About Gene List

PF3D7_0713200 (EPF1)

Genome location: Pf3D7_07_v3:606,547..608,612(-)

Genome classification: Core

Function and Localization

Product Description: exported protein family 1

SignalP Peptide: N/A

# Transmembrane Domains: 0

EC Numbers: None

Curated GO (PlasmoDB): None

Expression by stage (LR - Le Roch et al., and MCA - Malaria Cell Atlas):

Stage LR class MCA mean MCA prop. zeros
Sporozoite not expressed N/A N/A
Ring not expressed 0.00 1.00
Trophozoite not expressed 0.00 1.00
Schizont not expressed 0.00 1.00
Gametocyte not expressed 0.00 1.00

More info:

Resistome Mutations

Old (Pf3D7v3) Gene ID: PF3D7_0713200

Resistome Missense Mutations: None

Resistome Compounds with Missense Mutations: None

Resistome # Samples with Disruptive Mutations: 0 (0 missense, 0 "interesting" missense)

Essentiality (ABS)

Zhang Phenotype: Non - Mutable in CDS

MIS: 0.581 | MFS: -2.385 | #Insertions: 0

PlasmoGEM Phenotype: N/A

RMgmDB ABS Phenotype: N/A

More info: PhenoPlasm Link

Binding Evidence

AlphaFill Uniprot ID: A0A143ZWP5

"Best" AlphaFill ligand hit: No AlphaFill hits

No associated EC numbers

No evidence of orthology to BindingDB entries

Orthology Information

Ortholog Group (OrthoMCL): OG6_126097

No human ortholog(s)

Genetic Variation

MalariaGEN Pf7 (worldwide samples) # unique SNV/indels:

Homozygous genotype calls only

variant type common rare doubleton singleton
synonymous 0 0 0 0
disruptive 0 0 0 0
missense 0 0 0 0

Any inclusion in genotype call

variant type common rare doubleton singleton
synonymous 0 0 0 0
disruptive 0 0 0 1
missense 0 0 0 0

PlasmoDB Total SNPs: 152

Non-coding: 63 | Synonymous: 14 | Nonsynonymous: 68 | Stop Codon: 7

Protein Information

Protein Length: 224 | Molecular Weight (kDa): 26.933

UniProt ID(s): A0A143ZWP5

PDB ID(s): None

Isoelectric Point: 4.58

Protein Domain Annotations:

Source Family ID Description
InterPro IPR026894 DNAJ-containing protein, X-domain
PFam PF14308 DNAJ-containing protein, X-domain
Superfamily N/A N/A

Associated Publications

PMID Title Authors DOI/Link
31937828 Investigating a Plasmodium falciparum erythrocyte invasion phenotype switch atthe whole transcriptome level Nyarko PB, Tarr SJ, ..., Awandare GA 10.1038/s41598-019-56386-y