An Nrf2-Nup214 positive feedback loop sustains the antioxidant response and promotes microbial infection in ticks
Vosbigian, K. A.; Osbron, C. A.; Steiert, B. P.; Rosche, K. L.; Wright, S. J.; Ramirez-Zepp, E.; Shaw, D. K.
Show abstract
Ixodes scapularis ticks are obligate hematophagous ectoparasites that take a single bloodmeal per life stage. During blood digestion, large quantities of heme and iron are released, leading to the production of reactive oxygen species. To counter the oxidative stress, ticks have evolved robust antioxidant systems. We previously found that the antioxidant transcription factor Nrf2 is activated during infection and supports Anaplasma phagocytophilum colonization in ticks. To investigate the Nrf2 regulatory network, we queried promoter regions in the Ixodes genome for Nrf2 binding sites. The gene encoding the nuclear pore complex protein nucleoporin 214 was identified as a target that is induced during Anaplasma infection and putatively regulated by Nrf2. Ixodes nup214 was experimentally validated as an Nrf2-regulated gene through functional luciferase reporter assays, pharmacological manipulation, and RNA interference transcriptional repression. We found that elevated expression of Nup214 leads to binding of the nuclear export protein CRM1, thereby trapping Nrf2 in the nucleus. Increased nuclear retention of Nrf2 prolonged the antioxidant response and functionally supported Anaplasma survival. Our findings uncover a previously unknown mechanism potentiated by Nrf2 that supports Anaplasma infection in ticks. SIGNIFICANCETicks have evolved to rely on host blood for nutrition and development. However, blood feeding comes with drawbacks. During digestion, large quantities of heme and iron are released, which promote the production of reactive oxygen species. To counter this, ticks have evolved robust antioxidant responses to protect themselves against oxidative stress. How tick-transmitted microbes, such as Anaplasma phagocytophilum, withstand the oxidative challenge in the tick is not well understood. Here, we demonstrate that, during infection, host-driven antioxidant defenses coordinated by the transcription factor Nrf2 support Anaplasma infection and persistence in ticks. We show that Nrf2 upregulates the nuclear pore complex protein Nucleoporin 214, which sequesters Nrf2 in the nucleus. The prolonged nuclear retention of Nrf2 enhances the tick antioxidant response, thereby supporting Anaplasma survival in the arthropod vector.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Toxoplasma gondii subverts the host ESCRT machinery for parasite uptake of host cytosolic proteins 94%
- A Chaperonin Complex Regulates Organelle Proteostasis in Malaria Parasites 94%
- Plasmodium falciparum stomatin-like protein forms a putative complex with a metalloprotease in distinct mitochondrial loci 93%
Similar papers in this journal
- PERK-mediated antioxidant response is key for pathogen persistence in ticks 99%
- The RNA-binding protein RBP42 regulates cellular energy metabolism in mammalian-infective Trypanosoma brucei 94%
- Metabolic Adaptability and Nutrient Scavenging in Toxoplasma gondii: Insights from Ingestion Pathway-Deficient Mutants 93%
Similar papers in this journal
Similar papers in this journal
- ATF6 enables pathogen infection in ticks by inducing stomatin and altering cholesterol dynamics 98%
- The cyclic dinucleotide 2'3'-cGAMP induces a broad anti-bacterial and anti-viral response in the sea anemone Nematostella vectensis 94%
- The Clp System in Malaria Parasites Degrades Essential Substrates to Regulate Plastid Biogenesis 93%
Similar papers in this journal
- Systematic functional analysis of Leishmania protein kinases identifies regulators of differentiation or survival 94%
- Cell-selective proteomics reveal novel effectors secreted by an obligate intracellular bacterial pathogen 94%
- A Second Generation Leishmanization Vaccine with a Markerless Attenuated Leishmania major Strain using CRISPR gene editing 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.