Activation of caspase-3 is an initial step triggering accelerated muscle proteolysis in catabolic conditions
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Open Access
- 1 January 2004
- journal article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 113 (1) , 115-123
- https://doi.org/10.1172/jci200418330
Abstract
With trauma, sepsis, cancer, or uremia, animals or patients experience accelerated degradation of muscle protein in the ATP-ubiquitin-proteasome (Ub-P’some) system. The initial step in myofibrillar proteolysis is unknown because this proteolytic system does not break down actomyosin complexes or myofibrils, even though it degrades monomeric actin or myosin. Since cytokines or insulin resistance are common in catabolic states and will activate caspases, we examined whether caspase-3 would break down actomyosin. We found that recombinant caspase-3 cleaves actomyosin, producing a characteristic, approximately 14-kDa actin fragment and other proteins that are degraded by the Ub-P’some. In fact, limited actomyosin cleavage by caspase-3 yields a 125% increase in protein degradation by the Ub-P’some system. Serum deprivation of L6 muscle cells stimulates actin cleavage and proteolysis; insulin blocks these responses by a mechanism requiring PI3K. Cleaved actin fragments are present in muscles of rats with muscle atrophy from diabetes or chronic uremia. Accumulation of actin fragments and the rate of proteolysis in muscle stimulated by diabetes are suppressed by a caspase-3 inhibitor. Thus, in catabolic conditions, an initial step resulting in loss of muscle protein is activation of caspase-3, yielding proteins that are degraded by the Ub-P’some system. Therapeutic strategies could be designed to prevent these events.Keywords
This publication has 42 references indexed in Scilit:
- Expression of a calpastatin transgene slows muscle wasting and obviates changes in myosin isoform expression during murine muscle disuseThe Journal of Physiology, 2002
- Loss of Calpain 3 Proteolytic Activity Leads to Muscular Dystrophy and to Apoptosis-Associated Iκbα/Nuclear Factor κb Pathway Perturbation in MiceThe Journal of cell biology, 2000
- The expression of genes in the ubiquitin-proteasome proteolytic pathway is increased in skeletal muscle from patients with cancerSurgery, 1999
- Insulin Antiapoptotic Signaling Involves Insulin Activation of the Nuclear Factor κB-dependent Survival Genes Encoding Tumor Necrosis Factor Receptor-associated Factor 2 and Manganese-superoxide DismutaseJournal of Biological Chemistry, 1999
- Caspases: Enemies WithinScience, 1998
- Actin cleavage by CPP-32/apopain during the development of apoptosisOncogene, 1997
- Sepsis is associated with increased mRNAs of the ubiquitin-proteasome proteolytic pathway in human skeletal muscle.Journal of Clinical Investigation, 1997
- Identification and inhibition of the ICE/CED-3 protease necessary for mammalian apoptosisNature, 1995
- Requirement for Phosphatidylinositol-3 Kinase in the Prevention of Apoptosis by Nerve Growth FactorScience, 1995
- Metabolic acidosis stimulates muscle protein degradation by activating the adenosine triphosphate-dependent pathway involving ubiquitin and proteasomes.Journal of Clinical Investigation, 1994