PubMed HealthSearch

Biomedical subjects

C Royer

Publications and source records attributed to C Royer.

9 recordsLinked to original sources

Role of protein--protein interactions in the regulation of transcription by trp repressor investigated by fluorescence spectroscopy.

In the present work, we have characterized the protein--protein interactions in the trp repressor (TR) from Escherichia coli using fluorescence spectroscopy. The steady-state and time-resolved fluorescence anisotropy of repressor labeled with 5-(dimethylamino)naphthalene-1-sulfonamide (DNS) was used to monitor subunit equilibria in the absence and presence of corepressor. In the absence of tryptophan, the repressor is in equilibrium between tetramers and dimers in the concentration range studied (approximately 0.04-40 microM in dimer). Binding of corepressor resulted in a marked destabilization of the tetramer. The beginning of a dimer-monomer dissociation transition was observed by monitoring the decrease in the intrinsic tryptophan emission energy upon dilution below 0.1 microM in dimer, indicating an upper limit for the dimer-dissociation constant near 1 nM. DNA titrations with a 26 base pair sequence containing the trp EDCBA operator performed in the absence and presence of the corepressor are consistent with a 1:1 dimer/operator stoichiometry in the presence of tryptophan, while the aporepressor binds with TR dimer/DNA stoichiometries greater than one and which depend upon both the concentration of protein and that of the operator. Using the multiple observable parameters available in fluorescence, we have thus carried out a thorough investigation of the coupled equilibria in this bacterial repressor. Our results are consistent with a physiologically relevant thermodynamic role for tetramerization in the regulatory function of the trp repressor. The present results which have brought to light novel protein--protein interactions in the trp repressor system indicate that fluorescence spectroscopic methods could prove quite useful in the study of the role of protein--protein interactions in eukaryotic systems as well.

Base Sequence

Primary cultures of endothelial cells from the human liver sinusoid are permissive for human immunodeficiency virus type 1.

Human endothelial cells isolated from hepatic sinusoids were infected in vitro with human immunodeficiency virus type 1 (HIV-1). An early sign of infection occurring in the culture was the formation of multinucleated cells. By double-labeling immunofluorescence, 5-15% of the cells recognized as endothelial cells owing to the presence of von Willebrand factor were found to contain HIV p24 and gp120 antigens after 2 weeks. Reverse transcriptase activity was released into the medium, and different steps in the process of viral budding were observed by electron microscopy. The virus produced by the endothelial cells was found to be infectious for CEM cells, a human T-cell line. CD4 molecules are present at the surface of the endothelial cells, as demonstrated by immunogold-silver staining and backscattered electron imaging. Treatment with an anti-CD4 antibody abolished productive infection of the sinusoidal endothelial cells. The possibility that endothelial cells of the liver sinusoid are infected in vivo with HIV remains to be clearly shown.

CD4 Antigens

Phagocytosis of nanoparticles by human immunodeficiency virus (HIV)-infected macrophages: a possibility for antiviral drug targeting.

Human monocytes/macrophages (MO/MAC) were isolated from peripheral blood and cultivated on hydrophobic Teflon membranes. This culture system is suitable for HIV infection of MO/MAC in vitro. After transfer into 24-well plates the mature macrophages (infected or uninfected) were used for measurements of phagocytosis. The uptake of different, radioactively labeled nanoparticles (NP) made of polyalkylcyanoacrylate, polymethylmethacrylate (PMMA), and human serum albumin (HSA) by the macrophages was determined. In addition, the influence on phagocytosis of size and composition, concentration, and surface of the NP was studied. Further, macrophages of different state of activation were tested. NP made of polyhexylcyanoacrylate (PHCA) or human serum albumin with a diameter of about 200 nm were found most useful for targeting antiviral substances such as azidotymidine to macrophages. Cells infected in vitro with HIV-1D117/III, a monocytotropic HIV isolate from a perinatally infected child, possessed an even higher phagocytotic activity than noninfected cells. Macrophages isolated from HIV-infected patients also showed good incorporation of NP. Thus, the concept of a specific targeting of antiviral substances to macrophages in HIV-infected individuals appears quite promising.

Antiviral Agents

Permissivity of primary cultures of human Kupffer cells for HIV-1.

