Post-translational modifications in kidney diseases and associated cardiovascular risk.
Heidi NoelsVera JankowskiStefan J SchunkRaymond C VanholderSahir KalimJoachim JankowskiPublished in: Nature reviews. Nephrology (2024)
Patients with chronic kidney disease (CKD) are at an increased cardiovascular risk compared with the general population, which is driven, at least in part, by mechanisms that are uniquely associated with kidney disease. In CKD, increased levels of oxidative stress and uraemic retention solutes, including urea and advanced glycation end products, enhance non-enzymatic post-translational modification events, such as protein oxidation, glycation, carbamylation and guanidinylation. Alterations in enzymatic post-translational modifications such as glycosylation, ubiquitination, acetylation and methylation are also detected in CKD. Post-translational modifications can alter the structure and function of proteins and lipoprotein particles, thereby affecting cellular processes. In CKD, evidence suggests that post-translationally modified proteins can contribute to inflammation, oxidative stress and fibrosis, and induce vascular damage or prothrombotic effects, which might contribute to CKD progression and/or increase cardiovascular risk in patients with CKD. Consequently, post-translational protein modifications prevalent in CKD might be useful as diagnostic biomarkers and indicators of disease activity that could be used to guide and evaluate therapeutic interventions, in addition to providing potential novel therapeutic targets.
Keyphrases
- hydrogen peroxide
- chronic kidney disease
- oxidative stress
- nitric oxide
- disease activity
- rheumatoid arthritis
- systemic lupus erythematosus
- dna damage
- ischemia reperfusion injury
- dna methylation
- ankylosing spondylitis
- induced apoptosis
- binding protein
- genome wide
- juvenile idiopathic arthritis
- small molecule
- heat shock
- liver fibrosis
- endoplasmic reticulum stress
- heat shock protein