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Homeodomain protein 1 is an essential regulator of gene expression during sexual differentiation of malaria parasites

Campelo Morillo, R.; Tong, X.; Xie, W.; Lenz, T.; Batugedara, G.; Tabassum, N.; Orchard, L. M.; Daher, W.; Patel, D.; Noble, W. S.; Llinas, M.; Le Roch, K. G.; Kafsack, B. F. C.

2020-10-26 microbiology
10.1101/2020.10.26.352583 bioRxiv
Show abstract

Transmission of Plasmodium falciparum and other malaria parasites requires their differentiation from asexual blood stages into gametocytes, the non-replicative sexual stage necessary for transmission to the mosquito vector. This transition involves changes in gene expression and chromatin reorganization that result in the activation and silencing of stage-specific genes. However, the genomes of malaria parasites have been noted for their dearth of transcriptional and chromatin regulators and the molecular mediators of these changes remain largely unknown. We recently identified HomeoDomain Protein 1 (HDP1) as a DNA-binding protein that enhances the expression of key genes that are critical for early sexual differentiation. The discovery of a homeodomain-like DNA-binding protein marks a new class of transcriptional regulator in malaria parasites outside of the better-characterized ApiAP2 family. In this study, we show that HDP1 facilitates the necessary upregulation of inner membrane complex components during early gametocytogenesis that gives P. falciparum gametocytes they characteristic shape and is required for gametocyte maturation and parasite transmission.

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