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Biology subjects

Robbertse, L.

Publications and source records attributed to Robbertse, L..

2 recordsLinked to original sources

Host-derived lipids license proliferation of sterol-auxotrophic tick cells and promote flavivirus output

Sterol molecules play indispensable roles in the biology of cells and organisms. Yet, arthropods, including ticks, lack the capacity for de novo sterol biosynthesis and must rely on exogenous sources. How these organisms sense and utilise exogenous lipids at the cellular level remains poorly understood. Here, we show that host cholesterol and linoleic acid act as essential external signals that license proliferation of Ixodes ricinus tick cells. In lipid-depleted conditions, cells fail to proliferate despite retaining intracellular cholesterol, indicating that exogenous lipids function as regulatory cues rather than merely structural components. We further demonstrate that tick cells exhibit a non-canonical intracellular distribution of cholesterol, with predominant accumulation in lysosome-associated compartments, and that lipid availability induces a coordinated transcriptional program involving lipid uptake and trafficking machinery. Importantly, we find that limiting host lipid availability significantly reduces extracellular RNA output of tick-borne encephalitis virus (TBEV) from infected tick cells, indicating that viral production is affected by the metabolic state of the host cell. Together, our findings establish host-derived lipids as key regulators of cellular state in a sterol-auxotrophic organism and identify lipid availability as a determinant of flavivirus output. This work provides a conceptual framework linking nutrient sensing, cell proliferation, and vector-pathogen interactions.

microbiology↗

The Bacterial Kinase AnmK Integrates into Tick Genome and Biology

Horizontal Gene Transfer (HGT) contributes to eukaryotic evolution, potentially bringing phenotypic novelties to the recipient organisms. Ticks pose a severe threat to human health as vectors of various pathogens, including viruses, bacteria and protozoa, while stably hosting endosymbiotic bacteria. As such, these obligate blood-feeding parasites have been and continue to be exposed to HGT from a broad range of donors. To determine whether bacterial-to-tick HGT has contributed to important tick traits, we surveyed Ixodes tick genomes for HGT events. We revealed duplications of the known bacteria-derived gene dae2 and discovered two novel cases of bacterial HGT, the most remarkable of which involves a bacterial peptidoglycan metabolic gene (anmK) acquired by the common ancestor of ticks. The acquisition of an intron demonstrates "eukaryotization" of anmK within tick genomes. Transcript profiling revealed that anmK expression is upregulated during blood feeding, peaking in female ovaries, a niche occupied by horizontally acquired endosymbionts. Biochemical analysis confirmed that, to some extent, recombinant AnmK retains kinase activity on its cognate substrate - the bacterial cell wall component 1,6-anhydro-N-acetylmuramic acid. Immunolocalization showed that the enzyme is predominantly localized towards outer layers of the vitellogenic oocytes. Silencing of anmK in different tick species compromised blood-feeding and reproduction, demonstrating that this domesticated bacterial enzyme underpins reproductive fitness across tick species. Our findings exemplify the ability of horizontally acquired genes to integrate into the host biology and thereby shape host life history.

evolutionary biology↗