RMgmDB - Rodent Malaria genetically modified Parasites

Summary

RMgm-5392
Malaria parasiteP. berghei
Genotype
TaggedGene model (rodent): PBANKA_0932000; Gene model (P.falciparum): PF3D7_1116000; Gene product: rhoptry neck protein 4 (RON4)
Name tag: mCherry
Transgene
Transgene not Plasmodium: GFP (gfp-mu3)
Promoter: Gene model: PBANKA_1133300; Gene model (P.falciparum): PF3D7_1357100; Gene product: elongation factor 1-alpha (eef1a)
3'UTR: Gene model: PBANKA_0719300; Gene product: bifunctional dihydrofolate reductase-thymidylate synthase, putative (dhfr/ts)
Replacement locus: Gene model: PBANKA_0306000; Gene product: 6-cysteine protein (P230p)
Phenotype Sporozoite; Liver stage;
Last modified: 21 February 2024, 18:51
  *RMgm-5392
Successful modificationThe parasite was generated by the genetic modification
The mutant contains the following genetic modification(s) Gene tagging, Introduction of a transgene
Reference (PubMed-PMID number) Reference 1 (PMID number) : 37272704
MR4 number
Parent parasite used to introduce the genetic modification
Rodent Malaria ParasiteP. berghei
Parent strain/lineP. berghei ANKA
Name parent line/clone P. berghei ANKA 507cl1 (RMgm-7)
Other information parent lineP.berghei ANKA 507cl1 (RMgm-7) is a reference ANKA mutant line which expresses GFP under control of a constitutive promoter. This reference line does not contain a drug-selectable marker (PubMed: PMID: 16242190).
The mutant parasite was generated by
Name PI/ResearcherBaba M, Ishino T
Name Group/DepartmentDivision of Molecular Parasitology, Proteo-Science Center
Name InstituteEhime University
CityToon, Ehime
CountryJapan
Name of the mutant parasite
RMgm numberRMgm-5392
Principal nameRON4-mCherry
Alternative name
Standardized name
Is the mutant parasite cloned after genetic modificationYes
Phenotype
Asexual blood stageNot tested
Gametocyte/GameteNot tested
Fertilization and ookineteNot tested
OocystNot tested
SporozoiteExpression of mCherry-tagged RON4 in oocyst-derived sporozoites was demonstrated by western blot using anti-RON4 and anti-mCherry antibody staining.
Liver stageRON4-mCherry sporozoites collected from salivary glands were inoculated onto the human hepatoma cell line, HepG2. At 24 and 48 hours post-inoculation, RON4-mCherry signals were undetectable in LS parasites. At 72-hour post-inoculation, RON4-mCherry signals were detected as dots corresponding to the tip of mature liver merozoites.
Additional remarks phenotype

Mutant/mutation

Protein (function)
From the paper: 'During merozoite invasion of erythrocytes, rhoptry neck protein (RON) 2, RON4, and RON5 are secreted to the host cell membrane to form the RON complex, which interacts with AMA1 on the parasite membrane to create a moving junction. The inability to target gene disruption of ron2, ron4, ron5, or ama1 indicates that these genes are crucial for merozoite invasion. To elucidate the roles of RON2, RON4, and RON5 in sporozoites, we developed a sporozoite stage-specific knockdown system using the promoter swapping method. Repression of RON2, RON4, or RON5 expression in sporozoites demonstrated that the proteins are crucial for sporozoite invasion of salivary glands. The importance of RON2 and RON4 in sporozoite invasion of salivary glands was confirmed by a conditional knockout system based on DiCre recombinase. In this study, the detailed functions of RON4 in sporozoite transmission to the liver were analyzed in vivo and in vitro using RON4 conditional knockdown (RON4-cKD) sporozoites, in which RON4 protein expression was suppressed to undetectable levels. The results revealed that RON4 has multiple roles during the sporozoite crossing of sinusoidal cells to arrive at hepatocytes, the adhesion of hepatocytes, and the invasion of hepatocytes, all of which are essential steps for sporozoite transmission from the mosquito to the mammalian liver.'

Phenotype
Expression of mCherry-tagged RON4 in oocyst-derived sporozoites  was demonstrated by western blot using anti-RON4 and anti-mCherry antibody staining. Two bands corresponding to full-length RON4 (about 100 kDa) and a processed form (about 60 kDa) were observed on western blots, both of which were shifted due to the successful addition of an mCherry-tag at the C-terminus. Inoculating sporozoites collected from mosquito salivary glands to C57BL/6 mice demonstrated that RON4-mCherry-expressing sporozoites could normally infect and proliferate within hepatocytes. By confocal fluorescence microscopy, RON4-mCherry signals were confirmed to localize at the apical end of sporozoites residing in salivary glands, consistent with a rhoptry localization To examine RON4-mCherry expression in LS parasites, RON4-mCherry sporozoites collected from salivary glands were inoculated onto the human hepatoma cell line, HepG2. At 24 and 48 hours post-inoculation, RON4-mCherry signals were undetectable in LS parasites. At 72-hour post-inoculation, RON4-mCherry signals were detected as dots corresponding to the tip of mature liver merozoites.

