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R Kowal

Publications and source records attributed to R Kowal.

13 recordsLinked to original sources

The arginine finger domain of ExoT contributes to actin cytoskeleton disruption and inhibition of internalization of Pseudomonas aeruginosa by epithelial cells and macrophages.

Pseudomonas aeruginosa, an important nosocomial pathogen of humans, expresses a type III secretion system that is required for virulence. Previous studies demonstrated that the lung-virulent strain PA103 has the capacity to be either cytotoxic or invasive. Analyses of mutants suggest that PA103 delivers a negative regulator of invasion, or anti-internalization factor, to host cells via a type III secretion system. In this work we show that the type III secreted protein ExoT inhibits the internalization of PA103 by polarized epithelial cells (Madin-Darby canine kidney cells) and J774.1 macrophage-like cells. ExoS, which is closely related to ExoT but has additional ADP-ribosylating activity, can substitute for ExoT as an anti-internalization factor. ExoT contains a signature arginine finger domain found in GTPase-activating proteins. Mutation of the conserved arginine in ExoT diminished its anti-internalization activity and altered its ability to disrupt the actin cytoskeleton. Cell fractionation experiments showed that ExoT is translocated into host cells and that mutation of the arginine finger did not disrupt translocation. In a mouse model of acute pneumonia, PA103DeltaUDeltaT reached the lungs as efficiently as PA103DeltaU but showed reduced colonization of the liver. This finding suggests that the ability to resist internalization may be important for virulence in vivo.

ADP Ribose Transferases↗

Miniature field-flow fractionation system for analysis of blood cells.

Field-flow fractionation is an analytical tool that has been historically used to separate species, ranging from molecules to particles or cells several micrometers in size. This technology can effect separation by size, density, charge, or other physical properties, depending on the configuration of the field-flow system. We have developed a miniature field-flow system to analyze cell populations in a small, 125-microns-deep channel 19 cm long. Gravity is used as the primary field to effect separation, and cell analysis is performed in < 20 min. Erythrocytes elute as a single peak when diluted blood is fractionated in this system. Analysis of blood samples from several donors (normal controls and patients with sickle cell anemia) yields erythrocyte peaks with slightly different mobilities (elution times). Peak mobility does not directly correlate with mean cell volume or other standard erythrocyte parameters. Cell density appears to be a key factor in determining cell mobility with this system.

Cell Separation↗

Multianalyte assay system developed for drugs of abuse.

A simple, 10-min immunoassay system has been developed that simultaneously screens for five different classes of drugs of abuse in a urine sample. This system tests for amphetamines, cannabinoids, cocaine metabolites, opiates, and phencyclidine, and each assay has a specific preset cutoff concentration. Accuracy is > 99% for reporting positive or negative results for samples with 200% or 50%, respectively, of the cutoff concentrations of the drugs. Tests of a panel of 96 compounds yielded only three cases of nonspecific reactivity (at a drug concentration of 100 mg/L). Another panel of 12 compounds that could normally be found in urine samples was also evaluated and no interferences were observed. Concordance was > 95% between this system and the comparable automated immunoassays for detecting drugs of abuse. Greater than 98% of GC/MS-confirmed positive samples gave positive results with this assay system.

Autoanalysis↗

Circles with two tandem long terminal repeats are specifically cleaved by pol gene-associated endonuclease from avian sarcoma and leukosis viruses: nucleotide sequences required for site-specific cleavage.

