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November 20, 2001Proceedings of the National Academy of Sciences1,773 citationsOpen Access

Atrogin-1, a muscle-specific F-box protein highly expressed during muscle atrophy

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MGMarcelo D. GomesUniversidade de Ribeirão PretoSLStewart H. LeckerBeth Israel Deaconess Medical CenterRJR. Thomas JagoeJewish General Hospital

Key Points

  • This research aims to identify molecular factors contributing to muscle atrophy, focusing on atrogin-1 expression changes during fasting and disease.
  • Used cDNA microarrays to compare gene expression in normal and atrophying muscles.
  • Identified and cloned atrogin-1 gene that is specifically expressed in striated muscles.
  • Analyzed atrogin-1 mRNA levels during muscle atrophy induced by fasting, diabetes, cancer, and renal failure.
  • Atrogin-1 mRNA levels increased over ninefold in fasted mice compared to normal levels.
  • Significant expression of atrogin-1 occurs before visible muscle atrophy in skeletal muscle.
  • Atrogin-1 shows involvement in the augmented proteolysis linked to muscle atrophy across various diseases.

Abstract

Muscle wasting is a debilitating consequence of fasting, inactivity, cancer, and other systemic diseases that results primarily from accelerated protein degradation by the ubiquitin-proteasome pathway. To identify key factors in this process, we have used cDNA microarrays to compare normal and atrophying muscles and found a unique gene fragment that is induced more than ninefold in muscles of fasted mice. We cloned this gene, which is expressed specifically in striated muscles. Because this mRNA also markedly increases in muscles atrophying because of diabetes, cancer, and renal failure, we named it atrogin-1. It contains a functional F-box domain that binds to Skp1 and thereby to Roc1 and Cul1, the other components of SCF-type Ub-protein ligases (E3s), as well as a nuclear localization sequence and PDZ-binding domain. On fasting, atrogin-1 mRNA levels increase specifically in skeletal muscle and before atrophy occurs. Atrogin-1 is one of the few examples of an F-box protein or Ub-protein ligase (E3) expressed in a tissue-specific manner and appears to be a critical component in the enhanced proteolysis leading to muscle atrophy in diverse diseases.

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Cite This Study

Gomes et al. (2001) studied this question.

synapsesocial.com/papers/69d76218b6e34cdcae48f653https://doi.org/10.1073/pnas.251541198
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1THE UBIQUITIN SYSTEM1998 · 8,828 citations
  2. 2Activation of the ubiquitin-ATP-dependent proteolytic system in skeletal muscle during fasting and denervation atrophy.1991 · 120 citations
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  4. 4Towards understanding the first genome sequence of a crenarchaeon by genome annotation using clusters of orthologous groups of proteins (COGs)2000 · 148 citations
  5. 5Inhibitors of the proteasome reduce the accelerated proteolysis in atrophying rat skeletal muscles.1997 · 317 citations