The RPAP3-Cterminal domain identifies R2TP-like quaternary chaperones

R2TP is an HSP90 co-chaperone that assembles important macro-molecular machineries. It is composed of an RPAP3-PIH1D1 heterodimer, which binds the two essential AAA+ATPases RUVBL1/RUVBL2. Here, we resolve the structure of the conserved C-terminal domain of RPAP3, and we show that it directly binds R...

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Veröffentlicht in:Nature communications 2018-05, Vol.9 (1), p.2093-16, Article 2093
Hauptverfasser: Maurizy, Chloé, Quinternet, Marc, Abel, Yoann, Verheggen, Céline, Santo, Paulo E., Bourguet, Maxime, C.F. Paiva, Ana, Bragantini, Benoît, Chagot, Marie-Eve, Robert, Marie-Cécile, Abeza, Claire, Fabre, Philippe, Fort, Philippe, Vandermoere, Franck, M.F. Sousa, Pedro, Rain, Jean-Christophe, Charpentier, Bruno, Cianférani, Sarah, Bandeiras, Tiago M., Pradet-Balade, Bérengère, Manival, Xavier, Bertrand, Edouard
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Sprache:eng
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Zusammenfassung:R2TP is an HSP90 co-chaperone that assembles important macro-molecular machineries. It is composed of an RPAP3-PIH1D1 heterodimer, which binds the two essential AAA+ATPases RUVBL1/RUVBL2. Here, we resolve the structure of the conserved C-terminal domain of RPAP3, and we show that it directly binds RUVBL1/RUVBL2 hexamers. The human genome encodes two other proteins bearing RPAP3-C-terminal-like domains and three containing PIH-like domains. Systematic interaction analyses show that one RPAP3-like protein, SPAG1, binds PIH1D2 and RUVBL1/2 to form an R2TP-like complex termed R2SP. This co-chaperone is enriched in testis and among 68 of the potential clients identified, some are expressed in testis and others are ubiquitous. One substrate is liprin-α2, which organizes large signaling complexes. Remarkably, R2SP is required for liprin-α2 expression and for the assembly of liprin-α2 complexes, indicating that R2SP functions in quaternary protein folding. Effects are stronger at 32 °C, suggesting that R2SP could help compensating the lower temperate of testis. R2TP is an HSP90 co-chaperone composed of an RPAP3-PIH1D1 heterodimer, which binds two essential AAA+ ATPases RUVBL1/RUVBL2. Here authors use a structural approach to study RPAP3 and find an RPAP3-like protein (SPAG1) which also forms a co-chaperone complex with PIH1D2 and RUVBL1/2 enriched in testis.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-018-04431-1