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S L Reed

Publications and source records attributed to S L Reed.

At least 37 records · Page 2Linked to original sources

Entamoeba histolytica trophozoites induce an inflammatory cytokine response by cultured human cells through the paracrine action of cytolytically released interleukin-1 alpha.

Infection with the protozoan parasite Entamoeba histolytica results in a high mortality worldwide. To initiate infection, E. histolytica trophozoites in the bowel lumen penetrate the epithelium, and cause extensive lysis of host cells. The acute amebic lesions in animal models are characterized by infiltration with inflammatory cells, particularly neutrophils. The acute host response is likely important for determining whether the infection will spread systemically, but little is known regarding the signals which initiate an acute inflammatory response to E. histolytica. In the studies reported herein, we used an in vitro model system to define the proinflammatory signals produced by epithelial and other host cells in response to infection with E. histolytica trophozoites. Coculture of human epithelial and stromal cells and cell lines with trophozoites is shown to increase expression and secretion of an array of chemoattractant and proinflammatory cytokines, including IL-8, GRO alpha, GM-CSF, IL-1 alpha, and IL-6. Moreover, high-level secretion of those cytokines is regulated by the paracrine action of cytolytically released IL-1 alpha. A second mechanism for trophozoite-induced IL-8 production involves trophozoite-target cell contact via a galactose-inhibitable amebic adherence protein, and appears to be mediated through increased intracellular calcium levels. These studies define novel mechanisms through which acute inflammation can be initiated in the host in response to a cytolytic pathogen, such as E. histolytica.

Animals↗

Cutaneous Acanthamoeba infection in the acquired immunodeficiency syndrome: response to multidrug therapy.

Acanthamoeba, a free-living ameba of soil and water, produces the rare infections of granulomatous amebic encephalitis and amebic keratitis. We report a 38-year-old white man with the acquired immunodeficiency syndrome (AIDS) who experienced Acanthamoeba infection that presented as multiple skin nodules without associated encephalitis. Histologic examination revealed necrotizing granulomatous inflammation with numerous amebic organisms that were cultured and identified as Acanthamoeba group 2, probably Acanthamoeba castellani by monoclonal antibodies. Results of in vitro susceptibility testing demonstrated resistance to all six tested drugs. A partial clinical response, however, was obtained with multidrug therapy.

AIDS-Related Opportunistic Infections↗

Expression and characterization of a rac family protein kinase of Entamoeba histolytica.

We previously reported the isolation from Entamoeba histolytica of a novel rac family protein kinase gene, termed Ehrac1, for "related to cAMP-dependent protein kinases and protein kinase Cs". To study the function and properties of this kinase gene further, we fused the full-length coding region and the truncated catalytic domain of the Ehrac1 gene in frame with the gene encoding glutathione S-transferase in the pGEX-KG vector and expressed the fusion in Escherichia coli. The thrombin-cleaved and uncleaved fusion proteins, GST-Ehrac1 and GST-Ehrac1-c (catalytic domain), were purified and found to exhibit similar protein kinase activities. The Ehrac1 fusion kinase was found to phosphorylate serine/threonine residues exclusively in vitro. The preferred substrate for the enzyme was histone H1 with a Km of approx. 14 microM. Histone H3 and kemptide were phosphorylated at about half the rate of histone H1. Protamine, enolase, bovine serum albumin, and poly (Glu:Tyr) were not substrates for the enzyme. The protein kinase activity was higher in the presence of Mn2+ than Mg2+. Neither cAMP, Ca2+, nor Ca2+/calmodulin stimulated enzyme activity. The pH optimum of the enzyme was 7.5. The Ehrac1 kinase can utilize GTP as well as ATP as a phosphate donor with an apparent Km of 80 microM. Enzyme activity was inhibited 30-40% by a crude cAMP-dependent protein kinase inhibitor from rabbit and by thiol reagents. The expression and purification of enzymatically active Ehrac1 protein kinase should allow further analysis of the regulation and signal transduction pathways of E. histolytica.

Animals↗

Characterization of monoclonal antibodies to conserved antigens of Entamoeba histolytica and E. dispar and development of a stool ELISA.

