Last Updated: 17/11/2024

Functional characterization of phospholipases in the malaria parasite Plasmodium falciparum

Objectives

Aim 1: This project aims to functionally analyze the role of phospholipases of the human malaria parasite Plasmodium falciparum during its development within red blood cells.

The specific objectives of Aim 1 are:

  1. probe into the redundancy of those enzymes that show expression in asexual blood stage parasites by targeted gene disruption;
  2. further analyze essential genes, which cannot be deleted using conventional knockout techniques using conditional systems, their loss-of-function phenotypes will be analyzed and their cellular localization will be elucidated; and  
  3. double knockout parasites targeting a subset of enzymes will be generated and analyzed in order to reveal a potential interplay and synergistic functions between different phospholipases.

Aim 2: The researchers aim to investigate, whether parasite phospholipases are activated by proteolytic cleavage of the egress-associated subtilisin-like serine protease SUB1.

  1. The specific objective of Aim 2 is to test the functional importance of predicted SUB1 cleavage sites identified in several putative phospholipases. 
Principal Investigators / Focal Persons

Paul-Christian Burda

Partner Investigators

Mike Blackman

Rationale and Abstract

Plasmodium parasites, the causative agents of malaria, infect hepatocytes and red blood cells (RBCs). Within these cells, parasites are surrounded by a parasitophorous vacuole membrane (PVM). Consequently, for their release from host cells and to propagate their infection, parasites have to disrupt the PVM and the host cell membrane. How this membrane rupture occurs on a molecular level and how it is controlled is only partially understood and only a very limited number of parasite proteins involved in this process have been identified so far. The research previously showed that a parasite phospholipase mediates PVM rupture during parasite egress from hepatocytes. Whether parasite phospholipases are similarly involved in parasite release from RBCs is not known and most of the Plasmodium phospholipases are not characterized. In conclusion, this work will increase knowledge of the molecular machinery leading to parasite release from host cells and might lead to the identification of novel targets for parasite-specific intervention strategies.

Date

Jan 2018 — Dec 2022

Funding Details
Country / Project Site(s)

United Kingdom

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