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E Orozco

Publications and source records attributed to E Orozco.

At least 19 recordsLinked to original sources

Primary sequences of two P-glycoprotein genes of Entamoeba histolytica.

Two P-glycoprotein genes (EhPgp1 and EhPgp2) from the protozoan parasite Entamoeba histolytica were sequenced from a genomic library made with the DNA of an emetine-resistant ameba mutant, which overexpresses mRNAs homologous to segments of the human mdr1 (P-glycoprotein) gene. The open reading frames for EhPgp1 and EhPgp2 were 1302 and 1310 amino acids long, respectively, and showed a 67% positional identity with each other and 41% and 40% positional identities, respectively, with human mdr1 gene. Within each ameba P-glycoprotein were the ATP-binding sites found twice in eukaryotic P-glycoproteins and once in prokaryotic transport proteins. Hydropathy plots of the ameba P-glycoproteins were nearly superimposable on that of the human mdr 1, showing 2 homologous halves, each containing an ATP-binding site and 6 hydrophobic transmembrane domains that form the putative channel. A phylogenetic tree showed that the Entamoeba P-glycoproteins are more related to the human and mouse P-glycoproteins than to the Plasmodium and Leishmania P-glycoproteins. Also identified in the E. histolytica genomic library were 2 P-glycoprotein pseudogenes, each with a frame shift and stop codons in identical places within the amino ATP-binding site. In conclusion, the 2 E. histolytica P-glycoproteins encoded by the EhPgp1 and EhPgp2 genes are similar in structure to the mammalian P-glycoproteins and so may be involved in energy-dependent drug efflux by this human parasite.

ATP Binding Cassette Transporter, Subfamily B, Mem

A rapid and sensitive method for HPLC cholesterol determination in bile.

A relatively little time consuming simple method based on the treatment of bile with cholesterol oxidase and subsequent high performance liquid chromatography measurement of the 3-ketocholesterol produced in order to determine the level of the cholesterol concentration is described. The method avoids bilirubin interferences, has high reproducibility and recovery assays give 100% values. It is highly sensitive and suitable for use in the determination of cholesterol concentrations in bile and other bilirubin containing biological fluids.

Animals

Neutral proteinase activities in different strains and clones of Entamoeba histolytica. Correlation with virulence.

Although several factors are involved in the invasive behavior of E. histolytica, proteinases seem to play a key role. Different proteinases have been found in virulent trophozoites of this parasite. Cytosols of clones A, 32-1 462-1 and L-6 of E. histolytica exhibiting various degrees of virulence were used to study the activity of trypsin-like, plasminogen activator and cathepsin B neutral proteinases with specific synthetic oligopeptides. Cathepsin-B like activity showed the highest values in highly virulent clone A, which is derived from virulent strain HM1:IMSS. On the contrary, non virulent clones had very low activity. Clone L-6, a non virulent subclone of strain HM1:IMSS, retained some cathepsin B-like activity. Trypsin-like and plasminogen activator assays revealed low activity and no differences between virulent and non-virulent clones were found. It is concluded that the Arg-Arg-thiol proteinase (Cathepsin B-like) is a good virulence marker.

Amino Acid Sequence

Purification and functional characterization of the 112 kDa adhesin of Entamoeba histolytica.

The 112 kDa adhesin of E. histolytica is directly involved in the cytopathogenic activity of the parasite. We describe here the purification of the 112 kDa protein by electroelution and immunoaffinity chromatography using a monoclonal antibody against the adhesin. Two proteins of 70 and 50 kDa were eluted from the immunoaffinity column along with the 112 kDa adhesin. The three proteins were recognized by monospecific polyclonal antibodies against the adhesin. The same peptides (72 and 56 kDa) were also observed after incubation of the purified intact adhesin in diethylamine buffer. Proteins of 112 and 72 kDa were found to have protease activity, evidenced by their ability to degrade gelatin. Our results indicate that the 112 kDa adhesin was specifically broken down into two polypeptides of 50-56 and 70-72 kDa. The significance of this in vivo is as yet unclear. The adhesin has proteolytic activity, which is retained in the 70-72 kDa polypeptide but not in the 50-56 kDa one.

Animals

Use of polymerase chain reaction and nonradioactive DNA probes to diagnose Entamoeba histolytica in clinical samples.

