Periodic Reporting for period 2 - MALSWITCH (Uncovering the Mechanisms Behind Adaptive Gene Expression Switching in Malaria Parasites)
Período documentado: 2023-01-01 hasta 2024-06-30
We could previously identify the parasite specific protein gametocyte development 1 (GDV1) as a factor that is responsible for inducing gene expression switching of the master regulator of sexual commitment, the transcription factor Ap2-G. This provides us with a unique experimental tool, which will allow us to investigate the molecular mechanism underlying this process. For this we will 1) investigate changes in local chromatin structure as well as spatial chromatin organization of the ap2-g locus during switching, 2) use CRISPR/Cas derived proximity-based labelling methodology to reveal and investigate the molecular machinery controlling the switching events and 3) elucidate the role of long non-coding RNAs in translating environmental signals into the onset of GDV1 expression and ap2-g switching. Altogether, the outlined experiments will deliver a systematic identification and characterization of the molecular mechanisms controlling epigenetic gene expression switching during sexual commitment in P. falciparum. This will contribute to a better understanding of the molecular mechanisms driving adaptation of this deadly parasite and in the long run might enable to the design of intervention strategies that P. falciparum is unable to adapt to.