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Phosphorylation of P-stalk proteins defines the ribosomal state for interaction with auxiliary protein factors

  • Kamil Filipek,
  • Sandra Blanchet,
  • Eliza Molestak,
  • Monika Zaciura,
  • Colin Chih-Chien Wu,
  • Patrycja Horbowicz-Drożdżal,
  • Przemysław Grela,
  • Mateusz Zalewski,
  • Sebastian Kmiecik,
  • Alan González-Ibarra,
  • Dawid Krokowski,
  • Przemysław Latoch,
  • Agata L Starosta,
  • Mateusz Mołoń,
  • Yutian Shao,
  • Lidia Borkiewicz,
  • Barbara Michalec-Wawiórka,
  • Leszek Wawiórka,
  • Konrad Kubiński,
  • Katarzyna Socała,
  • Piotr Wlaź,
  • Kyle W Cunningham,
  • Rachel Green,
  • Marina V Rodnina,
  • Marek Tchórzewski

摘要

Ribosomal action is facilitated by the orchestrated work of trans-acting factors and ribosomal elements, which are subject to regulatory events, often involving phosphorylation. One such element is the ribosomal P-stalk, which plays a dual function: it activates translational GTPases, which support basic ribosomal functions, and interacts with the Gcn2 kinase, linking the ribosomes to the ISR pathway. We show that P-stalk proteins, which form a pentamer, exist in the cell exclusively in a phosphorylated state at five C-terminal domains (CTDs), ensuring optimal translation (speed and accuracy) and may play a role in the timely regulation of the Gcn2-dependent stress response. Phosphorylation of the CTD induces a structural transition from a collapsed to a coil-like structure, and the CTD gains conformational freedom, allowing specific but transient binding to various protein partners, optimizing the ribosome action. The report reveals a unique feature of the P-stalk proteins, indicating that, unlike most ribosomal proteins, which are regulated by phosphorylation in an on/off manner, the P-stalk proteins exist in a constantly phosphorylated state, which optimizes their interaction with auxiliary factors.