The avian retroviral pol gene-encoded DNA endonuclease (pol-endo) has been shown to selectively cleave the viral long terminal repeat sequences (LTRs) in single-stranded DNA substrates in a region known to be joined to host DNA during integration (G. Duyk, J. Leis, M. Longiaru, and A.M. Skalka, Proc. Natl. Acad. Sci. USA 80:6745-6749, 1983). The preferred sites of cleavage were mapped to the unique U5/U3 junctions found only in covalently closed circular DNA molecules containing two tandem LTRs. The cuts occurred three nucleotides 5' to the axis of symmetry of the 12-of-15-base-pair nearly perfect inverted repeat which marks the LTR junction. Experiments with double-stranded supercoiled DNA substrates revealed a similar specificity for nicking. Also, the endonuclease associated with the pol cleavage product, pp32, has the same specificity as the alpha beta form. The limits of sequence required for site-selective cleavage near the U5/U3 junction were established with single-stranded DNA substrates. A domain no larger than 44 base pairs allowed site-selective cleavage in each strand in vitro. Recognition of either strand appeared to be independent of the other, and in each case, the critical sequence was asymmetrically distributed with respect to the U5/U3 junction. The predominant contribution was from the U5 domain; this is consistent with its conservation in the LTR sequences of a number of avian sarcoma and leukosis viruses.

Alpharetrovirus↗

Lymphokines inhibit macrophage RNA synthesis.

The effects of lymphokine (LK) preparations on the incorporation of [3H]uridine into macrophage RNA were investigated. Supernatants from murine spleen cells activated in vitro by alloantigens or Con A, and shown to contain macrophage-activating factor (MAF), were used as the source of LK. It was observed that such LK preparations contain factor(s) causing a profound inhibition of [3H]uridine incorporation into the RNA of proteose-peptone-elicited peritoneal macrophages. Such RNA-labeling inhibitory factor (RIF) was absent in control supernatants from nonstimulated cultures, and showed activation curves similar to that of MAF. RIF activity was not due to altered permeability of macrophages to [3H]uridine nor to the changes in the specific activity of the pool of RNA precursors, but rather reflected an altered metabolism of RNA. The inhibition of RNA synthesis was dependent upon the presence of nanogram amounts of LPS as a costimulator. Moreover, the response to RIF appeared to be genetically controlled since macrophages from C3H/HeJ mice were not affected by RIF, while C3H/HeN mice were fully responsive. In parallel cultures of macrophages, LK were also tested for their MAF activity, and a strong similarity between the biological conditions in which MAF and RIF activities were expressed could be demonstrated. The assay for RIF provides a new and convenient parameter for measuring macrophage-sensitive LK activity that might be very useful for monitoring purification or for screening of T-cell hybridoma supernatants.

Animals↗

Isolation and identification of a human serum fibronectin-like protein elevated during malignant disease.

A human DNA-binding protein, designated MAD-2, has recently been found to be elevated in the serum from patients with malignant diseases. MAD-2 has been purified approximately 500-fold from peritoneal and pleural fluids collected from cancer patients. Immunodiffusion studies have indicated that MAD-2 is immunochemically identical to human plasma fibronectin. The purified material has been resolved by sodium dodecyl sulfate gel electrophoresis into two major protein chains with molecular weights in the range of 200,000 to 210,000 in either the presence or absence of disulfide bond-reducing agents. These results suggest that MAD-2 is a fibronectin fragment which has been generated through proteolysis. A quantitative assay system capable of detecting ng quantities of MAD-2 has been developed and used to verify the presence of elevated MAD-2 levels in DNA-binding protein fractions isolated from the serum of individuals with malignant diseases.

Electrophoresis, Polyacrylamide Gel↗

Detection of a human serum DNA-binding protein associated with malignant disease.

Human serum DNA-binding proteins were fractionated by DNA-cellulose affinity chromatography. Electrophoretic resolution of these protein fractions allowed the direct comparison of DNA-binding proteins from pools of serum from cancer patients, fetuses, or normal humans. A protein band detected in the fraction eluted by 0.6 M NaCl was elevated in pooled cancer serum, compared to normal or fetal serum. This malignant disease-associated DNA-binding protein (MAD-2) did not react with a variety of antisera directed against specific human serum proteins, blood components, or tumor markers. A chromatography-electrophoresis assay system for MAD-2 that allows the simultaneous determination of 20-30 serum samples was developed. This assay system was used for a preliminary clinical study, which revealed elevated MAD-2 levels in sera from pregnant women and individuals with various carcinomas, compared to levels in sera obtained from normal individuals, patients with nonmalignant diseases, or fetal cord samples.

Blood Proteins↗