Project description:Plasmodium yoelii YM asexual blood stage parasites express multiple members of the py235 gene family, part of the super-family of genes including those coding for Plasmodium vivax reticulocyte binding proteins and Plasmodium falciparum RH proteins. Dr Tony Holder's laboratory (NIMR, London) has been successful in deleting one of the RH family genes (Py01365) by transfection and insertion of the TgDHFR gene, and cloned the resulting parasite in YM background. The gene expression patterns of the mutant parasite line were compared to that of the wild type YM parasite. ArrayExpress Release Date: 2011-04-25 Publication Title: Targeted Disruption of py235ebp-1: Invasion of Erythrocytes by Plasmodium yoelii Using an Alternative Py235 Erythrocyte Binding Protein Publication Author List: Solabomi A. Ogun, Rita Tewari, Thomas D. Otto, Steven A. Howell, Ellen Knuepfer, Deirdre A. Cunningham, Zhengyao Xu, Arnab Pain, Anthony A. Holder Person Roles: submitter Person Last Name: Service Person First Name: Submission Person Mid Initials: Person Email: datahose@sanger.ac.uk Person Phone: Person Address: The Wellcome Trust Sanger Institute, Wellcome Trust Genome Campus, Hinxton, Cambridgeshire, CB10 1SA, United Kingdom Person Affiliation: Wellcome Trust Sanger Institute Person Roles: investigator Person Last Name: Holder Person First Name: Anthony Person Mid Initials: A Person Email: aholder@nimr.mrc.ac.uk Person Phone: Person Address: Division of Parasitology, MRC National Institute for Medical Research, London, UK Person Affiliation: MRC National Institute for Medical Research Person Roles: Project Coordinator Person Last Name: Sanders Person First Name: Mandy Person Mid Initials: J Person Email: mjs@sanger.ac.uk Person Phone: 01223 834244 Person Address: Wellcome Trust Genome Campus,Hinxton,Cambridge. CB10 1SA UK Person Affiliation: Wellcome Trust Sanger Institute
2011-07-14 | GSE30620 | GEO
Project description:Samples sequenced on Anthony Nolan Laboratory using NGS long reads platform
Project description:Laboratory evolution experiments of yeast cells impaired for microtubule dynamics. The sequencing was done at two time-points, early and late, to identify compensatory mutations. For details see Macaluso et al, Cell Reports, 2025.