Abstract
Multiple hosts and various life cycle stages prompt the human malaria parasite, Plasmodium falciparum, to acquire sophisticated molecular mechanisms to ensure its survival, spread, and transmission to its next host. To face these environmental challenges, increasing evidence suggests that the parasite has developed complex and complementary layers of regulatory mechanisms controlling gene expression. Here, we discuss the recent developments in the discovery of molecular components that contribute to cell replication and differentiation and highlight the major contributions of epigenetics, transcription factors, and nuclear architecture in controlling gene regulation and life cycle progression in Plasmodium spp.
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Hollin, T., Gupta, M., Lenz, T., & Le Roch, K. G. (2021, January 1). Dynamic Chromatin Structure and Epigenetics Control the Fate of Malaria Parasites. Trends in Genetics. Elsevier Ltd. https://doi.org/10.1016/j.tig.2020.09.003
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