a 2025

Structural insights into ribosome anti-association mechanism in archaea

HASSAN, Ahmed Adel Ibrahim Hassona; Matyáš PINKAS; Kosuke ITO; Toshio UCHIUMI; Gabriel DEMO et al.

Základní údaje

Originální název

Structural insights into ribosome anti-association mechanism in archaea

Autoři

HASSAN, Ahmed Adel Ibrahim Hassona; Matyáš PINKAS; Kosuke ITO; Toshio UCHIUMI a Gabriel DEMO

Vydání

Ribosome meeting 2025, 2025

Další údaje

Jazyk

angličtina

Typ výsledku

Konferenční abstrakta

Stát vydavatele

Spojené státy

Utajení

není předmětem státního či obchodního tajemství

Odkazy

URL

Označené pro přenos do RIV

Ne

Organizace

Středoevropský technologický institut – Masarykova univerzita – Repozitář

Klíčová slova anglicky

ribosomal subunit; dimerization; cryoEM; structure

Návaznosti

LX22NPO5103, projekt VaV.
Změněno: 24. 7. 2025 00:49, RNDr. Daniel Jakubík

Anotace

V originále

Protein synthesis (translation) consumes a significant portion of cellular resources, necessitating specialized mechanisms to modulate translation during adverse conditions. Ribosome inactivation often involves ribosome-interacting proteins that enable ribosome dimerization, hibernation, or subunit anti-association, allowing organisms to adapt to stress. While such mechanisms are well-characterized in bacteria and eukaryotes, factor-mediated ribosome dimerization or anti-association in archaea has remained largely unexplored. Here, we present cryo-electron microscopy (cryo-EM) structures of an archaeal 30S dimer complexed with an archaeal ribosome dimerization factor (aRDF) from Pyrococcus furiosus. The aRDF-stabilized 30S dimer adopts a unique head-to-body architecture, distinct from the disome conformation observed during bacterial1,2 and eukaryotic ribosome hibernation4. aRDF interacts directly with the eS32 ribosomal protein, a critical component for subunit association, revealing its anti-association properties that inhibit the formation of archaeal 70S ribosomes. The archaeal system employs a unique strategy, offering valuable insights into ribosome inactivation and uncovering distinct mechanisms of ribosomal regulation across domains of life.
Zobrazeno: 3. 5. 2026 00:08