L-lactate is a regulator of gametocytogenesis in Plasmodium falciparum
Epigenetic processes play important roles in the biology of the malaria parasite Plasmodium falciparum. We recently showed that Plasmodium histones are not only acetylated and methylated but also lactylated. This new epigenetic mark could form a particularly important axis of host-parasite signalling because severe malaria is often characterised by hyperlactataemia. In the human host this can cause respiratory distress, which is potentially fatal. For the parasite, it could be advantageous to sense this state of pathology and respond by modulating virulence. Virulence processes known to be under epigenetic control include antigenic variation, invasion switching and conversion to sexual gametocytes, i.e. gametocytogenesis. Here, we investigated the influence of lactate on gametocytogenesis. Hyperlactataemia in malaria patients is defined as [≥] 5mM blood lactate and we confirmed that in laboratory culture, adding 5mM L-lactate was sufficient to boost gametocytogenesis. Expression of the GDV-1 gene increased within one cell cycle of asexual parasites being exposed to L-lactate, suggesting that the canonical epigenetic switch for gametocytogenesis was involved: GDV-1 regulates epigenetic de-repression of the gene encoding the master transcription factor for gametocytogenesis, AP2-G. Indeed, parasite histones became rapidly lactylated after L-lactate exposure and chromatin profiling by CUT&Tag detected inducible lactylation of chromatin specifically upstream of the AP2-G gene, and also of the antisense RNA that regulates GDV-1. Thus L-lactate joins S-adenosylmethionine as a metabolite that can epigenetically regulate gametocytogenesis in P. falciparum.