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Combined Nucleotide and Protein Extractions in Caenorhabditis elegans
Published on: March 17, 2019
Identification, molecular characterization and expression of the gene encoding the epidermal growth factor receptor
Markus Spiliotis1, Antje Kroner, Klaus Brehm
1Institute for Hygiene and Microbiology, University of Würzburg, Josef-Schneider-Strasse 2, D-97080, Würzburg, Germany.
Abstract:
Receptor tyrosine kinases (RTKs) are crucially involved in the development of metazoan organisms and possible mediators of cell-cell communication that occurs between eukaryotic parasites and hosts. We have now cloned and characterized the complete complementary DNA (cDNA) molecule encoding a novel receptor tyrosine kinase, EmER, of the human parasite Echinococcus multilocularis. EmER shared significant amino acid sequence homologies with members of the epidermal growth factor (EGF) receptor family of different phylogenetic origin, exhibited a domain structure which is typical for this group of membrane receptors and contained all catalytically important residues at the corresponding positions. Highest homologies were detected between EmER and a previously identified receptor kinase, SER, from the parasitic trematode Schistosoma mansoni. The EmER encoding gene, emer, spans a chromosomal region of 39 kb and is composed of 23 exons. Structural comparisons indicated that emer and the EGF receptor encoding genes from mammals derive from a common ancestor. DNA/DNA hybridization experiments demonstrated that emer is present as a single copy locus in the parasite. Transcriptional analyses on in vitro cultivated parasite larvae revealed that emer is expressed in both the metacestode and the protoscolex stage, although about 10-fold higher transcription levels were detectable for the protoscolex. Northern blot experiments further indicated that emer is expressed as a single 5.2-kb transcript in parasitic larvae during an infection of the intermediate host. These results suggest an involvement of EmER in echinococcal differentiation processes towards the protoscolex stage during natural infections and provide, for the first time, structural information on an epidermal growth factor receptor-like kinase from a cestode.
Insights
Researchers identified a novel receptor tyrosine kinase, EmER, in the parasite Echinococcus multilocularis. This finding provides insights into parasite-host communication and developmental processes in cestodes.
Area of Science:
- Molecular Biology
- Parasitology
- Biochemistry
Background:
- Receptor tyrosine kinases (RTKs) are vital for metazoan development and host-parasite interactions.
- Understanding RTKs in parasites like Echinococcus multilocularis is crucial for comprehending host-parasite communication.
Purpose of the Study:
- To clone and characterize a novel RTK, EmER, from Echinococcus multilocularis.
- To investigate the structural and evolutionary relationship of EmER to known RTKs.
- To analyze the expression patterns of the EmER gene in different parasite stages.
Main Methods:
- Complementary DNA (cDNA) cloning and sequencing of the EmER gene.
- Amino acid sequence homology analysis and domain structure comparison.
- Gene structure analysis (exons, introns) and chromosomal localization.
- DNA/DNA hybridization for gene copy number determination.
- Transcriptional analysis using Northern blotting and in vitro cultivated larvae.
Main Results:
- A novel RTK, EmER, was identified in Echinococcus multilocularis, sharing homology with the epidermal growth factor (EGF) receptor family.
- The EmER gene (emer) comprises 23 exons and originates from a common ancestor with mammalian EGF receptor genes.
- emer is a single-copy gene expressed in both metacestode and protoscolex stages, with significantly higher transcription in protoscoleces.
- A single 5.2-kb transcript of emer was detected in parasitic larvae.
Conclusions:
- EmER is an EGF receptor-like kinase from a cestode, providing novel structural information.
- The expression pattern suggests EmER plays a role in the differentiation of Echinococcus multilocularis towards the protoscolex stage.
- This study offers insights into the molecular mechanisms of parasite development and host interaction.

