Abstract

Vascular endothelial cells (ECs) senescence correlates with the increase of cardiovascular diseases in ageing population. Although ECs rely on glycolysis for energy production, little is known about the role of glycolysis in ECs senescence. Here, we report a critical role for glycolysis-derived serine biosynthesis in preventing ECs senescence. During senescence, the expression of serine biosynthetic enzyme PHGDH is significantly reduced due to decreased transcription of the activating transcription factor ATF4, which leads to reduction of intracellular serine. PHGDH prevents premature senescence primarily by enhancing the stability and activity of pyruvate kinase M2 (PKM2). Mechanistically, PHGDH interacts with PKM2, which prevents PCAF-catalyzed PKM2 K305 acetylation and subsequent degradation by autophagy. In addition, PHGDH facilitates p300-catalyzed PKM2 K433 acetylation, which promotes PKM2 nuclear translocation and stimulates its activity to phosphorylate H3T11 and regulate the transcription of senescence-associated genes. Vascular endothelium-targeted expression of PHGDH and PKM2 ameliorates ageing in mice. Our findings reveal that enhancing serine biosynthesis could become a therapy to promote healthy ageing.

Little is known about the role of glycolysis in cellular senescence. Here, authors report that glycolysis-derived serine biosynthesis activates PKM2 to phosphorylate histone H3T11, prevent cell senescence, and promote healthy aging.

Details

Title
Phosphoglycerate dehydrogenase activates PKM2 to phosphorylate histone H3T11 and attenuate cellular senescence
Author
Wu, Yinsheng 1   VIAFID ORCID Logo  ; Tang, Lixu 2 ; Huang, Han 1 ; Yu, Qi 1   VIAFID ORCID Logo  ; Hu, Bicheng 3 ; Wang, Gang 1 ; Ge, Feng 4   VIAFID ORCID Logo  ; Yin, Tailang 5   VIAFID ORCID Logo  ; Li, Shanshan 1   VIAFID ORCID Logo  ; Yu, Xilan 1   VIAFID ORCID Logo 

 Hubei University, State Key Laboratory of Biocatalysis and Enzyme Engineering, School of Life Sciences, Wuhan, China (GRID:grid.34418.3a) (ISNI:0000 0001 0727 9022) 
 Wuhan Sports University, School of Martial Arts, Wuhan, China (GRID:grid.443620.7) (ISNI:0000 0001 0479 4096) 
 Wuhan No.1 Hospital, The Central Laboratory, Wuhan, China (GRID:grid.410609.a) 
 Chinese Academy of Sciences, Key Laboratory of Algal Biology, Institute of Hydrobiology, Wuhan, China (GRID:grid.9227.e) (ISNI:0000000119573309) 
 Renmin Hospital of Wuhan University, Reproductive Medicine Center, Wuhan, China (GRID:grid.412632.0) (ISNI:0000 0004 1758 2270) 
Pages
1323
Publication year
2023
Publication date
2023
Publisher
Nature Publishing Group
e-ISSN
20411723
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2785501236
Copyright
© The Author(s) 2023. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.