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Anti-inflammatory activity of SMP30 modulates NF-κB through protein tyrosine kinase/phosphatase balance
Kyung Jin Jung1, Eun Kyeong Lee, Su Jin Kim
1Korea Institute of Toxicology, 141 Gajungro, Yuseong-gu, Daejeon, 305-343, Republic of Korea.
Unlabelled:
Recent studies on senescence marker protein-30 (SMP30) have shown that it has an important functional role in the aging process, but its precise participation in cellular works has not been fully determined. We hypothesize that SMP30 plays crucial roles in signaling processes by modulating the balance of protein tyrosine kinase (PTK)/protein tyrosine phosphatase (PTP) and in activating proinflammatory NF-κB. An experimental paradigm of gain and loss of SMP30 function was established using SMP30-overexpressed YPEN-1 cells (herein referred to as "SMP30(+) cells") and SMP30 (Y/-) knockout mouse kidneys. The resulting data show that SMP30 expression suppressed oxidative stress-induced PTK/PTP dysregulation and PP1/2A inactivation in SMP30(+) cells, leading to the suppression of NF-κB activation. In the kidneys of SMP30 (Y/-) mice, SMP30 deficiency was found to induce NF-κB activation via the upstream signaling of NIK/IKK and MAPKs and to upregulate downstream NF-κB-responsive gene expression. In this study, we also demonstrate for the first time that SMP30 deficiency induced PTK activity in SMP30 (Y/-) kidneys, thereby significantly increasing the tyrosine phosphorylation of a catalytic subunit of PP2A (PP2Ac-Tyr307). Based on these findings, we propose that SMP30 involves NF-κB regulation through the PTK/PTP balance and that the age-related decrease of SMP30 causes NF-κB activation, which contributes to an exacerbation of the inflammatory process during aging.
Key Messages:
SMP30-deficient mice induced a shorter lifespan and redox changes. Overexpression of SMP30 prevented oxidative stress insults. The depletion of SMP30 increased redox-related PTK/PTP imbalance and PP1/PP2A inactivation. The depletion of SMP30 caused an elevation of NF-κB-responsive inflammatory markers. SMP30 may be a potent inhibitory protein against oxidative stress and chronic inflammation.
Insights
Senescence marker protein-30 (SMP30) regulates inflammation by balancing protein tyrosine kinase/phosphatase activity. Decreased SMP30 levels during aging activate NF-κB, worsening inflammation and shortening lifespan.
Area of Science:
- Cellular Biology
- Aging Research
- Molecular Signaling
Background:
- Senescence marker protein-30 (SMP30) is implicated in aging, but its cellular roles, particularly in signaling pathways, remain unclear.
- Understanding SMP30's function is crucial for addressing age-related cellular dysfunction and inflammation.
Purpose of the Study:
- To investigate the role of SMP30 in modulating protein tyrosine kinase (PTK)/protein tyrosine phosphatase (PTP) balance.
- To determine SMP30's involvement in the activation of the proinflammatory transcription factor NF-κB.
- To elucidate the impact of SMP30 on oxidative stress and cellular signaling during aging.
Main Methods:
- Established cell models with SMP30 overexpression (SMP30(+) cells) and knockout mouse models (SMP30 (Y/-) kidneys).
- Analyzed PTK/PTP activity, protein tyrosine phosphorylation (specifically PP2Ac-Tyr307), and NF-κB signaling pathway activation (including NIK/IKK and MAPKs).
- Assessed the effects of SMP30 modulation on oxidative stress and NF-κB-responsive gene expression.
Main Results:
- SMP30 expression suppressed oxidative stress-induced PTK/PTP imbalance and PP1/2A inactivation, thereby inhibiting NF-κB activation.
- SMP30 deficiency in knockout mice led to NF-κB activation via NIK/IKK and MAPK signaling, upregulating inflammatory gene expression.
- SMP30 deficiency increased PTK activity and PP2Ac-Tyr307 phosphorylation in mouse kidneys.
Conclusions:
- SMP30 plays a critical role in regulating NF-κB activation through maintaining PTK/PTP balance.
- Age-related decline in SMP30 contributes to chronic inflammation by activating NF-κB.
- SMP30 demonstrates potential as an inhibitory agent against oxidative stress and chronic inflammation.
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