RRC ID 55864
著者 Chaudhari SN, Kipreos ET.
タイトル The Energy Maintenance Theory of Aging: Maintaining Energy Metabolism to Allow Longevity.
ジャーナル Bioessays
Abstract Fused, elongated mitochondria are more efficient in generating ATP than fragmented mitochondria. In diverse C. elegans longevity pathways, increased levels of fused mitochondria are associated with lifespan extension. Blocking mitochondrial fusion in these animals abolishes their extended longevity. The long-lived C. elegans vhl-1 mutant is an exception that does not have increased fused mitochondria, and is not dependent on fusion for longevity. Loss of mammalian VHL upregulates alternate energy generating pathways. This suggests that mitochondrial fusion facilitates longevity in C. elegans by increasing energy metabolism. In diverse animals, ATP levels broadly decreases with age. Substantial evidence supports the theory that increasing or maintaining energy metabolism promotes the survival of older animals. Increased ATP levels in older animals allow energy-intensive repair and homeostatic mechanisms such as proteostasis that act to prevent cellular aging. These observations support the emerging paradigm that maintaining energy metabolism promotes the survival of older animals.
巻・号 40(8)
ページ e1800005
公開日 2018-8-1
DOI 10.1002/bies.201800005
PMID 29901833
PMC PMC6314662
MeSH Adenosine Triphosphate / metabolism Animals Caenorhabditis elegans / cytology Caenorhabditis elegans / physiology* Caenorhabditis elegans Proteins / genetics Cullin Proteins / genetics Energy Metabolism* Longevity / physiology* Mitochondria / metabolism Mitochondrial Dynamics
IF 4.396
引用数 8
リソース情報
線虫 tm1683