Abstract
<jats:p>The ATP-binding cassette (ABC) transporter ABCB1 transports both auxins and the brassinosteroid brassinolide (BL). ABCB1-mediated auxin (IAA) transport depends on interaction with the FKBP42 protein TWISTED DWARF1 (TWD1), yet the mechanism underlying substrate selectivity remains unclear. Here, we confirm dual IAA and BL transport by ABCB1 and show that the two substrates compete for ABCB1-mediated transport. We demonstrate that a conserved proline residue (P1008) is required for IAA, but not BL, transport. Furthermore, we identify TWD1 as a calmodulin-activated peptidyl-prolyl cis-trans isomerase (PPIase) that selectively enhances IAA, but not BL, transport through isomerization of the E1007-P1008 peptide bond. Loss of TWD1 PPIase activity abolishes ABCB1-mediated IAA export without affecting BL transport, revealing a regulatory mechanism that prioritizes auxin over brassinosteroid transport. Cryo-EM, molecular docking, and molecular dynamics simulations of wild-type ABCB1 and the ABCB1P1008G variant suggest that the P1008 loop mediates long-range communication between the nucleotide-binding domain surface and the substrate-binding pocket, thereby providing a structural mechanism by which TWD1 modulates substrate specificity. In summary, our findings establish the structural basis of ABCB1 substrate selectivity and uncover a post-translational mechanism that selectively regulates auxin transport while preserving brassinosteroid transport.</jats:p>