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Gestaut, D. R.

Publications and source records attributed to Gestaut, D. R..

2 recordsLinked to original sources

An ESCRT-dependent pathway of Nuclear and Cytoplasmic Spatial PQC is coordinated at Nuclear Vacuolar Junctions

Effective Protein Quality Control (PQC), essential for cellular health, relies on spatial sequestration of misfolded proteins into defined inclusions. Here we elucidate the coordination of nuclear and cytoplasmic spatial PQC. While cytoplasmic misfolded proteins concentrate in a cytoplasmic, perinuclear Juxta Nuclear Quality control compartment (JUNQ), nuclear misfolded proteins sequester into a perinucleolar IntraNuclear Quality control compartment (INQ). Particle tracking reveals the INQ and JUNQ converge to face each other across the nuclear envelope at a site proximal to the Nuclear-Vacuolar Junction (NVJ) marked by perinuclear ESCRT-II/-III protein Chm7. Strikingly, this ESCRT-dependent convergence facilitates VPS4-dependent vacuolar clearance of misfolded cytoplasmic and nuclear proteins, the latter entailing extrusion of nuclear INQ into the vacuole. We propose perinuclear ESCRT coordinates spatial PQC at nuclear-vacuolar contacts to facilitate vacuolar clearance of nuclear and cytoplasmic misfolded proteins.

biochemistry↗

Structural visualization of the tubulin folding pathway directed by eukaryotic chaperonin TRiC

SUMMARYThe ATP-dependent ring-shaped chaperonin TRiC/CCT is essential for cellular proteostasis. To uncover why some eukaryotic proteins can only fold with TRiC assistance, we reconstituted the folding of {beta}-tubulin using human Prefoldin and TRiC. We find unstructured {beta}-tubulin is delivered by Prefoldin to the open TRiC chamber followed by ATP-dependent chamber closure. CryoEM resolves four near-atomic resolution structures containing progressively folded {beta}-tubulin intermediates within the closed TRiC chamber, culminating in native tubulin. This substrate folding pathway appears closely guided by site-specific interactions with conserved regions in the TRiC chamber. Initial electrostatic interactions between the TRiC interior wall and both the folded tubulin N-domain and its C-terminal E-hook tail establish the native substrate topology, thus enabling C-domain folding. Disordered CCT C-termini within the chamber promote subsequent folding of tubulin Core and Middle domains and GTP-binding. Thus, TRiCs chamber provides chemical and topological directives that shape the folding landscape of its obligate substrates.

biochemistry↗