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Biomedical subjects

M H Roos

Publications and source records attributed to M H Roos.

At least 19 recordsLinked to original sources

Use of P-glycoprotein gene probes to investigate anthelmintic resistance in Haemonchus contortus and comparison with Onchocerca volvulus.

A P-glycoprotein gene probe from the sheep parasitic nematode Haemonchus contortus was developed and used to analyse restriction fragment length polymorphisms between susceptible isolates and isolates resistant to either benzimidazole; levamisole and benzimidazole; or benzimidazole, ivermectin and closantel. No polymorphism could be correlated with any of the different resistances. A P-glycoprotein gene probe was also isolated from the human nematode parasite Onchocerca volvulus and an Onchocerca-specific PCR was developed.

ATP Binding Cassette Transporter, Subfamily B, Mem

Polymorphic DNA markers in the genome of parasitic nematodes.

Polymorphic molecular markers are being identified to characterize the genomes of parasitic nematodes. The aim is to construct a map with markers evenly spread over the six chromosomes. With such a map, regions can be identified that are under selection pressure when attempts are being made to eradicate worms, be it by drugs, vaccines or genetic resistance in the sheep. Several types of markers have been developed, microsatellites, transposon-associated markers, amplified fragment length polymorphism (AFLP) and expressed sequence tag (EST) markers. Linkage groups can be constructed using several genetic crosses between inbred and drug resistant strains. EST markers will be especially important for comparative mapping with the genome of Caenorhabditis elegans, and therefore localization of the linkage group on a chromosome. It will then be possible to identify functional genes close to markers that have changed allele frequencies under selection pressure and identify the mechanisms of resistance to parasite control.

Animals

Selection for high levamisole resistance in Haemonchus contortus monitored with an egg-hatch assay.

To investigate the characteristics of selection for levamisole resistance in Haemonchus contortus, the consecutive nematode generations of an in vivo selection were monitored with a newly developed egg-hatch assay. The in vivo selection was started with a population not previously exposed to any anthelmintics (SHS). At first, the levamisole resistance progressed gradually in successive nematode generations by treating sheep with increasing doses of levamisole, the initial dose being 1 mg kg-1. Treatment with 5 mg kg-1 levamisole resulted, however, in a steep increase of resistance. The selection was ended after six generations, since a level of 30 mg kg-1 levamisole, which is not far from the toxic level for sheep, was reached. The final population, RHS6, was studied in a controlled test. Treatment of RHS6-infected sheep with 30 mg kg-1 levamisole caused an 80% decrease of faecal egg output, and a reduction of 34% in worm numbers. It was remarkable that only the number of female adults was reduced. RHS6 showed a reduced viability, but a fertility similar to the starting population SHS.

Animals

Characterization of an acetylcholine receptor gene of Haemonchus contortus in relation to levamisole resistance.

The anthelminitic drug levamisole is thought to bind to nicotinic acetylcholine receptors of nematodes. It is possible that resistance to this drug is associated with either a change in binding characteristics or a reduction in the number of nicotinic acetylcholine receptors. Therefore, the molecular mechanism of levamisole resistance in the parasitic nematode Haemonchus contortus was studied by isolating and characterising cDNA clones encoding a putative ligand binding nicotinic acetylcholine receptor subunit, HCAl, of two susceptible and one levamisole resistant population. Hcal is related to unc-38, a nicotinic acetylcholine receptor subunit gene associated with levamisole resistance in Caenorhabditis elegans. Although extensive sequence analyses of hcal sequences revealed polymorphism at amino acid level, no association with levamisole resistance could be detected. Restriction fragment length polymorphism analyses confirmed that, although polymorphism was detected, no selection of a specific allele of hcal has taken place during selection for levamisole resistance in various levamisole resistant populations.

Amino Acid Sequence

Microsatellites of the parasitic nematode Haemonchus contortus: polymorphism and linkage with a direct repeat.

