Circadian Control of the Response of Macrophages to Plasmodium Spp.–Infected Red Blood Cells

Author:

Carvalho Cabral Priscilla1,Richard Vincent R.2ORCID,Borchers Christoph H.2ORCID,Olivier Martin3,Cermakian Nicolas1ORCID

Affiliation:

1. *Douglas Research Centre, McGill University, Montreal, Quebec, Canada

2. †Lady Davis Institute for Medical Research, McGill University, Montreal, Quebec, Canada

3. ‡Research Institute of the McGill University Health Centre, McGill University, Montreal, Quebec, Canada

Abstract

Abstract Malaria is a serious vector-borne disease characterized by periodic episodes of high fever and strong immune responses that are coordinated with the daily synchronized parasite replication cycle inside RBCs. As immune cells harbor an autonomous circadian clock that controls various aspects of the immune response, we sought to determine whether the intensity of the immune response to Plasmodium spp., the parasite causing malaria, depends on time of infection. To do this, we developed a culture model in which mouse bone marrow–derived macrophages are stimulated with RBCs infected with Plasmodium berghei ANKA (iRBCs). Lysed iRBCs, but not intact iRBCs or uninfected RBCs, triggered an inflammatory immune response in bone marrow–derived macrophages. By stimulating at four different circadian time points (16, 22, 28, or 34 h postsynchronization of the cells’ clock), 24-h rhythms in reactive oxygen species and cytokines/chemokines were found. Furthermore, the analysis of the macrophage proteome and phosphoproteome revealed global changes in response to iRBCs that varied according to circadian time. This included many proteins and signaling pathways known to be involved in the response to Plasmodium infection. In summary, our findings show that the circadian clock within macrophages determines the magnitude of the inflammatory response upon stimulation with ruptured iRBCs, along with changes of the cell proteome and phosphoproteome.

Publisher

The American Association of Immunologists

Reference66 articles.

1. World Health Organization . 2022. World malaria report 2022. Available at: https://www.who.int/teams/global-malaria-programme/reports/world-malaria-report-2022.

2. Malaria;Phillips;Nat. Rev. Dis. Primers,2017

3. Dynamics of fever and serum levels of tumor necrosis factor are closely associated during clinical paroxysms in Plasmodium vivax malaria;Karunaweera;Proc. Natl. Acad. Sci. USA,1992

4. Plasmodium malariae: parasite and disease;Collins;Clin. Microbiol. Rev.,2007

5. Mobilized hematopoietic stem cell yield depends on species-specific circadian timing;Lucas;Cell Stem Cell,2008

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