Eight murine monoclonal antibodies (MAbs) were generated against Entamoeba histolytica NIH:200. All MAbs reacted with three axenic strains of E. histolytica, NIH:200, HM-1: IMMS, and SAW 1734R clAR, but not with enteric bacteria or Giardia lamblia. Five of the MAbs reacted with low-molecular-weight, periodate-sensitive antigens of 14-21 kD, while one (AB31) reacted with high-molecular-weight, 90 to 200-kD protein determinants. MAb PC14 appeared to be specific for antigen in its native state. Another MAb (BB12) agglutinated live trophozoites and caused membrane fluorescence in contrast to the five other MAbs tested. Although BB12 reacted with the same 14 to 21-kD band on Western blot as AC55, the latter reacted with different cytoplasmic epitopes. All the MAbs reacted to five pathogenic (E. histolytica) and six nonpathogenic (E. dispar) clinical isolates. These MAbs may be helpful for studying conserved antigens of E. histolytica and were used to develop a sandwich ELISA for the diagnosis of intestinal amoebiasis. The assay was sensitive to 60 ng of E. histolytica antigen. A comparative study of microscopic examination of stool samples and the sandwich ELISA was conducted on 102 samples from patients with gastrointestinal complaints. The ELISA could detect all microscopically positive samples with a sensitivity of 100% and specificity of 93%. A sandwich ELISA using a monoclonal antibody to conserved antigens of E. histolytica has the potential to be a reliable method for the diagnosis of intestinal amoebiasis.

Agglutination Tests↗

Serologic reactivity to purified recombinant and native 29-kilodalton peripheral membrane protein of pathogenic Entamoeba histolytica.

The 29-kDa peripheral membrane protein of Entamoeba histolytica has recently been demonstrated to have epitopes on pathogenic clinical isolates which were not detected by monoclonal antibodies on nonpathogenic isolates. To analyze the serological response to this protein, we tested 93 serum specimens (from 33 patients with amebic liver abscess, 7 patients with colitis, 2 patients with ameboma, 18 individuals harboring a nonpathogenic zymodeme strain, 10 healthy Mexican migrant workers, and 23 healthy controls) by enzyme-linked immunosorbent assay (ELISA) using immunoaffinity-purified native or recombinant protein. When tested by ELISA with the native antigen, 79% (26 of 33) of the serum specimens from patients with amebic liver abscess, 4 of 9 serum specimens from symptomatic patients with colitis or ameboma, and serum from one migrant worker were positive. None of the 18 subjects harboring a nonpathogenic strain or 23 control individuals were seropositive to the native antigen (sensitivity, 71%; specificity, 98%). Of 30 serum specimens from patients with amebic liver abscess tested with recombinant antigen, 27 were seropositive (90%). In addition, six patients with colitis or ameboma and two individuals who harbored a nonpathogenic strain were seropositive to the recombinant antigen. One healthy Mexican migrant worker tested positive by both ELISAs (sensitivity, 87%; specificity, 94%). Immunoblotting of 51 serum specimens to sodium dodecyl sulfate-denatured native 29-kDa protein was less sensitive (65%) than ELISA in detecting serum antibodies to the antigen. These results suggest a similar antibody response to native and recombinant antigens (r = 0.86) and support the potential utility of a quantitative assay with defined recombinant antigen for the serodiagnosis of invasive amebiasis in nonendemic areas in conjunction with other diagnostic tools.

Amebiasis↗

Cheerios in the chest.

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Adenocarcinoma, Bronchiolo-Alveolar↗

Amebiasis: an update.

Although amebiasis is often considered a disease of developing countries, it is an important public health problem throughout the world. At least 90% of infected patients are asymptomatic, but the remainder may present with clinical syndromes ranging from frank dysentery to abscesses of the liver, lungs, or brain. The most common challenge for physicians in developed countries is treating infection due to Entamoeba histolytica in an asymptomatic patient or determining its clinical significance in a patient with AIDS who has diarrhea. In light of recent improvements in diagnosis and therapy, the protean clinical manifestations of amebic infection are reviewed along with the indications for therapy. Advances in research that may directly affect our management of amebiasis in the near future are highlighted.

Amebiasis↗

Molecular and cellular characterization of the 29-kilodalton peripheral membrane protein of Entamoeba histolytica: differentiation between pathogenic and nonpathogenic isolates.

