTRA.

We studied the ability to phosphorylate phosphoinositides by 3 different subcellular preparations, and immunopurified tyrosine protein kinase (TPK) from two murine lymphoma cell lines induced by the Moloney murine leukemia virus: LSTRA with a very active TPK and MBL2 without significant TPK activity. We could not find any difference in the phosphorylation of phosphoinositides by these preparations. The TPK purified with two antibodies which phosphorylate actively tyrosine on exogenous substrate were unable to phosphorylate phosphoinositides.

Animals

Modulation of adenylate cyclase by guanine nucleotides and Kirsten sarcoma virus mediated transformation.

Certain tumour cells contain activated ras genes that code for 21 000 dalton proteins (p21). These proteins associate with the inner face of the plasma membrane and bind guanine nucleotides specifically. In order to determine whether p21s have functions similar to other GTP binding proteins, we investigated the regulation, by guanine nucleotides, of adenylate cyclase (AC) activity in membrane preparations isolated from fibroblasts (C127) transformed by a temperature sensitive mutant of Kirsten sarcoma virus (Ts 371). The degree of AC stimulation by GMP P(NH)P increased when these cells were shifted from the permissive temperature (33 degrees C) to the non-permissive temperature (39 degrees C). This effect was more pronounced at low Mg++ and low GMP P(NH)P concentrations. AC stimulation remained unchanged in rat fibroblasts infected with a temperature sensitive mutant of Rous Sarcoma virus. AC activity was depressed in C127 cells infected with wild type KiMSV. Our data illustrate the feasibility of correlating alterations in the AC system with ras gene expression and using such experimental approaches to elucidate the physiological functions of the p21 proteins.

Adenylyl Cyclases

Acute myeloblastic leukemia with active tyrosine protein kinase.

High level of tyrosine protein kinase activity was found in a membrane fraction isolated from an acute myeloblastic leukemia, out of 24 leukemias of different origin investigated. The major substrate for tyrosine phosphorylation in vitro was a 58 kDA protein (p58). The phosphorylation proceeded actively at 0 degrees C and was strongly stimulated by Mn2+ ions. Comparison by partial proteolysis of the p58 with similar phosphoproteins from a T-lymphoma line (KE37) and from lectin stimulated lymphocytes showed high similarity. The possible role of the tyrosine kinase activity in this leukemia is discussed.

Gastrins

Detection of tyrosine-specific protein kinases with gastrin as exogenous substrate.

Gastrin was recently shown to be phosphorylated on its single tyrosine by the epidermal growth factor (EGF)-stimulated tyrosine protein kinase (TPK). The TPK previously detected in the murine lymphoma (LSTRA) induced by the Moloney murine leukemia virus phosphorylates gastrin, the apparent Km is 65 microM and the maximum rate 1900 pmol/min per mg; the kinase is more efficient with MnCl2 than with MgCl2, is stimulated by NaVO3 and inhibited by ZnCl2. Gastrin phosphorylation is observed only when a TPK is expressed by the cell: extracts of fibroblasts infected with a temperature-sensitive mutant of the Rous sarcoma virus had no gastrin kinase activity when grown at the non-permissive temperature whereas cells grown at the permissive temperature were transformed and disclosed a clear gastrin kinase activity. Gastrin kinases were detected in various transformed cells: human lymphomas, K562 cells, cells from a patient with acute proliferative leukemia, and normal cells: human T and B lymphocytes.

Animals