Characterization and contribution of RPE senescence to Age-related macular degeneration in Tnfrsf10 knock out mice
WADA, I.; Mori, K.; Sreekumar, P. G.; Ji, R.; Spee, C.; Hone, E.; Ishikawa, K.; Sonoda, K.-H.; Kannan, R.
Show abstract
BackgroundRetinal pigment epithelial cells (RPE) play vital role in the pathogenesis of age-related macular degeneration (AMD). Our laboratory has shown that RPE cellular senescence contributed to the pathophysiology of experimental AMD, and SASP members are involved in this process. Recently, we presented confirmatory evidence to earlier GWAS studies that dysregulation of tumor necrosis factor receptor superfamily 10A (TNFRSF10A) dysregulation leads to AMD development and is linked to RPE dysfunction. This study aims to investigate the contribution of RPE senescence to AMD pathophysiology using TNFRSF10A silenced human RPE (hRPE) cells and Tnfrsf10 KO mice. MethodsSub-confluent primary hRPE cells and TNFRSF10A silenced hRPE were exposed to stress-induced premature senescence with H2O2 (500 M, 48h), and senescence-associated markers ({beta}gal, p16, and p21) were analyzed by RT-PCR and WB analysis. The effect of H2O2-induced senescence in non-silenced and silenced hRPE on OXPHOS and glycolysis was determined using Seahorse XF96 analyzer. Male C57BL/6J Tnfrsf10 KO (Tnfrsf10-/-) mice were used to study the regulation of senescence by TNFRSF10A in vivo. Expression of p16 and p21 in control and KO mice of varying ages were determined by RT-PCR, WB, and immunostaining analysis. ResultsThe senescence-associated p16 and p21 showed a significant (p < 0.01) upregulation with H2O2 induction at the gene (1.8- and 3-fold) and protein (3.2- and 4-fold) levels in hRPE cells. The protein expression of p16 and p21 was further significantly increased by co-treatment with siRNA (p < 0.05 vs. H2O2). Mitochondrial oxygen consumption rate (OCR) and extracellular acidification rate (ECAR) (pmol/min/total DNA) increased with senescence induction by H2O2 for 48h in control RPE, and knockdown of TNFRSF10A caused a further increase in OCR and ECAR. In addition, co-treatment with PKC activator significantly improved all parameters. Similarly, in vivo studies showed upregulation of p16 and p21 by RT-PCR, WB, and immunostaining analysis in RPE/choroid of Tnfrsf10 KO mice. When subjected to examination across distinct age groups, namely young (1-3 months), middle (6-9 months), and old (12-15 months) mice, a discernible age-related elevation in the expression of p16 and p21 was observed. ConclusionsOur findings suggest that TNRSF10A is a regulator of regulates in RPE senescence. Further work on elucidating pathways of senescence will facilitate the development of new therapeutic targets for AMD.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- DNA damage and oxidizing conditions activate p53 through differential upstream signaling pathways. 92%
- Enhanced activity of glycolytic enzymes in Drosophila and human cell models of Parkinson's disease based on DJ-1 deficiency 91%
- GSK-3alpha-BNIP3 axis promotes mitophagy in human cardiomyocytes under hypoxia 90%
Similar papers in this journal
- mTOR inhibition via Rapamycin treatment partially reverts the deficit in energy metabolism caused by FH loss in RPE cells 95%
- Oxidative stress in retinal pigment epithelial cells increased endogenous complement-dependent inflammatory and angiogenic responses - independent from exogenous complement sources 93%
- Mechanism of PMC (2,2,5,7,8-pentamethyl-6-chromanol), a sterically hindered phenol antioxidant, in rescuing oxidized low-density lipoprotein-induced cytotoxicity in human retinal pigment epithelial cells 93%
Similar papers in this journal
Similar papers in this journal
- Single-cell transcriptomic profiling in inherited retinal degen-eration reveals distinct metabolic pathways in rod and cone photoreceptors 95%
- A small molecule that promotes cellular senescence prevents fibrogenesis and tumorigenesis in vitro 94%
- Biology of healthy aging: Biological hallmarks of stress resistance-related and unrelated to longevity in humans 93%
Similar papers in this journal
- Puerarin blocks aging phenotype in cultured human dermal fibroblasts 97%
- Serum-deprivation response of ARPE-19 cells; expression patterns relevant to age-related macular degeneration. 96%
- Senescent response in inner annulus fibrosus cells in response to TNFα, H2O2, and TNFα-induced nucleus pulposus senescent secretome 95%
"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.