To further characterize the 29-kDa surface antigen of Entamoeba histolytica, we analyzed the complete nucleotide sequence and compared the immunoreactivity of this antigen in pathogenic and nonpathogenic strains. Five cDNA clones (one 1.0-kb full-length clone, designated p13, and four partial-length clones) encoding the antigen were analyzed for allelic variation. Comparison of the nucleotide sequences revealed several single-nucleotide substitutions in all five cDNAs, two of which resulted in amino acid differences. Localization of the antigen to the amebic surface in a previous report (B. E. Torian, B. M. Flores, V. L. Stroeher, F. S. Hagen, and W. E. Stamm, Proc. Natl. Acad. Sci. USA 87:6358-6362, 1990) was corroborated by transmission electron microscopy showing colloidal gold particles on the surface of the trophozoites. Computer analysis of the deduced amino acid sequence predicted that the protein encoded by p13 was a hydrophilic peripheral membrane protein, and these data were confirmed by a Triton X-114 membrane extraction showing the presence of the 29-kDa antigen primarily in the aqueous phase of the detergent partition. Monoclonal antibodies to a fusion peptide differentiated between pathogenic and nonpathogenic clinical strains of E. histolytica in immunoblots. Although no immunoreactive epitopes were detected on nonpathogenic strains, Northern (RNA) analysis and DNA-DNA hybridization with a 700-bp cDNA probe demonstrated that mRNA and the gene encoding the 29-kDa surface antigen were present in both pathogenic and nonpathogenic clinical isolates.

Amino Acid Sequence↗

Serodiagnosis of invasive amebiasis using a recombinant Entamoeba histolytica protein.

One hundred eight serum samples from 106 patients were examined by Western blot analysis for the presence of antibodies to a recombinant fusion protein containing the sequence of the newly described serine-rich Entamoeba histolytica protein (SREHP). Among patients with invasive amebiasis from Durban, Republic of South Africa; San Diego, Calif; Mexico City, Mexico; and St Louis, Mo, 53 (82%) of 65 had antibodies to SREHP. In contrast, only one patient (2%) of 43 without acute invasive amebiasis had antibodies to SREHP. The predictive value of a positive test for anti-SREHP antibodies in the detection of acute invasive amebiasis was most marked when analyzed in the patients from Durban, where 11 (92%) of 12 patients who were seropositive for SREHP had acute invasive amebiasis vs 17 (65%) of 26 patients who had a positive serologic diagnosis as determined by agar gel diffusion. The use of a serologic test based on the recombinant SREHP fusion protein may be a useful adjunct to the diagnosis of acute invasive amebiasis in endemic regions.

Amebiasis↗

An immunogenic 30-kDa surface antigen of pathogenic clinical isolates of Entamoeba histolytica.

A 30-kDa surface antigen was identified by Western blots with human immune sera in all 15 isolates of E. histolytica from patients with invasive amebiasis (pathogenic) but not in 15 strains from asymptomatic patients (nonpathogenic). This antigen is highly immunogenic in naturally infected humans and was recognized by sera from 22 patients with invasive disease but not by sera from 13 patients harboring nonpathogenic strains. Its surface location is supported by its differential extraction in the detergent phase of Triton X-114 and by surface immunofluorescence of live trophozoites. Unlike previously described amebic surface antigens, this 30-kDa antigen is undetectable in axenic strains that were originally isolated from patients with invasive disease but have been adapted to grow without bacteria. Affinity-purified antibody to the 30-kDa antigen did not promote lysis of complement-resistant pathogenic strains. This surface antigen may be diagnostically important in the identification of pathogenic clinical isolates.

Amebiasis↗

The 96-kilodalton antigen as an integral membrane protein in pathogenic Entamoeba histolytica: potential differences in pathogenic and nonpathogenic isolates.

A surface antigen (EH-96) of Entamoeba histolytica was demonstrated to be a plasma membrane antigen by immunoprecipitation of metabolically 35S-labeled antigen from live trophozoites, Triton X-114 detergent extracts, and plasma membrane-enriched fractions prepared by concanavalin A membrane stabilization and differential centrifugation. In addition, the antigen was localized to the plasma membrane by electron microscopy with colloidal gold. Antigen from E. histolytica strains immunoprecipitated with specific immunoglobulin M (IgM) or IgG2b monoclonal antibody was identical by one-dimensional peptide mapping with N-chlorosuccinimide. Additionally, antigen from different axenically cultivated amebae was demonstrated to be identical by N-chlorosuccinimide peptide mapping, as were peptide maps of IgG and IgM monoclonal antibody-purified antigen. The 96-kilodalton (kDa) surface antigen was identified on four axenically cultivated pathogenic isolates and on three polyxenically cultivated pathogenic isolates (zymodeme II) of E. histolytica but was absent or present in lesser quantity on six nonpathogenic polyxenically cultivated isolates. The 96-kDa antigen was detected in liver abscess fluid from four patients with amebic abscesses by enzyme-linked immunosorbent assay (ELISA) and immunoprecipitation. Two-dimensional gel electrophoresis profiles of the 96-kDa antigen purified from abscess material or from polyxenically cultivated trophozoites demonstrated that the antigens were related to the 96-kDa antigen found in axenically cultivated organisms.

