| Literature DB >> 33828486 |
Jiaxing Sun1, Shi Tai1, Liang Tang1, Hui Yang1, Mingxian Chen1, Yichao Xiao1, Xuping Li1, Zhaowei Zhu1, Shenghua Zhou1.
Abstract
Vascular aging plays a pivotal role in the morbidity and mortality of elderly people. Decrease in autophagy leads to acceleration of vascular aging, while increase in autophagy leads to deceleration of vascular aging. And emerging evidence indicates that acetylation plays an important role in autophagy regulation; therefore, recent research has focused on an in-depth analysis of the mechanisms underlying this regulation. In this review, current knowledge on the role of acetylation of autophagy-related proteins and the mechanisms by which acetylation including non-autophagy-related acetylation and autophagy related acetylation regulate vascular aging have been discussed. We conclude that the occurrence of acetylation modification during autophagy is a fundamental mechanism underlying autophagy regulation and provides promising targets to retard vascular aging.Entities:
Keywords: FOXO1; SIRT1; acetylation; autophagy; vascular aging
Year: 2021 PMID: 33828486 PMCID: PMC8019697 DOI: 10.3389/fphys.2021.598267
Source DB: PubMed Journal: Front Physiol ISSN: 1664-042X Impact factor: 4.566
FIGURE 1Acetylation modification during the process of autophagy. ATG, autophagy-related protein; BECN1, beclin1; EP300, E1A binding protein p300; FIP200, FAK family kinase-interacting protein of 200 kDa; GSK3β, glycogen synthase kinase-3β; HDAC, histone deacetylase; KAT, lysine acetyltransferase; LC3, microtubule-associated protein light chain 3; PIK3C3, phosphoinositide-3-kinase class 3; RB1CC1, RB1-inducible coiled-coil protein 1; TIP60, Tat-interactive protein 60 kDa; ULK1, unc-51-like kinase 1; VPS, vacuolar protein sorting.
The acetylation modification in vascular aging.
| 2,3,5,4′-tetrahydroxystilbene-2-O-β- | H2O2 | SIRT1 | p53 | Ameliorates senescence | |
| Ginsenoside Rb1 | H2O2 | SIRT1 | eNOS | Ameliorates senescence | |
| TMAO | SIRT1 | eNOS | Increases senescence | ||
| SIRT1 inhibitors (nicotinamide, sirtinol, and EX527) | SIRT1 inhibition | SIRT1 | PGC-1α | Ameliorates EC dysfunction | |
| (-)-epicatechin | Replicative | SIRT1 | eNOS | Ameliorates senescence | |
| Metformin | Hyperglycemia | SIRT1 | FOXO1&p53 | Ameliorates senescence | |
| MCM | SIRT3 | ATG5 | Induces dysfunction | ||
| – | – | HDAC4 | FOXO3a | Induces inflammation | |
| Ginsenoside Rb1 | Ox-LDL | SIRT1 | BECN1 | Ameliorates senescence | |
| – | Ang II | GCN5 | PGC-1α | Increases senescence | |
| α7nAChR | Ang II | SIRT1 | p53 | Ameliorates senescence | |
| Neuregulin-1/Erb4 | H2O2 | unknown | P53 | Ameliorates senescence | |
| Exendin-4 | Ang II | EP300 | Nrf2 | Ameliorates senescence | |
| – | – | KAT2A/GCN5 | α-Tubulin | Inhibits VSMC migration |