This work shows that the human ER-resident RNF185 ubiquitin ligase complex destabilizes a small but specific set of membrane proteins that span all three ERAD branches, identifying RNF185-destabilized membrane proteins with distinct aberrancies that collectively encompass all canonical ERAD substrate classifications and unexpectedly diverse quality control defects.
Abstract
The endoplasmic reticulum (ER) is the primary site of eukaryotic membrane protein synthesis and quality control, which largely relies on ER-associated degradation (ERAD) to eliminate aberrant nascent proteins. In yeast, two ubiquitin ligases target proteins for ERAD based on aberrancies in substrate transmembrane (ERAD-M), lumenal (ERAD-L), or cytosolic (ERAD-C) domains. How an expanded repertoire of mammalian ERAD factors selects substrates across these classifications is unclear. Here, we show that the human ER-resident RNF185 ubiquitin ligase complex destabilizes a small but specific set of membrane proteins that span all three ERAD branches. Comparisons of three single-pass membrane proteins destabilized by RNF185 identify ERAD-M features in misoriented CHST10, ERAD-C features in unassembled SRPRB, and N-linked glycosylation-dependent ERAD-L features in ATP1B2. Our findings identify RNF185-destabilized membrane proteins with distinct aberrancies that collectively encompass all canonical ERAD substrate classifications and unexpectedly diverse quality control defects.
In eukaryotic cells, the function of each organelle depends on its unique protein composition. Protein targeting errors threaten organelle identity and function, yet how mistargeting errors are detected and resolved remains poorly understood. Here, we show that mitochondrial import stress drives widespread rerouting of...
Y. Tsuchiya, Nikita Sergejevs, M. E. Dueñas et al.· bioRxiv· 0 citations
Endoplasmic reticulum (ER)-phagy is an important ER quality-control pathway that selectively removes misfolded or unfolded proteins and damaged ER membranes through autophagic degradation in the vacuole. Recent studies have identified small guanosine triphosphatases (GTPases) as important regulators of the autophagy pa...
Shuai Hu, Xiao-Hui Ma, Zheng-Jia Wang et al.· Autophagy· 0 citations
Endoplasmic reticulum-associated degradation (ERAD) must dynamically adapt to cellular protein-folding demands, yet mechanisms regulating ERAD-associated adaptors remain incompletely defined. Here, we identify the E3 ubiquitin ligase RNF5 as a regulator of the ERAD adaptors HERPUD1 (HERP1) and OS9. RNF5 depletion incre...
It is hypothesized that the ZMPSTE24E336A trap mutant reveals a normally transient isoform of IFITM3 whose transmembrane span is inverted and that ZMPSTE24 is involved in the quality control of IFITM3 topology, either inverting, correcting or assisting in removal of aberrant IFITM3 molecules.
Eric D. Spear, Khurts Shilagardi, Sonia Sarju et al.· bioRxiv· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.