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Structure of the mammalian ciliary transition zone microtubule doublet

Cai, B.;Camardiel, A.;Grinsven, E.;Veghel, T.;Aher, A.;Aarts, E.;Xu, Y.;Beltrao, P.;Beekman, J.;Akhmanova, A.;Xu, J.;Wieczorek, M.

2026-06-12 Cell Biology
10.64898/2026.06.11.731632 bioRxiv
Show abstract

The ciliary transition zone gates bidirectional protein trafficking to maintain the specialized ciliary proteome using microtubule doublets as a scaffold. While ciliary axonemal doublets are well-characterized, the molecular architecture of the transition zone doublet remains elusive. Here, we report the structure of the mammalian transition zone doublet from bovine tracheal cilia using cryo-electron tomography at 4.7-5.0 [A] resolution. The transition zone doublet is a structurally independent segment defined by an 8 nm-periodic arrangement of unique microtubule-inner proteins (MIPs) and microtubule-associated proteins (MAPs). We identify the calcium-binding protein CAPSL as a lumenal MIP that forms a pseudo-helical spiral and stabilizes microtubules in vitro. Furthermore, a dense MAP network on the A-microtubule surface clashes with intraflagellar transport (IFT) motor binding sites, suggesting anterograde IFT is directed to the B-microtubule for potential regulation by MAP9. Our work provides a structural framework for understanding gated ciliary transport and transition zone-linked human ciliopathies.

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