E. histolytica parasites in Mexican children's stools were identified and typed as pathogenic or non-pathogenic using the polymerase chain reaction (PCR) and nonradioactive probes. PCRs were performed with primers specific for 145 base pair (bp) pathogenic or 133 bp non-pathogenic DNA sequences, which are highly repeated in E. histolytica parasites with pathogenic or non-pathogenic isoenzyme patterns, respectively. Dot-blotted PCR products were identified with a horseradish peroxidase-conjugated oligonucleotide probe specific for either the 145 bp pathogenic or 133 bp non-pathogenic sequences. The PCR and the 145 bp pathogenic probe correctly identified eight cultures with pathogenic isoenzyme types and none of nine cultures with non-pathogenic isoenzyme. The PCR and 133 bp non-pathogenic probe identified all of the non-pathogenic cultures, none of the axenized pathogenic cultures, and three of five xenic cultures with pathogenic isoenzymes. The two probes together identified all 49 stools containing E. histolytica by light microscopy (sensitivity = 1.0), which represented the entire set of the E. histolytica-positive stools diagnosed at the Hospital Infantil over a 10 week period. Most patient isolates were positive with both 145 bp pathogenic and 133 bp non-pathogenic probes, suggesting that these children, 60% of whom were dysenteric, are infected with mixed populations of amebas.

Animals

Improved molecular karyotype of Entamoeba histolytica.

Different electrophoretic conditions were used to improve the molecular karyotype of Entamoeba histolytica clone L6 derived from the heterogeneous strain HM1:IMSS. Eleven to 17 bands ranging between 0.3 and over 3 megabases (Mb) were resolved by transverse alternating field electrophoresis (TAFE). Amebic chromosomes presented similar pattern when they were TAFE separated at 72, 90 or 120 h running time, but resolution of the bands was increased at 90 h, and the best electrophoretic pattern was obtained at 120 h. Bal 31 digestion of DNA in the plugs suggested that most of the bands are lineal molecules and that pMD, an amebic DNA fragment, hybridizes with both lineal and nonlineal DNA molecules.

Animals

P-glycoprotein genes of Entamoeba histolytica.

Six different P-glycoprotein gene segments were identified from an emetine-resistant E. histolytica mutant, which overexpresses mRNAs homologous to segments of the human mdr1 (P-glycoprotein) gene. The open reading frames of two completely sequenced genes EhPgp1 and EhPgp2 were 1,302 and 1,310 amino acids long, respectively, and showed a 67% positional identity with each other and 41 and 40% positional identities, respectively, with human mdr1 gene. Within each ameba P-glycoprotein were the ATP-binding sites found twice in eukaryotic P-glycoproteins and once in prokaryotic transport proteins. A phylogenetic tree showed that Entamoeba P-glycoproteins are more related to the human and mouse P-glycoproteins than to the Plasmodium and Leishmania P-glycoproteins. In addition, there were two P-glycoprotein pseudogenes, each with a frame shift and stop codons in identical places within the amino ATP-binding site.

ATP Binding Cassette Transporter, Subfamily B, Mem

Entamoeba histolytica: generation and characterization of hybrid clones.

Transference of DNA to Entamoeba histolytica was carried out by polyethylene glycol fusion of two amebic clones with different phenotypes. Clone C9, strain HM1:IMSS, was the donor. It is emetine-resistant, highly phagocytic and virulent, and grows in soft agar. Clone L6, strain HM1:IMSS, the recipient, is emetine-sensitive, phagocytic, and virulence-deficient, and it does not grow in soft agar. Clones L6 and C9 have shown high stability in their virulence phenotypes since their isolation more than 5 years ago. Before fusion experiments, clone C9 was incubated in 20 micrograms/ml bromodeoxyuridine for 24 hr, and then, irradiated with 310 nm light to complete inactivation. Controls ensured that all irradiated trophozoites died after 24 hr of incubation at 37 degrees C. Irradiated C9 trophozoites were fused with L6 trophozoites, and hybrids were selected by their ability to grow in the presence of emetine. All hybrids, independently generated, grew poorly in soft agar and showed both an intermediate emetine-resistance and rate of phagocytosis. Some of them destroyed efficiently cell monolayers, but interestingly, they showed differences in their ability to produce hepatic abscesses in hamsters.

Animals

High-density lipoprotein subpopulations as substrates for the transfer of cholesteryl esters to very-low-density lipoproteins.