To develop tools to analyse parasitic nematode population structures and the effects of selection pressure on the nematode population, we isolated and characterised 13 microsatellite markers of the nematode Haemonchus contortus. The density of CA/GT microsatellites, once in 575 kb, is lower than in mammals. Although the isolated CA/GT repeats were imperfect, the majority of the microsatellites were polymorphic in one or more populations. An extensive genetic diversity both within and between populations could be established. Two-thirds of the CA/GT microsatellites were followed by a variable number of 128 bp direct repeat elements, HcREP1. HcREP1 is a repetitive element in the H. contortus genome, which is homologous to the repetitive TcREP element in the nematode Trichostrongylus colubriformis.

Animals

The role of drugs in the control of parasitic nematode infections: must we do without?

Parasitic helminths (worms) cause serious infectious diseases in humans and domestic animals. Control of these infections relies mostly on chemotherapeutics (the anthelmintics), but resistance has developed against most of these broad-spectrum drugs in many parasite species. These resistant parasites are being used to elucidate the molecular mechanisms of drug resistance and drug action. This has led to the development of sensitive assays to detect resistant parasites, but this has not delayed the emergence of additional drug resistant parasite populations. Therefore, as development of new drugs by pharmaceutical companies is slow, we may have to be prepared for a time when broad-spectrum drugs are no longer effective, especially against worms of sheep.

Animals

Rhodoquinone and complex II of the electron transport chain in anaerobically functioning eukaryotes.

Many anaerobically functioning eukaryotes have an anaerobic energy metabolism in which fumarate is reduced to succinate. This reduction of fumarate is the opposite reaction to succinate oxidation catalyzed by succinate-ubiquinone oxidoreductase, complex II of the aerobic respiratory chain. Prokaryotes are known to contain two distinct enzyme complexes and distinct quinones, menaquinone and ubiquinone (Q), for the reduction of fumarate and the oxidation of succinate, respectively. Parasitic helminths are also known to contain two different quinones, Q and rhodoquinone (RQ). This report demonstrates that RQ was present in all examined eukaryotes that reduce fumarate during anoxia, not only in parasitic helminths, but also in freshwater snails, mussels, lugworms, and oysters. It was shown that the measured RQ/Q ratio correlated with the importance of fumarate reduction in vivo. This is the first demonstration of the role of RQ in eukaryotes, other than parasitic helminths. Furthermore, throughout the development of the liver fluke Fasciola hepatica, a strong correlation was found between the quinone composition and the type of metabolism: the amount of Q was correlated with the use of the aerobic respiratory chain, and the amount of RQ with the use of fumarate reduction. It can be concluded that RQ is an essential component for fumarate reduction in eukaryotes, in contrast to prokaryotes, which use menaquinone in this process. Analyses of enzyme kinetics, as well as the known differences in primary structures of prokaryotic and eukaryotic complexes that reduce fumarate, support the idea that fumarate-reducing eukaryotes possess an enzyme complex for the reduction of fumarate, structurally related to the succinate dehydrogenase-type complex II, but with the functional characteristics of the prokaryotic fumarate reductases.

Animals

Beta-tubulin genes from the parasitic nematode Haemonchus contortus modulate drug resistance in Caenorhabditis elegans.

Resistance to antimitotic chemotherapeutics in pathogenic nematodes, fungi and mammalian cells is closely associated with structural changes in cytoskeletal beta-tubulin. We investigated the possibility of using the well-characterised free-living nematode Caenorhabditis elegans as a model for studying the mechanism of resistance against benzimidazole (BZ) drugs in the parasitic nematode Haemonchus contortus. Functional analysis of a conserved beta-tubulin isotype (tub-1) mutation near GTP-binding domain II, which is linked to BZ resistance, was carried out in C. elegans by heterologous expression of: (1) parasite BZ-sensitive alleles; (2) BZ-resistant alleles; and (3) in vitro mutagenised beta-tubulin gene constructs. The injected heterologous gene constructs were not only stably maintained, but also expressed as shown by reverse transcriptase-polymerase chain reaction analysis. The degree of BZ drug susceptibility of the transformants was assayed and quantified by incubation with both benomyl and thiabendazol. All H. contortus tub-1 constructs, which encoded Phe at position 200, conferred susceptibility to thiabendazole in BZ-resistant C. elegans ben-1 mutants. In contrast, constructs carrying Tyr200 did not alter the BZ drug phenotype. From these experiments we conclude that: (1) C. elegans can be used as an expression host, since injected parasite genes were biologically active; and (2) the single Phe to Tyr mutation at position 200 in beta-tubulin isotype 1 is the cause of BZ resistance in H. contortus.

