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Biology subjects

Delhommel, F.

Publications and source records attributed to Delhommel, F..

2 recordsLinked to original sources

The essential co-chaperone Sgt1 regulates client dwell time in the Hsp90 chaperone cycle

The Hsp90 machinery is the most complex chaperone system in the eukaryotic cell. It is characterized by numerous co-chaperones that modulate the function of Hsp90. In S. cerevisiae, most of these cofactors can be deleted without affecting viability. Of the three essential ones, only the function of Sgt1 remained enigmatic. Our in vivo and in vitro experiments define key structural elements and determine the essential function of Sgt1 in the chaperoning of client proteins. We show that yeast Sgt1 exhibits a unique binding mode to Hsp90. The simultaneous interaction of Sgt1 with Hsp90 and client proteins enhances client maturation efficiency. Specifically, Sgt1 stabilizes Hsp90-client complexes and prevents their dissociation by the co-chaperone Aha1. Together, our findings reveal a distinct regulatory mechanism of the Hsp90 function, highlighting Sgt1 as a critical modulator of chaperone cycle progression.

biochemistry↗

Intramolecular autoinhibition of human PEX13 modulates peroxisomal import

Targeting and import of peroxisomal proteins depends on PEX5, PEX14 and PEX13. We present a biochemical and structural characterization of the PEX13 C-terminal region. By combining NMR spectroscopy, X-ray crystallography and biochemical methods, we show that the PEX13 SH3 domain mediates intramolecular interactions with a newly identified proximal FxxxF motif and also binds to WxxxF peptide motifs from the PEX5 NTD, demonstrating evolutionary conservation of this interaction from yeast to human. Strikingly, the C-terminal FxxxF motif autoinhibits the WxxxF/Y binding surface on the PEX13 SH3 domain. This is supported by high-resolution crystal structures, which show FxxxF or WxxxF/Y binding to the same, non-canonical surface on the SH3 domain. The FxxxF motif also binds the PEX14 NTD with micromolar affinity. Surprisingly, the canonical binding surface for PxxP motifs on the human PEX13 SH3 fold does not recognize PxxP motifs in PEX14, distinct from the yeast ortholog. The dynamic network of PEX13, PEX14 and PEX5 interactions mediated by diaromatic peptide motifs fine-tunes and modulates peroxisomal matrix import in cells.

biochemistry↗