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Visualizing the chaperone-mediated folding trajectory of the G protein β5 β-propeller.


ABSTRACT: The cytosolic Chaperonin Containing Tailless polypeptide 1 (CCT) complex is an essential protein folding machine with a diverse clientele of substrates, including many proteins with β-propeller domains. Here, we determined structures of CCT in complex with its accessory co-chaperone, phosducin-like protein 1 (PhLP1), in the process of folding Gβ5, a component of Regulator of G protein Signaling (RGS) complexes. Cryo-EM and image processing revealed an ensemble of distinct snapshots that represent the folding trajectory of Gβ5 from an unfolded molten globule to a fully folded β-propeller. These structures reveal the mechanism by which CCT directs Gβ5 folding through initiating specific intermolecular contacts that facilitate the sequential folding of individual β-sheets until the propeller closes into its native structure. This work directly visualizes chaperone-mediated protein folding and establishes that CCT directs folding by stabilizing intermediates through interactions with surface residues that permit the hydrophobic core to coalesce into its folded state.

SUBMITTER: Wang S 

PROVIDER: S-EPMC10187262 | biostudies-literature | 2023 May

REPOSITORIES: biostudies-literature

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Visualizing the chaperone-mediated folding trajectory of the G protein β5 β-propeller.

Wang Shuxin S   Sass Mikaila I MI   Kwon Yujin Y   Ludlam W Grant WG   Smith Theresa M TM   Carter Ethan J EJ   Gladden Nathan E NE   Riggi Margot M   Iwasa Janet H JH   Willardson Barry M BM   Shen Peter S PS  

bioRxiv : the preprint server for biology 20230504


The cytosolic Chaperonin Containing Tailless polypeptide 1 (CCT) complex is an essential protein folding machine with a diverse clientele of substrates, including many proteins with β-propeller domains. Here, we determined structures of CCT in complex with its accessory co-chaperone, phosducin-like protein 1 (PhLP1), in the process of folding Gβ<sub>5</sub>, a component of Regulator of G protein Signaling (RGS) complexes. Cryo-EM and image processing revealed an ensemble of distinct snapshots th  ...[more]

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