Replicative Senescence Induced by Romo1-derived Reactive Oxygen Species
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Chung, Young Min
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Korea Univ, Coll Med, Grad Sch Med, Brain Korea Program Biomed Sci 21, Seoul 136705, South KoreaKorea Univ, Coll Med, Grad Sch Med, Brain Korea Program Biomed Sci 21, Seoul 136705, South Korea
Chung, Young Min
[1
]
Lee, Seung Baek
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Korea Univ, Coll Med, Grad Sch Med, Brain Korea Program Biomed Sci 21, Seoul 136705, South KoreaKorea Univ, Coll Med, Grad Sch Med, Brain Korea Program Biomed Sci 21, Seoul 136705, South Korea
Lee, Seung Baek
[1
]
Kim, Hyung Jung
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Yonsei Univ, Coll Med, Dept Internal Med, Seoul 135270, South KoreaKorea Univ, Coll Med, Grad Sch Med, Brain Korea Program Biomed Sci 21, Seoul 136705, South Korea
Kim, Hyung Jung
[2
]
Park, Seon Ho
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Korea Univ, Coll Med, Grad Sch Med, Brain Korea Program Biomed Sci 21, Seoul 136705, South KoreaKorea Univ, Coll Med, Grad Sch Med, Brain Korea Program Biomed Sci 21, Seoul 136705, South Korea
Park, Seon Ho
[1
]
Kim, Jung Jin
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Korea Univ, Coll Med, Grad Sch Med, Brain Korea Program Biomed Sci 21, Seoul 136705, South KoreaKorea Univ, Coll Med, Grad Sch Med, Brain Korea Program Biomed Sci 21, Seoul 136705, South Korea
Kim, Jung Jin
[1
]
Chung, Jin Sil
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Korea Univ, Coll Med, Grad Sch Med, Brain Korea Program Biomed Sci 21, Seoul 136705, South KoreaKorea Univ, Coll Med, Grad Sch Med, Brain Korea Program Biomed Sci 21, Seoul 136705, South Korea
Chung, Jin Sil
[1
]
Do Yoo, Young
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Korea Univ, Coll Med, Grad Sch Med, Brain Korea Program Biomed Sci 21, Seoul 136705, South KoreaKorea Univ, Coll Med, Grad Sch Med, Brain Korea Program Biomed Sci 21, Seoul 136705, South Korea
Do Yoo, Young
[1
]
机构:
[1] Korea Univ, Coll Med, Grad Sch Med, Brain Korea Program Biomed Sci 21, Seoul 136705, South Korea
[2] Yonsei Univ, Coll Med, Dept Internal Med, Seoul 135270, South Korea
Persistent accumulation of DNA damage induced by reactive oxygen species (ROS) is proposed to be a major contributor toward the aging process. Furthermore, an increase in age-associated ROS is strongly correlated with aging in various species, including humans. Here we showed that the enforced expression of the ROS modulator 1 (Romo1) triggered premature senescence by ROS production, and this also contributed toward induction of DNA damage. Romo1-derived ROS was found to originate in the mitochondrial electron transport chain. Romo1 expression gradually increased in proportion to population doublings of IMR-90 human fibroblasts. An increase in ROS production in these cells with high population doubling was blocked by the Romo1 knockdown using Romo1 small interfering RNA. Romo1 knockdown also inhibited the progression of replicative senescence. Based on these results, we suggest that age-related ROS levels increase, and this contributes to replicative senescence, which is directly associated with Romo1 expression.