Structure of the γ-tubulin ring complex-capped microtubule

  • Nat Struct Mol Biol. 2024 Jul;31(7):1124-1133. doi: 10.1038/s41594-024-01264-z.
Amol Aher  #  1 Linas Urnavicius  #  1 Allen Xue  1 Kasahun Neselu  2 Tarun M Kapoor  3
Affiliations
  • 1. Laboratory of Chemistry and Cell Biology, The Rockefeller University, New York, NY, USA.
  • 2. Simons Electron Microscopy Center, New York Structural Biology Center, New York, NY, USA.
  • 3. Laboratory of Chemistry and Cell Biology, The Rockefeller University, New York, NY, USA. [email protected].
  • # Contributed equally.
Abstract

Microtubules are composed of α-tubulin and β-tubulin dimers positioned head-to-tail to form protofilaments that associate laterally in varying numbers. It is not known how cellular microtubules assemble with the canonical 13-protofilament architecture, resulting in micrometer-scale α/β-tubulin tracks for intracellular transport that align with, rather than spiral along, the long axis of the filament. We report that the human ~2.3 MDa γ-tubulin ring complex (γ-TuRC), an essential regulator of microtubule formation that contains 14 γ-tubulins, selectively nucleates 13-protofilament microtubules. Cryogenic electron microscopy reconstructions of γ-TuRC-capped microtubule minus ends reveal the extensive intra-domain and inter-domain motions of γ-TuRC subunits that accommodate luminal bridge components and establish lateral and longitudinal interactions between γ-tubulins and α-tubulins. Our structures suggest that γ-TuRC, an inefficient nucleation template owing to its splayed conformation, can transform into a compacted cap at the microtubule minus end and set the lattice architecture of cellular microtubules.