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Happily (n)ever after: Aging in the context of oxidative stress, proteostasis loss and cellular senescence
- Source :
- Redox Biology, 11: 482-501, Redox Biology, Redox Biology, Vol 11, Iss, Pp 482-501 (2017)
- Publication Year :
- 2017
- Publisher :
- Elsevier BV, 2017.
-
Abstract
- Aging is a complex phenomenon and its impact is becoming more relevant due to the rising life expectancy and because aging itself is the basis for the development of age-related diseases such as cancer, neurodegenerative diseases and type 2 diabetes. Recent years of scientific research have brought up different theories that attempt to explain the aging process. So far, there is no single theory that fully explains all facets of aging. The damage accumulation theory is one of the most accepted theories due to the large body of evidence found over the years. Damage accumulation is thought to be driven, among others, by oxidative stress. This condition results in an excess attack of oxidants on biomolecules, which lead to damage accumulation over time and contribute to the functional involution of cells, tissues and organisms. If oxidative stress persists, cellular senescence is a likely outcome and an important hallmark of aging. Therefore, it becomes crucial to understand how senescent cells function and how they contribute to the aging process. This review will cover cellular senescence features related to the protein pool such as morphological and molecular hallmarks, how oxidative stress promotes protein modifications, how senescent cells cope with them by proteostasis mechanisms, including antioxidant enzymes and proteolytic systems. We will also highlight the nutritional status of senescent cells and aged organisms (including human clinical studies) by exploring trace elements and micronutrients and on their importance to develop strategies that might increase both, life and health span and postpone aging onset.<br />Graphical abstract fx1
- Subjects :
- GSSG, glutathione disulfide
Aging
TGFβ, transforming-growth-factor-β
Bcl-2, B-cell lymphoma 2
TNF-α, tumor necrosis factor alpha
Cys, cysteine
Fe, iron
HSF1, heat shock factor protein 1
Srx, sulfiredoxin
ULK1, unc-51 like kinase 1
Review Article
Antioxidants
Se, selenium
Neoplasms
Mn, manganese
UPS, ubiquitin proteasomal system
GSH, glutathione
TFEB, transcription factor EB
Raf, rapidly accelerated fibrosarcoma
Micronutrients
lcsh:QH301-705.5
Ub, ubiquitin
Cu, copper
Cellular Senescence
lcsh:R5-920
TE, trace elements
DDR, DNA damage response
AGEs, advanced glycation endproducts
GPx, glutathione peroxidase
Ump1, ubiquitin-mediated proteolysis 1
ATGs, autophagy-related proteins
SAHF, senescence-associated heterochromatic foci
ALP, autophagy-lysosome pathway
MiT/TFE, microphthalmia/transcription factor E
MAP2K3, mitogen-activated protein kinase kinase 3
Hsc70, heat shock cognate 70
Zn, zinc
Oxidants
BrdU, 5-bromodeoxyuridine
ULK1, autophagy-initiating kinase ULK1
H2O2, hydrogen peroxide
RA, retinoic acid
lcsh:Medicine (General)
PD, Parkinson's Disease
PARP1, poly (ADP-ribose) polymerase 1
IKK, IκB-Kinase
SASP, senescence associated secretory phenotype
ARF, alternate reading frame
Msr, methionine sulfoxide reductase
IL, Interleukins
MiA, microautophagy
Senescence
MCI, mild cognitive impairment
O2∙−, superoxide
RNS, reactive nitrogen species
mTOR, mammalian target of rapamycin
∙OH, hydroxyl radical
ROS, reactive oxygen species
SA-β-Gal, senescence-associated β-galactosidase activity
LC3, microtubule-associated protein light chain 3
MA, Macroautophagy
Ras, rat sarcoma
Humans
Trace elements
Proteostasis
Protein oxidation
AD, Alzheimer's Disease
IFN-γ, interferon gamma
LAMP2a, lysosome-membrane associated protein type 2A
Hsps, heat shock proteins
Nrf2, nuclear-erythroid factor 2
PINK1, PTEN-induced putative kinase 1 Prxs, peroxiredoxins
Oxidative Stress
lcsh:Biology (General)
Diabetes Mellitus, Type 2
LAMP1, lysosome-membrane associated protein 1
RDA, recommended dietary allowance
CMA, chaperone-mediated Autophagy
BAG3, Bcl2-associated athanogene 3
CVD, cardiovascular diseases
SIPS, stress induced premature senescence
Subjects
Details
- ISSN :
- 22132317
- Volume :
- 11
- Database :
- OpenAIRE
- Journal :
- Redox Biology
- Accession number :
- edsair.pmid.dedup....13c87b488911ba6dca317e83859f0380
- Full Text :
- https://doi.org/10.1016/j.redox.2016.12.001