Authors
Yong Ryoul Yang, Minseok Song, Ho Lee, Yoon Jeon, Eun‐Jeong Choi, Hyun‐Jun Jang, Hyo Youl Moon, Ha‐Young Byun, Eung‐Kyun Kim, Dae Hyun Kim, Mi Nam Lee, Ara Koh, Jaewang Ghim, Jang Hyun Choi, Whaseon Lee‐Kwon, Kyong Tai Kim, Sung Ho Ryu, Pann‐Ghill Suh
Publication date
2012/6
Journal
Aging cell
Volume
11
Issue
3
Pages
439-448
Publisher
Blackwell Publishing Ltd
Description
Dysregulation of O‐GlcNAc modification catalyzed by O‐GlcNAc transferase (OGT) and O‐GlcNAcase (OGA) contributes to the etiology of chronic diseases of aging, including cancer, cardiovascular disease, type 2 diabetes, and Alzheimer’s disease. Here we found that natural aging in wild‐type mice was marked by a decrease in OGA and OGT protein levels and an increase in O‐GlcNAcylation in various tissues. Genetic disruption of OGA resulted in constitutively elevated O‐GlcNAcylation in embryos and led to neonatal lethality with developmental delay. Importantly, we observed that serum‐stimulated cell cycle entry induced increased O‐GlcNAcylation and decreased its level after release from G2/M arrest, indicating that O‐GlcNAc cycling by OGT and OGA is required for precise cell cycle control. Constitutively, elevated O‐GlcNAcylation by OGA disruption impaired cell proliferation and resulted in mitotic …
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