Kupffer cells (liver macrophages) represent the largest reservoir of fixed macrophages in the body. Accordingly, we have undertaken a study to evaluate their susceptibility to human immunodeficiency virus type 1 (HIV-1). Five-day-old primary cultures of Kupffer cells (KC) were infected with HIV-1, and as the infection progressed, syncytia appeared. Within the cells, viral proteins were detected by immunofluorescence using monoclonal antibodies directed against gp120 and p24. Electron microscopic examinations revealed the presence of typical Lentivirinae particles. The particles released from KC in the extracellular medium showed reverse transcriptase activity and p24 antigen; they could infect lymphocytic cells and were neutralized by a HIV+ patient's serum or an anti-gp120 monoclonal antibody. Our results thus demonstrate that the interaction of HIV-1 with KC in vitro leads to a productive infection. They suggest that the KC may be involved in the pathogenesis of HIV-1 infection and may (i) participate in the transmission of the infection to the peripheral blood cells, (ii) play a role in the depletion of uninfected CD4+ cells.

Acquired Immunodeficiency Syndrome

Functional and metabolic activity of polymorphonuclear leukocytes from patients with adult respiratory distress syndrome: results of a randomized double-blind placebo-controlled study on the activity of prostaglandin E1.

Indirect and experimental evidence suggests that polymorphonuclear leukocytes, responding to an activating signal presumably related to the complement cascade activation, are involved in the pathogenesis of the adult respiratory distress syndrome (ARDS). The pathologic changes seem to be result of the polymorphonuclear leukocyte margination within the pulmonary capillary vessels and their activation with subsequent release of vasoactive peptides (thromboxane A2, prostaglandin E2) and toxic intracellular compounds. This study confirms that adherence, chemotaxis, and chemiluminescence are increased in polymorphonuclear leukocytes from patients with ARDS. Enhanced chemotactic and chemiluminescence capacities are likely specific to ARDS, whereas increased polymorphonuclear leukocyte adherence seems to be nonspecific. If increased polymorphonuclear leukocyte activation is important in the pathogenesis of ARDS, the inhibition of this phenomenon could play a therapeutic role. This double-blind prospective study was undertaken to assess if polymorphonuclear leukocyte activity is inhibited in vivo by the iv administration of prostaglandin E1 (PGE1) in patients with ARDS. A continuous infusion of PGE1 at a dose of 30 ng.kg-1.min-1 for 7 days did not modify the functional activity of polymorphonuclear leukocytes in patients with ARDS. Because hemodynamic instability was seen during infusion of this dose of PGE1, an increased dose was not tested. At the dose of PGE1 tested, no significant effect upon the function activity of polymorphonuclear leukocytes in patients with ARDS could be demonstrated.

Adult

Multiplication of human immunodeficiency virus in primary cultures of human Kupffer cells--possible role of liver macrophage infection in the physiopathology of AIDS.

In primary cultures of Kupffer cells obtained from surgical biopsies of human liver by collagenase perfusion followed by centrifugal elutriation and infected with HIV, the virus multiplied abundantly, as attested by the appearance of a reverse transcriptase activity in the medium. Examined by electron microscopy, the cells were found to contain viral particles with typical features of Lentivirinae. Furthermore, the virus could be revealed by immunofluorescence using an HIV+ patient serum. HIV antibodies also neutralized the infectivity of the Kupffer cell-produced virus. Our results demonstrate that the cells constituting the largest fraction of fixed macrophages in the body may be infected by HIV, thereby suggesting that the Kupffer cells may play a role in the physiopathology of the disease, namely as a reservoir for the virus.

Acquired Immunodeficiency Syndrome

Morphine stimulates HIV replication in primary cultures of human Kupffer cells.

Intravenous drug abusers represent a high risk group for HIV infection in Europe and North America. Although the use of blood-contaminated needles undoubtedly constitutes the main factor of transmission of the virus, an effect of the drug itself either on the immune system or on virus replication, thus favouring the initiation of the infection, may not be excluded. We have formerly established that primary cultures of human Kupffer cells (KC) are permissive for HIV1. In this paper, we describe the effect of morphine hydrochloride on the multiplication of different isolates of HIV1 in cultured human KC. KC were obtained by dissociation of human liver fragments with collagenase and purified by centrifugal elutriation. Five-day-old KC were infected with HIV1; at different intervals, the production of virus was quantitated by the reverse transcriptase activity associated with the particles present in the culture medium. In primary cultures of KC preincubated for 48 h and maintained in the presence of morphine, the production of viral particles was increased. This enhancing effect was found with 3 different HIV1 isolates. Treatment of KC with morphine prior to infection was not required for the stimulation to take place, which indicated that the enhancing effect was not related to a more efficient adsorption of the virus to the KC plasma membrane. Stimulation of HIV1 production was observed for all the concentrations of morphine used (0.05 to 0.5 mg/ml). These results, if confirmed in vivo, may shed new light on the risk factors related to the intravenous administration of heroin.

Cells, Cultured