Additional information
In vitro infection experiments using a hepatoma cell line revealed that secreted RON4 is involved in sporozoite adhesion to hepatocytes and has an important role in the early steps of hepatocyte infection. In addition, in vitro motility assays indicated that RON4 is required for sporozoite attachment to the substrate and the onset of migration. These findings indicate that RON4 is crucial for sporozoite migration toward and invasion of hepatocytes via attachment ability and motility.

Other mutants


  Tagged: Mutant parasite with a tagged gene
Details of the target gene
Gene Model of Rodent Parasite PBANKA_0932000
Gene Model P. falciparum ortholog PF3D7_1116000
Gene productrhoptry neck protein 4
Gene product: Alternative nameRON4
Details of the genetic modification
Name of the tagmCherry
Details of taggingC-terminal
Additional remarks: tagging
Commercial source of tag-antibodies
Type of plasmid/construct(Linear) plasmid double cross-over
PlasmoGEM (Sanger) construct/vector usedNo
Modified PlasmoGEM construct/vector usedNo
Plasmid/construct map
Plasmid/construct sequence
Restriction sites to linearize plasmid
Selectable marker used to select the mutant parasitehdhfr
Promoter of the selectable markereef1a
Selection (positive) procedurepyrimethamine
Selection (negative) procedureNo
Additional remarks genetic modificationTo generate transgenic parasites expressing mCherry-tagged RON4 at its C-terminus, the native ron4 locus in the PbANKA-GFP genome was replaced by a single crossover homologous recombination with an expression cassette of the C-terminus of the ron4 coding region fused with an mCherry tag, similar to the generation of RON4-c-Myc expressing parasites (RMgm-4691). The c-Myc tag sequence was replaced by the mCherry tag sequence in the pL0033 plasmid (BEI Resources, Manassas, VA, USA), and then 1,626 base pairs corresponding to the RON4 C-terminus region, containing an XbaI site in the middle introduced by site-directed mutagenesis (see RMgm-4691) was inserted at SacII and BamHI sites just upstream of the mCherry-tag coding region. Electroporation of linearized DNA by XbaI digestion into a schizont-enriched PbANKA-GFP line and selection of transgenic parasites was performed as described.
Additional remarks selection procedure
Primer information: Primers used for amplification of the target sequences  Click to view information
Primer information: Primers used for amplification of the target sequences  Click to hide information
Sequence Primer 1
Additional information primer 1
Sequence Primer 2
Additional information primer 2
Sequence Primer 3
Additional information primer 3
Sequence Primer 4
Additional information primer 4
Sequence Primer 5
Additional information primer 5
Sequence Primer 6
Additional information primer 6

  Transgene: Mutant parasite expressing a transgene
Type and details of transgene
Is the transgene Plasmodium derived Transgene: not Plasmodium
Transgene nameGFP (gfp-mu3)
Details of the genetic modification
Inducable system usedNo
Additional remarks inducable system
Type of plasmid/construct(Linear) plasmid double cross-over
PlasmoGEM (Sanger) construct/vector usedNo
Modified PlasmoGEM construct/vector usedNo
Plasmid/construct map
Plasmid/construct sequence
Restriction sites to linearize plasmid
Selectable marker used to select the mutant parasitegfp (FACS)
Promoter of the selectable markereef1a
Selection (positive) procedureFACS (flowsorting)
Selection (negative) procedureNo
Additional remarks genetic modificationThe GFP gene (1 copy) has been inserted into the 230p locus (PBANKA_030600) by double cross-over integration.
Additional remarks selection procedureThis reporter mutant expressing GFP does not contain a drug-selectable marker. This mutant has been selected by FACS sorting after transfection based on GFP fluorescence.
Other details transgene
Promoter
Gene Model of Parasite PBANKA_1133300
Gene Model P. falciparum ortholog PF3D7_1357100
Gene productelongation factor 1-alpha
Gene product: Alternative nameeef1a
Primer information details of the primers used for amplification of the promoter sequence  Click to view information
Primer information details of the primers used for amplification of the promoter sequence  Click to hide information
Sequence Primer 1
Additional information primer 1
Sequence Primer 2
Additional information primer 2
3'-UTR
Gene Model of Parasite PBANKA_0719300
Gene productbifunctional dihydrofolate reductase-thymidylate synthase, putative
Gene product: Alternative namedhfr/ts
Primer information details of the primers used for amplification the 3'-UTR sequences  Click to view information
Primer information details of the primers used for amplification the 3'-UTR sequences  Click to hide information
Sequence Primer 1
Additional information primer 1
Sequence Primer 2
Additional information primer 2
Insertion/Replacement locus
Replacement / InsertionReplacement locus
Gene Model of Parasite PBANKA_0306000
Gene product6-cysteine protein
Gene product: Alternative nameP230p
Primer information details of the primers used for amplification of the target sequences  Click to view information
Primer information details of the primers used for amplification of the target sequences  Click to hide information
Sequence Primer 1
Additional information primer 1
Sequence Primer 2
Additional information primer 2
Sequence Primer 3
Additional information primer 3
Sequence Primer 4
Additional information primer 4