Amino Acid Sequence

Differential expression of two succinate dehydrogenase subunit-B genes and a transition in energy metabolism during the development of the parasitic nematode Haemonchus contortus.

The carbohydrate metabolism of free-living and parasitic stages of the sheep nematode Haemonchus contortus was studied, and it was demonstrated that during development a switch occurred from Krebs-cycle activity towards a more fermentative metabolism. During this switch a transition might take place in complex II of the respiratory chain. In the free-living (L3) and early parasitic (XL3) stages, complex II catalyses the oxidation of succinate to fumarate via the Krebs cycle, whereas in adults complex II functions in the reverse reaction, the reduction of fumarate to succinate. L3 and XL3 were shown to already possess a large anaerobic capacity. They survived well in the absence of oxygen or in the presence of cyanide, which completely blocked respiration. Krebs-cycle activity, however, was only partially inhibited by cyanide; the XL3s in particular produced in the presence of cyanide large amounts of propanol, the production of which probably functions as an alternative electron sink. For further investigation of the observed metabolic switch, complex II of the respiratory chain, a key enzyme involved in this switch, was studied. The B subunit of complex II was cloned and sequenced. These clones all showed sequences similar to the B subunit of succinate dehydrogenase from other species, and included the amino-terminal signal sequence for importation into mitochondria. Two genes were identified, types 1 and 2, based on the DNA and amino acid sequences and on the lack of cross-reaction to each other when used as probes on Southern blots. On Northern blots, the two genes showed a different expression pattern during the development of the parasite.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence

Effect of selection for benzimidazole resistance in Haemonchus contortus on beta-tubulin isotype 1 and isotype 2 genes.

In vitro selection for benzimidazole (BZ) resistance in the nematode Haemonchus contortus, a parasite of sheep, suggested the involvement of beta-tubilin genes. Two distinct beta-tubulin isotype classes were analyzed. Selection with stepwise increased concentrations of BZ showed for the first time that the increasing degrees of resistance correlate to a dual phase adaptation mechanism. At lower degrees of developing resistance, selection for a single beta-tubulin isotype 1 variant takes place. Subsequently, at higher degrees of drug resistance, an abrupt elimination of individuals carrying beta-tubulin isotype 2 genes in their genome is seen. To evaluate the in vitro experiments we carried out a survey of resistant field populations and found that in the most resistant population (RNO) apparently the same mechanism had happened.

Animals

Species-specific PCR for the parasitic nematodes Haemonchus contortus and Trichostrongylus colubriformis.

Reliable species determination of gastrointestinal nematode parasites from sheep is usually carried out on third-stage larvae (L3) by visual differentiation. The culturing of L3 takes about 1 week so a reliable method that could use eggs for the determination would accelerate the procedure. We developed a polymerase chain reaction (PCR), using very small amounts of parasite DNA and an oligonucleotide set according to parts of the DNA sequence of a beta-tubulin gene from Haemonchus contortus, that can discriminate H. contortus DNA and Trichostrongylus colubriformis DNA from each other and from several other sheep nematode parasites. This method can be used for every stage of the parasite, including eggs. For the first time a PCR method is reported to discriminate between sheep nematode parasites.

Animals

Molecular aspects of drug resistance in parasitic helminths.

Parasitic helminths (worms) cause serious infectious diseases in humans and animals. As control of these infections relies mostly on chemotherapeutics, the anthelmintics, resistance has developed against most of these drugs in several parasite species. These resistant parasites are being used to elucidate the molecular mechanisms of drug action.

Animals

Molecular characterisation of beta-tubulin genes present in benzimidazole-resistant populations of Haemonchus contortus.

