<HashMap><database>GEO</database><file_versions><headers><Content-Type>application/xml</Content-Type></headers><body><files><Other>ftp://ftp.ncbi.nlm.nih.gov/geo/series/GSE333nnn/GSE333678/</Other></files><type>primary</type></body><statusCode>OK</statusCode><statusCodeValue>200</statusCodeValue></file_versions><scores/><additional><omics_type>Other</omics_type><species>Homo sapiens</species><gds_type>Other</gds_type><full_dataset_link>https://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE333678</full_dataset_link><repository>GEO</repository><entry_type>GSE</entry_type></additional><is_claimable>false</is_claimable><name>FKBP8 connects the Hsp70-Hsp90 chaperone machinery to the folding of membrane proteins</name><description>The folding of membrane protein cytoplasmic domains on the endoplasmic reticulum (ER) surface, and their coordination with transmembrane and exoplasmic regions, remains poorly understood. Through a genome-wide CRISPR-Cas9 screen, we identified the ER-anchored FK506 binding protein 8 (FKBP8) as a chaperone essential for membrane protein folding and assembly. Using ABC transporters as model substrates, we show that FKBP8 cooperates with Hsp70-Hsp90 machinery to remodel nascent or misfolded cytosolic domains into their native conformations. Cryo-EM analysis reveals that FKBP8 employs a conserved hydrophobic ϕ94ϕ96ϕ97/ϕ158ϕ162 cluster to help form a large client-binding cavity within the FKBP8–Hsp90 complex that captures folding intermediates. FKBP8 deficiency, disruption of this cluster, or disease-associated mutations within FKBP8 abolish substrate maturation, leading to ER retention and degradation. Reconstitution with purified components demonstrates that FKBP8 and Hsp40-Hsp70-HOP-Hsp90 constitute a minimal machinery capable of restoring the native structure of a misfolded ABC transporter. These findings uncover a dedicated folding module at the ER-cytosol interface that bridges cytosolic chaperones with membrane protein quality control, suggesting a broad role for FKBP8 in safeguarding the biogenesis of complex membrane proteins.</description><dates><publication>2026/08/08</publication></dates><accession>GSE333678</accession><cross_references><GSM>GSM9770763</GSM><GSM>GSM9770762</GSM><GPL>24676</GPL><GSE>333678</GSE><taxon>Homo sapiens</taxon><PMID>[42321214]</PMID></cross_references></HashMap>