Muscle fiber‐specific apoptosis and TNF‐α signaling in sarcopenia are attenuated by life‐long calorie restriction
- 21 January 2005
- journal article
- Published by Wiley in The FASEB Journal
- Vol. 19 (6) , 1-33
- https://doi.org/10.1096/fj.04-2870fje
Abstract
Increased tumor necrosis factor-alpha (TNF-alpha) levels have been found with age and are connected to muscle atrophy and cell loss, yet the signaling events that occur in vivo are unknown. Calorie restriction (CR), a robust intervention shown to repeatedly evade the physiological declines associated with aging, has been reported to reduce TNF-alpha and may assist in understanding the mechanisms of muscle sarcopenia. The effects of age and CR on muscle mass, myocyte area, fiber number, myocyte TNF-alpha expression, plasma TNF-alpha levels, and specific elements linked with the TNF-alpha signaling cascade (TNF-R1, IKKgamma, IkappaBalpha, p65, NF-kappaB binding activity, FADD, caspase-8, and DNA fragmentation) were investigated in soleus (predominately Type I fiber), and superficial vastus lateralis (SVL, predominately Type II fiber), of 6-month-old ad libitum fed (6AL), 26-month-old ad libitum fed (26AL), and 26-month-old calorie-restricted (26CR) male Fischer 344 rats (CR = 40% restriction compared with ad libitum). Plasma TNF-alpha was increased with age, and the age-associated rise was attenuated with life-long CR. In soleus muscle, we reported a greater capacity to cultivate inflammatory signaling through the transcription factor NF-kappaB compared with that detected in SVL with age. In contrast, in the SVL TNF-alpha stimulated apoptotic signaling with age to a much higher extent than was observed in the soleus. Moreover, a reduction in muscle mass, cross-sectional area, and fiber number in the SVL coincided with this age-linked elevation in apoptosis. In agreement with CR's ability, TNF-alpha stimulation of both inflammatory and apoptotic pathways were abrogated. Our results suggest that TNF-alpha signals transmitted to specific fiber types determine the decision of selecting life or death signaling pathways and are linked to the extent of fiber loss experienced in the aging muscle. Such a specific potential may constitute a major proponent in the pathogenesis of sarcopenia.Keywords
Funding Information
- National Institute on Aging (R01-AG17994, AG21042)
This publication has 57 references indexed in Scilit:
- Cytokines, insulin-like growth factor 1, sarcopenia, and mortality in very old community-dwelling men and women: the Framingham Heart StudyThe American Journal of Medicine, 2003
- Invited Review: Aging and sarcopeniaJournal of Applied Physiology, 2003
- Molecular exploration of age-related NF-κB/IKK downregulation by calorie restriction in rat kidneyFree Radical Biology & Medicine, 2002
- SarcopeniaJournal of Laboratory and Clinical Medicine, 2001
- Age-Related Changes in MuscleMayo Clinic Proceedings, 2000
- Age‐associated Changes in the Innervation of Muscle Fibers and Changes in the Mechanical Properties of Motor UnitsAnnals of the New York Academy of Sciences, 1998
- Effects of ageing on the motor unitProgress in Neurobiology, 1995
- Skeletal muscle atrophy in old rats: Differential changes in the three fiber typesMechanisms of Ageing and Development, 1991
- What is the cause of the ageing atrophy?: Total number, size and proportion of different fiber types studied in whole vastus lateralis muscle from 15- to 83-year-old menPublished by Elsevier ,1988
- Histochemical and biochemical changes in human skeletal muscle with age in sedentary males, age 22–65 yearsActa Physiologica Scandinavica, 1978