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Proellochs, N.

Publications and source records attributed to Proellochs, N..

3 recordsLinked to original sources

Plasmodium falciparum stomatin-like protein forms a putative complex with a metalloprotease in distinct mitochondrial loci

Withdrawal statementThis manuscript has been withdrawn owing to a duplicate posting of manuscript number BIORXIV/2024/604071. This was a technical error for which the authors are not responsible, and this DOI for the work should not be cited as reference. The record is retained here for purposes of transparency. If you have any questions, please contact the corresponding author. The correct preprint can be found at doi: 10.1101/2024.07.18.604071

microbiology↗

The role of stomatin-like protein (STOML) in Plasmodium falciparum

Members of the Stomatin, Prohibitin, Flotillin and HflK/C (SPFH) protein family form large membrane anchored or spanning complexes and are involved in various functions in different organelles. The human malaria causing parasite Plasmodium falciparum harbors four SPFH proteins, including prohibitin 1 and 2, prohibitin-like protein (PHBL), and stomatin-like protein (STOML), which all localize to the parasite mitochondrion. In the murine model parasite Plasmodium berghei, STOML appears essential for asexual blood-stage (ABS) development and is localized to puncta on mitochondrial branching points in oocyst stages. In this study, we show that deletion of STOML causes a significant growth defect and slower ABS development, while sexual-stage development remains unaffected. Parasites lacking STOML were not more sensitive to respiratory chain targeting drugs, rendering a function of STOML in respiratory chain assembly unlikely. Epitope tagging of endogenous STOML revealed a distinct punctate localization on branching points and endings of the ABS mitochondrial network. STOML resides in a large protein complex and pulldown experiments identified a zinc dependent metalloprotease, FtsH, as a likely interaction partner. The predicted AlphaFold2 structure of STOML shows high similarity with the bacterial HflK/C, which has been shown to form a large vault-like structure around bacterial FtsH hexamers. Combined, our results suggest that a similar STOML-FtsH complex localized to specific loci of P. falciparum mitochondria facilitate the parasites ABS development.

microbiology↗

AlbuMAX supplemented media induces the formation of transmission-competent P. falciparum gametocytes

Asexual blood stage culture of Plasmodium falciparum is routinely performed but reproducibly inducing commitment to and maturation of viable gametocytes remains difficult. Culture media can be supplemented with human serum substitutes to induce commitment but these generally only allow for long-term culture of asexual parasites and not transmission-competent gametocytes due to their different lipid composition. Recent insights demonstrated the important roles lipids play in sexual commitment; elaborating on this we exposed ring stage parasites (20-24 hours hpi) for one day to AlbuMAX supplemented media to trigger induction to gametocytogenesis. We observed a significant increase in gametocytes after AlbuMAX induction compared to serum. We also tested the transmission potential of AlbuMAX inducted gametocytes and found a significant higher oocyst intensity compared to serum. We conclude that AlbuMAX supplemented media induces commitment, allows a more stable and predictable production of transmittable gametocytes than serum alone. HighlightsGametocytes are formed when asexual parasites commit to sexual differentiation. Sexual commitment can be promoted by environmental stressors in media formulations. Short exposure of young asexual parasites to the serum substitute AlbuMAX achieves high proportion of committed gametocytes that are transmission-competent.

microbiology↗