Animals↗

Lysis of complement-sensitive Entamoeba histolytica by activated terminal complement components. Initiation of complement activation by an extracellular neutral cysteine proteinase.

Activation of complement by Entamoeba histolytica may be initiated by the extracellular 56-kD neutral cysteine proteinase which cleaves the alpha chain of C3. To determine the relationship between the fluid-phase activation of complement and our observation that only strains isolated from patients with invasive disease are resistant to complement-mediated lysis, we investigated the fate of C3 with recent amebic isolates. When 125I-C3 was incubated with trophozoites in serum, C3 in the fluid phase was cleaved to C3b or C3bi, but the alpha chain of the C3 molecules on the cell surface appeared intact. Since the lysis of nonpathogenic strains takes place in the absence of bound C3b, we demonstrated that this reaction occurs by reactive lysis initiated in the fluid phase: (a) the killing of nonpathogenic strains was enhanced when alternative pathway activation was accelerated by the addition of cobra venom factor; (b) non-pathogenic strains were lysed by purified terminal components; and (c) sera incubated with pathogenic E. histolytica produced passive lysis of chicken erythrocytes. These results demonstrate for the first time that complement-sensitive E. histolytica are lysed by activation of the terminal complement components in the fluid phase where the 56-kD neutral cysteine proteinase cleaves C3, and not by the surface deposition of activated C3.

Animals↗

Cleavage of C3 by a neutral cysteine proteinase of Entamoeba histolytica.

The major secreted proteinase of Entamoeba histolytica, a 56-kDa neutral cysteine proteinase, activates C by cleaving C3. The action of the proteinase is similar to C-derived C3 convertases because it produces a single cleavage of the alpha-chain in a dose- and time-dependent manner and cleaves C3 between residues 78 and 79, only one amino acid residue distal to the natural site acted on by the C3 convertases. C3a generation was detected by RIA. The 105-kDa fragment produced by the cleavage of the alpha-chain was structurally and functionally equivalent to the alpha'-chain of C3b, as demonstrated by susceptibility to the action of factors I and H and participation in the activation of the alternative pathway of C. Activation of C by the 56-kDa neutral cysteine proteinase may play a role in the early inflammatory response in amebic lesions and thus contribute to the pathogenesis of invasive amebiasis.

Amino Acid Sequence↗

Thiol proteinase expression and pathogenicity of Entamoeba histolytica.

Expression of the 56-kilodalton (kDa) neutral thiol proteinase has been shown to correlate with the potential of clinical isolates of Entamoeba histolytica to produce invasive disease. A 56-kDa band was identified by gelatin substrate gel electrophoresis in 10 of 10 isolates from patients with colitis or amebic liver abscesses, but in only 1 of 10 isolates from asymptomatic patients. Pathogenic isolates appear capable of releasing significantly larger quantities of the proteinase, as measured by cleavage of a synthetic peptide substrate, ZRR-AMC (benzyloxy-carbonyl-arginine-arginine-4-amino-7-methylcoumarin). We have also shown that the proteinase is released during the course of clinical invasive amebic disease, as demonstrated by the presence of circulating antibodies detectable by enzyme-linked immunosorbent assay. These studies support the importance of the 56-kDa thiol proteinase in the pathogenesis of invasive amebiasis.

Amebiasis↗

Activation of complement by pathogenic and nonpathogenic Entamoeba histolytica.

Previous studies had demonstrated that strains of Entamoeba histolytica isolated from patients with colitis or amebic liver abscess were resistant to complement-mediated killing, whereas strains from asymptomatic patients were readily lysed by non-immune serum. Both serum-sensitive and serum-resistant strains of E. histolytica depleted complement rapidly as assessed by CH50, C3, and C7, and C5-9 hemolytic activities. Activation of the alternative pathway was important in lysis of nonpathogenic strains, as demonstrated by lysis by NHS (60.9 +/- 15.6%) and NHS + 5 mM EGTA (59.3 +/- 4.5%) as well as by C4-deficient guinea pig serum (72.8 +/- 7.1%) and C2-deficient human serum (64.4 +/- 11.1%), but not by NHS + 5 mM EDTA. Classical pathway activation also occurs as both pathogenic and nonpathogenic strains deplete greater than 98% of C4 activity, although it is not necessary for lysis. Pathogenic strains are not lysed by either the classical or the alternative pathway. These results suggest that pathogenic strains of E. histolytica activate complement but are able to evade an important host defense, complement-mediated lysis.

Animals↗