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<i><b>Arabidopsis thaliana</b></i><b>Fibrillin 3a binds saturated fatty acids of chloroplast membranes</b>

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DataCite Commons2025-12-18 更新2026-02-09 收录
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Fibrillins (FBNs) are conserved plastid lipid–associated proteins involved in lipid storage, stress adaptation and plastid ultrastructure. While several <i>Arabidopsis thaliana</i> FBNs have been functionally characterized, the biochemical properties of the thylakoid-associated FBN3a remain poorly understood. AlphaFold modeling revealed that AtFBN3a adopts an eight-stranded <i>β</i>-barrel fold typical of the lipocalin family, with high-confidence predictions for the core <i>β</i>-strands and conservation of the structurally conserved region 1 (SCR1) motif that stabilizes the barrel and defines the ligand-binding cavity. This structural topology is also shared with AlphaFold models of the other members of the family in <i>A. thaliana</i>. Consistent with the lipocalin-like structural and sequence features, protein–lipid overlay assays showed that AtFBN3a bound the anionic plastid lipids phosphatidic acid and sulfoquinovosyl diacylglycerol, but not phosphatidylcholine. Additional assays revealed a clear preference for saturated fatty acids, with stronger binding to long-chain saturated species. Together, these findings identify AtFBN3a as a lipocalin-like domain–containing protein with selective affinity for saturated fatty acids, suggesting a conserved role for FBNs in plastid lipid metabolism and stress adaptation.

提供机构:
Taylor & Francis
创建时间:
2025-12-02
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