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Methods to Investigate the Regulatory Role of Small RNAs and Ribosomal Occupancy of Plasmodium falciparum
Published on: December 4, 2015
Erythrocyte phospho-signalling is dynamically altered during infection with Plasmodium falciparum
Jack D Adderley1, Christian Doerig1
1Centre for Chronic Infectious and Inflammation Disease, Biomedical Sciences Cluster, School of Health and Biomedical Sciences, RMIT University, Bundoora VIC 3083, Australia.
Abstract:
It is well established that intracellular pathogens mobilise signalling pathways to manipulate gene expression of their host cell to promote their own survival. Surprisingly, there is evidence that specific host signalling molecules are likewise activated in a-nucleated erythrocytes in response to infection with malaria parasites. In this paper (Adderley et al., Nature Communications 2020), we report the system-wide assessment of host erythrocyte signalling during the course of infection with Plasmodium falciparum. This was achieved through the use of antibody microarrays containing >800 antibodies directed against human signalling proteins, which enabled us to interrogate the status of host erythrocyte signalling pathways at the ring, trophozoite and schizont stages of parasite development. This not only confirmed the pre-existing fragmentary data on the activation of a host erythrocyte PAK-MEK pathway, but also identified dynamic changes to many additional signalling elements, with trophozoite-infected erythrocytes displaying the largest mobilisation of host cell signalling. This study generated a comprehensive dataset on the modulation of host erythrocyte signalling during infection with P. falciparum, and provides the proof of principle that human protein kinases activated by Plasmodium infection represent attractive targets for antimalarial intervention.
Insights
Malaria parasites activate host cell signaling pathways in red blood cells. This study reveals dynamic changes in these pathways, identifying protein kinases as potential targets for new antimalarial drugs.
Area of Science:
- Cellular microbiology
- Immunology
- Parasitology
Background:
- Intracellular pathogens manipulate host gene expression via signaling pathways.
- Host signaling molecules are activated in erythrocytes during malaria parasite infection.
Purpose of the Study:
- To conduct a system-wide assessment of host erythrocyte signaling during Plasmodium falciparum infection.
- To identify dynamic changes in host cell signaling pathways throughout parasite development stages.
Main Methods:
- Utilized antibody microarrays with over 800 antibodies against human signaling proteins.
- Interrogated host erythrocyte signaling pathways at ring, trophozoite, and schizont stages of P. falciparum development.
Main Results:
- Confirmed activation of the host erythrocyte PAK-MEK pathway.
- Identified dynamic changes in numerous additional signaling elements.
- Observed the most significant host cell signaling mobilization in trophozoite-infected erythrocytes.
Conclusions:
- Generated a comprehensive dataset on host erythrocyte signaling modulation during P. falciparum infection.
- Demonstrated that protein kinases activated by Plasmodium infection are promising targets for antimalarial interventions.
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