Sterol transfer by atypical cholesterol-binding NPC2 proteins in coral-algal symbiosis.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 31159921.
- Also identified by DOI 10.7554/eLife.43923 and PMC identifier 6548501.
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Abstract
Reef-building corals depend on intracellular dinoflagellate symbionts that provide nutrients. Besides sugars, the transfer of sterols is essential for corals and other sterol-auxotrophic cnidarians. Sterols are important cell components, and variants of the conserved Niemann-Pick Type C2 (NPC2) sterol transporter are vastly up-regulated in symbiotic cnidarians. Types and proportions of transferred sterols and the mechanism of their transfer, however, remain unknown. Using different pairings of symbiont strains with lines of <i>Aiptasia</i> anemones or <i>Acropora</i> corals, we observe both symbiont- and host-driven patterns of sterol transfer, revealing plasticity of sterol use and functional substitution. We propose that sterol transfer is mediated by the symbiosis-specific, non-canonical NPC2 proteins, which gradually accumulate in the symbiosome. Our data suggest that non-canonical NPCs are adapted to the symbiosome environment, including low pH, and play an important role in allowing corals to dominate nutrient-poor shallow tropical seas worldwide.
Medical subject headings
- Anthozoa
- Carrier Proteins
- Pancreatic Elastase
- Sterols
- Symbiosis