1. Human total HDL (high-density lipoprotein), HDL2 and HDL3 were labelled in vitro by incubation with lipoprotein-deficient serum (LPDS) which contained either [3H]cholesteryl oleate or [14C]cholesterol under different conditions. The lipoproteins were then subfractionated by heparin-Sepharose column chromatography, and three subfractions (A, B and C) were successively eluted from each preparation of HDL, HDL2 and HDL3. When the labelling was done at 37 degrees C for 17 h, the subfractions were homogeneously labelled with [3H]cholesteryl oleate. However, when it was performed for only 30 min at 4 degrees C, the subfractions showed marked differences in the 3H specific radioactivity, which was much higher in the C fractions than in the others. 2. 3H-labelled HDL2 and HDL3 subfractions behaved differently under the precipitant action of heparin-Mn2+; fraction C (the richest in apolipoprotein E) produced the largest amount of radioactive and chemical precipitate. More 3H radioactivity, but not the cholesterol, was precipitated from HDL2 or HDL3 by the reagent, demonstrating that 3H-labelled HDL2 and HDL3 behave like their fraction C, which becomes labelled to the highest specific radioactivity despite having the smallest mass. 3. The incubation of 3H-labelled HDL subfractions with human LPDS and very-low-density lipoprotein (VLDL) at 37 degrees C increased the quantity of 3H radioactivity that was precipitated, in proportion to the amount of VLDL present in the media. These changes were attributable to the action of cholesterol ester transfer protein, since they did not occur at 4 degrees C or when human LPDS was replaced with rat LPDS. 4. Kinetics of the transfer of HDL [3H]cholesteryl oleate to VLDL showed a greater apparent Vmax for fractions A than for fractions B from either HDL2 or HDL3, whereas the apparent Km values were very similar, which suggest that this transfer process is influenced by the apoprotein composition of the donor lipoprotein.

Animals

Emetine-resistant mutants of Entamoeba histolytica overexpress mRNAs for multidrug resistance.

We report here the identification of multiple 344-bp segments of amoeba DNA similar to the human multidrug resistance (mdr) gene using primers to conserved regions of the P-glycoprotein and the polymerase chain reaction (PCR). The amino acid sequences of amoeba mdr-like PCR products were 46-97% identical to each other, 46-51% identical to human mdr1 sequences, and 30-35% identical with Plasmodium falciparum mdr-like sequences. On Northern blots, the mdr-like PCR products identified amoeba mRNAs 4.5-5 kb long, similar to the 5-kb mRNAs reported for the mammalian mdr gene. These mdr-like mRNAs were increased at least 7 times in emetine-resistant mutant clone C2 amoebae vs. wild-type clone A parasites. Furthermore, the expression of the mdr-like mRNAs was increased 3-4 times when clone C2 mutants were grown under drug pressure vs. the same parasites grown without emetine. In contrast, the number of genomic copies of the mdr-like DNA segments was not increased in the mutant clone C2 vs. the wild-type clone A amoebae, and no rearrangements of the mdr-like DNA segments by the mutant were identified on Southern blots. In conclusion, there appears to be a family of mdr-like genes in Entamoeba histolytica, which may be involved in drug resistance by the parasite because they are overexpressed in drug-resistant mutants.

ATP Binding Cassette Transporter, Subfamily B, Mem

Entamoeba histolytica: physiology of multidrug resistance.

Cross-resistance to unrelated drugs has been previously observed in multidrug-resistant carcinoma cells and the goal of this work was to determine whether a similar mechanism existed in Entamoeba histolytica. An emetine and a colchicine-resistant clone, C2(90) (IC50 = 62 microM, and 1.5 mM, respectively), and the parental clone, A (IC50 = 5 microM and 1 mM, respectively), were analyzed for resistance to other drugs and for the effect of verapamil. Both clones, C2(90) and A, exhibited similar resistance to both daunomycin (IC50 = 50 microM) and actinomycin D (IC50 = 13 nM). In the presence of verapamil, the IC50 for emetine was reduced to 0.5 microM, while the IC50 for colchicine was reduced to 0.3 mM. These results demonstrate that verapamil reverses both emetine and colchicine resistance in the mutant C2(90). In uptake experiments with [3H]emetine, drug accumulation was lower in resistant trophozoites. However, in the presence of verapamil, drug accumulation was increased in clone C2(90) to a level close to that of the parental strain, clone A. These results are consistent with observations made using malaria and multidrug-resistant tumor cells and suggest that a P-glycoprotein-like molecule may play a role in drug resistance in E. histolytica.

Animals

Entamoeba histolytica: correlation of the cytopathic effect of virulent trophozoites with secretion of a cysteine proteinase.