A beta-tubulin isotype 1 gene, gru-1, from a benzimidazole (BZ)-resistant population of the nematode parasite, Haemonchus contortus, was cloned and sequenced. The predicted gene organisation showed 10 exons and 9 introns, one of which was H. contortus specific. Using probes and restriction sites selected from this sequence, restriction maps were constructed from and around beta-tubulin genes of 3 BZ-susceptible and 7 BZ-resistant populations. There was a reduction in beta-tubulin isotype 1 genes to usually one, in BZ-resistant populations. So, our previously reported reduction of beta-tubulin probe-reactive RFLP fragments in resistant populations correlated with the reduction of beta-tubulin isotype 1 genes. The beta-tubulin isotype 1 gene present on the apparently selected fragment and was not always the same, and the geographical origin of the resistant populations indicated independent development rather than geographical spread of the resistant populations. The beta-tubulin genes on the apparently selected fragments were transcribed and processed to mRNA using the nematode-specific trans-spliced leader (SL1). Comparison of the derived amino acid sequence of gru-1, with known sequences from a susceptible population, identified 3 mutations that could be involved in BZ resistance.

Amino Acid Sequence

Molecular analysis of selection for benzimidazole resistance in the sheep parasite Haemonchus contortus.

The molecular basis for the resistance of the sheep parasitic nematode Haemonchus contortus to the benzimidazole (BZ) group of anthelmintics was investigated. Three BZ-susceptible and three resistant populations from different geographical locations were characterized with respect to the egg-hatch assay with thiabendazole (TBZ), mebendazole (MBZ) binding tests and restriction fragment length polymorphism (RFLP) after Southern blotting. Cloned H. contortus alpha- and beta-tubulin genes were used as probes to analyze the RFLPs of genomic DNA prepared from mixtures of infectious larvae (L3) or adults. The susceptible populations showed, with both alpha- and beta-tubulin probes, 2 to 6 different fragments, depending on the restriction enzyme used. The three resistant populations showed as many fragments with the alpha-tubulin probe as the susceptible populations, but when probed with beta-tubulin only 1 or 2 fragments were visible, but always less than in the susceptible populations. An in vitro selection experiment was carried out using a susceptible population that was isolated in the laboratory before BZ came on the market. The results showed that after two selections with increasing amounts of TBZ, the population had become resistant, according to the egg-hatch assay values and MBZ binding assay. Using RFPL, the number of beta-tubulin probe reactive DNA fragments was reduced from 5 to 1. Analysis of the DNA of individual male adults of susceptible populations indicated a heterogeneity among the individual worms regarding the number of beta-tubulin probe reactive fragments (1 to 4) and frequency of the specific fragments. Usually, only one specific fragment (9 kb) was found in the resistant individuals. This 9-kb fragment was already present in some individuals in the susceptible population although it was in combination with other fragments. This would imply that genes conferring BZ resistance were present in H. contortus populations before BZ came on the market, and could explain the fast selection for BZ resistance in the field.

Animals

A feline class II alpha gene with striking similarity to the HLA-DPA pseudogene.

A genomic library was constructed from DNA of a domestic cat and screened with a human HLA-DR alpha probe at low stringency. Several positive clones were isolated, and the DNA sequence of one of these clones was determined. Comparison with class II alpha gene sequences from other species suggested that the feline gene is a DPA homologue (FLA-DPA) showing 84% similarity with HLA-DP alpha 1 in the exon encoding the second domain. The FLA-DPA gene that was isolated is a pseudogene, as two frame-shift mutations are present: one in the exon encoding the second domain, causing premature termination of translation, and one in the exon encoding the transmembrane region. The latter mutation and the further deletion of two codons in the transmembrane exon show a remarkable resemblance to the same exon of the human pseudogene, HLA-DPA2. Hence, both pseudogenes evolved from the same ancestral gene. The inactivation of this DPA gene could therefore have occurred prior to the major mammalian divergence.

Amino Acid Sequence

DNA sequence of the coding region of the HLA-B44 gene.

An HLA-B44 cDNA clone was identified in a cDNA library constructed from an HLA-B44 homozygous cell line. The DNA sequence was determined and was found to contain the complete coding sequence but for (probably) the three N-terminal codons. Comparisons of the derived amino acid sequence with other HLA-A and -B locus amino acid sequences revealed four HLA-B44-specific substitutions including a new polymorphic site. Regions of strong sequence conservation for HLA-B-locus products were found at the nucleotide and amino acid levels.

Amino Acid Sequence