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Updated: Aug 12, 2026

Methods to Investigate the Regulatory Role of Small RNAs and Ribosomal Occupancy of Plasmodium falciparum
Published on: December 4, 2015
etramps, a new Plasmodium falciparum gene family coding for developmentally regulated and highly charged membrane
Tobias Spielmann1, David J P Fergusen, Hans-Peter Beck
1Department of Medical Parasitology and Infection Biology, Swiss Tropical Institute, Basel CH 4002, Switzerland.
Abstract:
After invasion of erythrocytes, the human malaria parasite Plasmodium falciparum resides within a parasitophorous vacuole and develops from morphologically and metabolically distinct ring to trophozoite stages. During these developmental phases, major structural changes occur within the erythrocyte, but neither the molecular events governing this development nor the molecular composition of the parasitophorous vacuole membrane (PVM) is well known. Herein, we describe a new family of highly cationic proteins from P. falciparum termed early transcribed membrane proteins (ETRAMPs). Thirteen members were identified sharing a conserved structure, of which six were found only during ring stages as judged from Northern and Western analysis. Other members showed different stage-specific expression patterns. Furthermore, ETRAMPs were associated with the membrane fractions in Western blots, and colocalization and selective permeabilization studies demonstrated that ETRAMPs were located in the PVM. This was confirmed by immunoelectron microscopy where the PVM and tubovesicular extensions of the PVM were labeled. Early expressed ETRAMPs clearly defined separate PVM domains compared with the negatively charged integral PVM protein EXP-1, suggesting functionally different domains in the PVM with an oppositely charged surface coat. We also show that the dynamic change of ETRAMP composition in the PVM coincides with the morphological changes during development. The P. falciparum PVM is an important structure for parasite survival, and its analysis might provide better understanding of the requirements of intracellular parasites.
Insights
Researchers discovered novel proteins, early transcribed membrane proteins (ETRAMPs), within the malaria parasite Plasmodium falciparum. These ETRAMPs are crucial components of the parasitophorous vacuole membrane (PVM) and change during parasite development.
Area of Science:
- Cell Biology
- Parasitology
- Molecular Biology
Background:
- The human malaria parasite Plasmodium falciparum invades erythrocytes and resides within a parasitophorous vacuole (PV).
- Significant structural changes occur within the erythrocyte during parasite development, but the molecular mechanisms and PV composition are poorly understood.
Purpose of the Study:
- To identify and characterize novel proteins involved in Plasmodium falciparum development within erythrocytes.
- To investigate the localization and function of these proteins within the parasitophorous vacuole membrane (PVM).
Main Methods:
- Identification of a new protein family, early transcribed membrane proteins (ETRAMPs), in Plasmodium falciparum.
- Analysis of ETRAMP expression patterns using Northern and Western blotting.
- Localization studies using colocalization, selective permeabilization, and immunoelectron microscopy.
Main Results:
- Thirteen ETRAMPs were identified, with conserved structures and varied stage-specific expression patterns.
- ETRAMPs were localized to the PVM and its extensions, distinct from other PVM proteins like EXP-1.
- Dynamic changes in ETRAMP composition correlate with morphological development of the parasite.
Conclusions:
- ETRAMPs represent a novel family of proteins integral to the PVM of Plasmodium falciparum.
- The PVM exhibits distinct domains with differing charge properties, influenced by ETRAMP composition.
- Understanding ETRAMP dynamics offers insights into parasite survival and intracellular development.
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