6533b862fe1ef96bd12c62ee

RESEARCH PRODUCT

Identifying and validating the presence of guanine-quadruplexes (G4) within the blood fluke parasite schistosoma mansoni

Angela CasiniVasilis LenisMartin T. SwainRiccardo BonsignoreDaniel BerrarHelen WhitelandKarl F. HoffmannNicolò SantiHolly M Craven

subject

Untranslated regionMaleSchistosoma MansoniMolecular biologyRC955-962Oligonucleotides01 natural sciencesGenomeBiochemistryMiceIntergenic regionMedical ConditionsUntranslated RegionsArctic medicine. Tropical medicineInvertebrate GenomicsMedicine and Health SciencesRNA structureGenetics0303 health sciencesMammalian GenomicsbiologyNucleotidesCircular DichroismMessenger RNAEukaryotaGenomicsG4 Schistosoma mansoni schistosomiasis3. Good healthPraziquantelNucleic acidsInfectious DiseasesSchistosomaFemaleSchistosoma mansoniPublic aspects of medicineRA1-1270medicine.drugSignal TransductionResearch Article3' UtrSchistosomiasis010402 general chemistry03 medical and health sciencesHelminthsmedicineGeneticsParasitic DiseasesAnimalsGene030304 developmental biologySchistosomaGenome HelminthPublic Health Environmental and Occupational HealthOrganismsBiology and Life Sciencesbiology.organism_classificationmedicine.diseaseInvertebrates0104 chemical sciencesG-QuadruplexesMacromolecular structure analysisAnimal GenomicsRNAZoology

description

Schistosomiasis is a neglected tropical disease that currently affects over 250 million individuals worldwide. In the absence of an immunoprophylactic vaccine and the recognition that mono-chemotherapeutic control of schistosomiasis by praziquantel has limitations, new strategies for managing disease burden are urgently needed. A better understanding of schistosome biology could identify previously undocumented areas suitable for the development of novel interventions. Here, for the first time, we detail the presence of G-quadruplexes (G4) and putative quadruplex forming sequences (PQS) within the Schistosoma mansoni genome. We find that G4 are present in both intragenic and intergenic regions of the seven autosomes as well as the sex-defining allosome pair. Amongst intragenic regions, G4 are particularly enriched in 3´ UTR regions. Gene Ontology (GO) term analysis evidenced significant G4 enrichment in the wnt signalling pathway (p<0.05) and PQS oligonucleotides synthetically derived from wnt-related genes resolve into parallel and anti-parallel G4 motifs as elucidated by circular dichroism (CD) spectroscopy. Finally, utilising a single chain anti-G4 antibody called BG4, we confirm the in situ presence of G4 within both adult female and male worm nuclei. These results collectively suggest that G4-targeted compounds could be tested as novel anthelmintic agents and highlights the possibility that G4-stabilizing molecules could be progressed as candidates for the treatment of schistosomiasis.

10.1371/journal.pntd.0008770https://hdl.handle.net/10447/596654