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Modrzynska, K.

Publications and source records attributed to Modrzynska, K..

2 recordsLinked to original sources

Inhibition of PfCLK3 a master regulator of malaria parasite RNA-splicing provides the basis for a radical cure for malaria

Emerging resistance to front-line anti-malarials means there is a race to discover new drugs with novel mechanisms of action that remain effective across multiple stages of the parasite life cycle. Previously we reported the malaria protein kinase, PfCLK3, as a target offering a cure, prophylaxis and transmission blocking. The homology between PfCLK3 and human kinases suggested that the mechanism of parasiticidal activity of PfCLK3 inhibitors is disruption of RNA processing. Here, we use whole genome RNA-sequencing to reveal that selective PfCLK3 inhibition extensively affects RNA-splicing with 2039 splice-junctions across 1125 genes mis-spliced in treated wild type parasites compared to controls. The function of mis-spliced transcripts showed that the affected genes were involved in numerous essential parasite processes associated with multiple life cycle stages and revealed transcripts and introns particularly susceptible to inhibition. Our study supports the role of PfCLK3 as an important regulator of spliceosome activity and establishes the distinct mechanism of parasiticidal activity of PfCLK3 inhibitors from current front-line treatments.

molecular biology↗

Plasmodium falciparum adapts its investment into replication versus transmission according to the host environment

The malaria parasite life cycle includes asexual replication in human blood, with a proportion of parasites differentiating to gametocytes required for transmission to mosquitoes. Commitment to differentiate into gametocytes, which is marked by activation of the parasite transcription factor ap2-g, is known to be influenced by host factors but a comprehensive model remains uncertain. Here we analyze data from 828 children in Kilifi, Kenya with severe, uncomplicated, and asymptomatic malaria infection over 18 years of falling malaria transmission. We examine markers of host immunity and metabolism, and markers of parasite growth and transmission investment. We find that inflammatory responses and reduced plasma lysophosphatidylcholine levels are associated with markers of increased investment in parasite sexual reproduction (i.e., transmission investment) and reduced growth (i.e., asexual replication). This association becomes stronger with falling transmission and suggests that parasites can rapidly respond to the within-host environment, which in turn is subject to changing transmission.

microbiology↗