The Role of Palmitoylation for Protein Recruitment to the Inner Membrane Complex of the Malaria Parasite

Autor(en): Wetzel, Johanna
Herrmann, Susann
Swapna, Lakshmipuram Seshadri
Prusty, Dhaneswar
Peter, Arun T. John
Kono, Maya
Saini, Sidharth
Nellimarla, Srinivas
Wong, Tatianna Wai Ying
Wilcke, Louisa
Ramsay, Olivia
Cabrera, Ana
Biller, Laura
Heincke, Dorothee
Mossman, Karen
Spielmann, Tobias
Ungermann, Christian 
Parkinson, John
Gilberger, Tim W.
Stichwörter: Biochemistry & Molecular Biology; GLIDEOSOME; GLOBAL ANALYSIS; HOST-CELL INVASION; IDENTIFICATION; MECHANISM; MULTIPLE SEQUENCE ALIGNMENT; PLASMODIUM-FALCIPARUM; S-ACYLTRANSFERASES; TOXOPLASMA-GONDII; YEAST
Erscheinungsdatum: 2015
Herausgeber: AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
Journal: JOURNAL OF BIOLOGICAL CHEMISTRY
Volumen: 290
Ausgabe: 3
Startseite: 1712
Seitenende: 1728
Zusammenfassung: 
To survive and persist within its human host, the malaria parasite Plasmodium falciparum utilizes a battery of lineage-specific innovations to invade and multiply in human erythrocytes. With central roles in invasion and cytokinesis, the inner membrane complex, a Golgi-derived double membrane structure underlying the plasma membrane of the parasite, represents a unique and unifying structure characteristic to all organisms belonging to a large phylogenetic group called Alveolata. More than 30 structurally and phylogenetically distinct proteins are embedded in the IMC, where a portion of these proteins displays N-terminal acylation motifs. Although N-terminal myristoylation is catalyzed co-translationally within the cytoplasm of the parasite, palmitoylation takes place at membranes and is mediated by palmitoyl acyltransferases (PATs). Here, we identify a PAT (PfDHHC1) that is exclusively localized to the IMC. Systematic phylogenetic analysis of the alveolate PAT family reveals PfDHHC1 to be a member of a highly conserved, apicomplexan-specific clade of PATs. We show that during schizogony this enzyme has an identical distribution like two dual-acylated, IMC-localized proteins (PfISP1 and PfISP3). We used these proteins to probe into specific sequence requirements for IMC-specific membrane recruitment and their interaction with differentially localized PATs of the parasite.
DOI: 10.1074/jbc.M114.598094

Show full item record

Page view(s)

1
Last Week
0
Last month
0
checked on May 18, 2024

Google ScholarTM

Check

Altmetric