Auto-sumoylation of the Ubc9 E2 SUMO-conjugating Enzyme Extends Cellular Lifespan

Author:

Ryu Hong-Yeoul1,Jeong Dong-Won1,Kim Seung Yeon1,Jeoung Seok-Won1,Zhao Dejian2ORCID,Knight James2ORCID,Lam TuKiet3ORCID,Jin Jong Hwa4,Lee Hyun-Shik1ORCID,Hochstrasser Mark2ORCID

Affiliation:

1. Kyungpook National University

2. Yale University

3. Keck MS & Proteomics Resource, Yale School of Medicine

4. Osong Medical Innovation Foundation

Abstract

Abstract Calorie restriction (CR) provides anti-aging benefits through diverse processes, such as reduced metabolism and growth and increased mitochondrial activity. Although controversy still exists regarding CR-mediated lifespan effects, many researchers are seeking interventions that mimic the effects of CR. Yeast has proven to be a useful model system for aging studies, including CR effects. We report here that yeast adapted through in vitro evolution to the severe cellular stress caused by loss of the Ulp2 SUMO-specific protease exhibit both enhanced growth rates and replicative lifespan, and they have altered gene expression profiles similar to those observed in CR. Notably, in certain evolved ulp2Δ lines, a dramatic increase in the auto-sumoylation of Ubc9 E2 SUMO-conjugating enzyme results in altered regulation of multiple targets involved in energy metabolism and translation at both transcriptional and post-translational levels. This increase is essential for the survival of aged cells and CR-mediated lifespan extension. Thus, we suggest that high Ubc9 auto-sumoylation exerts potent anti-aging effects by promoting efficient energy metabolism-driven improvements in cell replication abilities. This potential could be therapeutically explored for the development of novel CR-mimetic strategies.

Publisher

Research Square Platform LLC

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