Work from several laboratories suggests a correlation between expression of cysteine proteinase activity and the cytopathic effect of virulent HM1 strain Entamoeba histolytica trophozoites on cultured cell monolayers. Consistent with this relationship, we find that L-6 trophozoites, mutants cloned from the HM1 parent strain, are deficient in both proteinase expression and cytopathic effect. Three other clones, with proteinase expression equal to or greater than that of the HM1 strain, express the cytopathic effect. Furthermore, a nontoxic specific proteinase inhibitor, Z-phenylalanyl-alanyl-CH2F, inhibits the cytopathic effect of live trophozoites in a dose-dependent manner. These results support the hypothesis that expression and release of the cysteine proteinase is an important factor in producing the cytopathic effect, presumably by its degradation of cell anchoring proteins.

Animals

Non-pathogenic Entamoeba histolytica: functional and biochemical characterization of a monoxenic strain.

We have cultured under monoxenic conditions and characterized an Entamoeba histolytica clone, MAV-I CINVESTAV (MAV-I), obtained from feces from an asymptomatic carrier. The clone shows the non-pathogenic E. histolytica zymodeme type I, which did not change through the process of monoxenization. Clone MAV-I was non-pathogenic in both in vivo and in vitro tests, and it did not have a functional 112-kDa adhesin. As far as we know, this is the first non-pathogenic monoxenic strain reported. Clone A (strain HM1:IMSS), a highly virulent clone with pathogenic zymodeme type II, and which has the 112-kDa adhesin, was used as a control. Protein patterns from both clones were almost identical in one-dimensional gels. In two-dimensional gels, differences in high-molecular-weight proteins were detected. Clone MAV-I adhered and phagocytosed only 12% of the red blood cells adhered and phagocytosed by clone A. MAV-I trophozoites did not destroy cell culture monolayers and did not produce hepatic abscesses in hamsters. They also showed deficiency in protease activity. The absence of virulence in clone MAV-I correlated directly with the absence of a functional 112-kDa adhesion, supporting the role that this protein plays in virulence.

Animals

[Antigens specific to pre-cysts and in vivo chitin synthetase activity in Entamoeba invadens].

In this paper we studied the transformation of a trophozoite into a cyst in Entamoeba, using E. invadens as a model. We had the following objectives: a) identification of precyst-specific proteins (P), by a monoclonal antibody against E. invadens and heterologous polyclonal antibodies against cellular (165) fractions of Mucar rouxii, which are chitin synthetase activity rich; and b) in vivo determination of the time required for the expression of activity of the chitin synthetase during encystment. We found P markers which are not found in either trophozoites nor cysts. Monoclonal F507 antibody recognized a 33 kDa protein in P and the polyclonal anti-16S antibodies reacted with a 90 kDa protein to P. Even though the 33 and 90 kDa proteins have a different molecular weight from the chitin synthetase described in fungi (57 kDa and 65 kDa) and yeasts (63 kDa), we conclude that these proteins are specific to P and that the 90 kDa one shares epitopes with chitosomal fractions of M. rouxii. Also, the mayor accumulation of alkali-resistant material, sensitive to chitinase, occurred during the formation of P, between 40 and 50 hours post incubation, during encystment. One may conclude that chitin polymers are synthesized during the P phase.

Animals

Emetine resistant mutants of Entamoeba histolytica overexpress mRNAs for multidrug resistance.

Although drug therapy is critical for control of amoebiasis, little is known about mechanisms of drug resistance by E. histolytica parasites. Here we tested the hypothesis that multidrug resistant (mdr) amoeba mutants, similar to mdr tumor cells, are drug resistant based upon overexpression of a P-glycoprotein pump that effluxes drugs from the cells. Using primers to conserved regions of the human P-glycoprotein and the polymerase chain reaction (PCR), we identified multiple 344 base par segments of amoeba DNA similar to the mammalian P glycoprotein. The amino acid sequences of amoeba mdr-like PCR products were from 53 to 97 identical with each other, 55 to identical to human mdr1 sequences, and 41-44% identical with P. falciparum mdr-like sequences. On northern blots, the mdr-like PCR products identified amoeba mRNAs 4.5-5 kilobases long, similar to the 5 kilobase mRNAs reported for the mammalian mdr gene. These mRNAs were increased at least seven times in emetine resistant mutant clone C2 amoebae versus wild-type clone A parasites. Further, the expression of the mdr-like mRNAs was increased three to four times when clone C2 mutants were grown under drug pressure versus the same parasites grown without emetine. In contrast, the number of genomic copies of the mdr-like DNA segments was not increased in the mutant clone C2 versus the wild-type clone A amoebae, and no rearrangements of the mdr-like DNA segments by the mutant were identified on Southern blots. In conclusion there appears to be a family of mdr-like genes in E. histolytica, which may be involved in drug resistance by the parasite.

ATP Binding Cassette Transporter, Subfamily B, Mem