Global Profiling of N-terminal Cysteine-Dependent Degradation Mechanisms
Bekturova, A.; Makaros, Y.; Ben-David, S.; Koren, I.
Show abstract
Hypoxia, a condition characterized by insufficient oxygen supply, challenges cellular homeostasis and energy production, driving the activation of adaptive responses to maintain survival under these stress-inducing conditions. One key strategy involves enzymatic oxidation of N-terminal cysteine residues coupled with proteolysis through the Cys-Arg/N-degron pathway. Despite the presence of hundreds of proteins with N-terminal cysteine in humans, only two have been identified as substrates of this pathway, and its substrate selectivity remains unclear. Moreover, the biological role of this pathway in the cellular response to hypoxia is not well defined. By employing a systematic proteomics approach, we discovered that nearly half of the cysteine-commencing proteome could be regulated by the Cys-Arg/N-degron pathway. Mutagenesis experiments revealed the specificty of Cys-Arg/N-degron pathway showing a preference for hydrophobic and positively charged residues following cysteine. Furthermore, we uncovered substrates that are regulated by this pathway during hypoxia, including IP6K1. The loss of IP6K1 impaired glucose uptake, glycolytic ATP production, and overall mitochondrial morphology and function. As a result, IP6K1-deficient cells exhibited disrupted metabolic adaptation under hypoxic conditions and decreased survival under stress. These findings underscore the importance of the Cys-Arg/N-degron pathway in regulating metabolic responses and highlight its potential importance in hypoxia-related disorders.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- Comparative analysis of N-terminal cysteine dioxygenation and prolyl-hydroxylation as oxygen sensing pathways in mammalian cells 96%
- Reactive nitrogen species inhibit branched chain alpha-ketoacid dehydrogenasecomplex and impact muscle cell metabolism 96%
- Up-regulation of cholesterol synthesis by lysosomal defects requires a functional mitochondrial respiratory chain 95%
Similar papers in this journal
- Amino acid restriction sensitizes lung cancer cells toferroptosis via GCN2-dependent activation of the integratedstress response 94%
- Nrf1 is an indispensable redox-determining factor for mitochondrial homeostasis by integrating multi-hierarchical regulatory networks 94%
- Peroxidasin protein expression and enzymatic activity in metastatic melanoma cell lines are associated with invasive potential 94%
Similar papers in this journal
- A pyro-phosphodegron controls MYC polyubiquitination to regulate cell survival 94%
- Single-residue mutation in protein kinase C toggles between cancer and neurodegeneration 94%
- Comprehensive analyses of the cysteine thiol oxidation of PKM2 reveals the effects of multiple oxidation on cellular oxidative stress response 94%
Similar papers in this journal
- eIF2α integrates proteotoxic signals both from ER and cytoplasm: Hsp70-Bag3 module regulates HRI-dependent phosphorylation of eIF2α 96%
- A PEROXO-Tag enables rapid isolation of peroxisomes from human cells 94%
- Mutating novel interaction sites in NRP1 reduces SARS-CoV-2 spike protein internalization 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.