Journal of Molecular and Cellular Cardiology
Volume 49, Issue 1 , Pages 5-15, July 2010

Evidence for a role of immunoproteasomes in regulating cardiac muscle mass in diabetic mice

  • Lingyun Zu

      Affiliations

    • Division of Cardiology, Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA
    • Department of Cardiology, Peking University Third Hospital, Beijing 100191, China
  • ,
  • Djahida Bedja

      Affiliations

    • Division of Comparative Medicine, Johns Hopkins Medical Institutions, Baltimore, MD21205, USA
  • ,
  • Karen Fox-Talbot

      Affiliations

    • Department of Pathology, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA
  • ,
  • Kathleen L. Gabrielson

      Affiliations

    • Division of Comparative Medicine, Johns Hopkins Medical Institutions, Baltimore, MD21205, USA
  • ,
  • Luc Van Kaer

      Affiliations

    • Department of Microbiology and Immunology, Vanderbilt University School of Medicine, Nashville, TN37232, USA
  • ,
  • Lewis C. Becker

      Affiliations

    • Division of Cardiology, Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA
  • ,
  • Zheqing P. Cai

      Affiliations

    • Division of Cardiology, Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA
    • Corresponding Author InformationCorresponding author. 720 Rutland Avenue, Ross 333, Baltimore, MD 21205, USA. Tel.: +1 410 502 5985; fax: +1 410 502 1975.

Received 29 September 2009; received in revised form 4 February 2010; accepted 5 February 2010. published online 15 February 2010.

Abstract 

The ubiquitin–proteasome system plays an important role in regulating muscle mass. Inducible immunoproteasome subunits LMP-2 and LMP-7 are constitutively expressed in the heart; however, their regulation and functions are poorly understood. We here investigated the hypothesis that immunoproteasomes regulate cardiac muscle mass in diabetic mice. Type 1 diabetes was induced in wildtype mice by streptozotocin. After hyperglycemia developed, insulin and the proteasome inhibitor epoxomicin were used to treat diabetic mice for 6weeks. Isolated mouse hearts were perfused with control or high glucose solution. Catalytic proteasome β-subunits and proteolytic activities were analyzed in the heart by immunoblotting and fluorogenic peptide degradation assays, respectively. Insulin and epoxomicin blocked loss of heart weight and improved cardiac function in diabetic mice. LMP-7 and its corresponding chymotryptic-like proteasome activity were increased in diabetic hearts and high glucose-treated hearts. Myosin heavy chain protein was decreased in diabetic hearts, which was largely reversed by epoxomicin. High glucose decreased LMP-2 protein levels in perfused hearts. In diabetic hearts, LMP-2 expression was downregulated whereas expression of the phosphatase and tensin homologue deleted on chromosome ten (PTEN) and the muscle atrophy F-box were upregulated. Moreover, mice with muscle-specific knockout of PTEN gene demonstrated increased cardiac muscle mass, while mice with LMP-2 deficiency demonstrated PTEN accumulation, muscle mass loss, and contractile impairment in the heart. Therefore, we concluded that high glucose regulates immunoproteasome subunits and modifies proteasome activities in the heart, and that dysregulated immunoproteasome subunits may mediate loss of cardiac muscle mass in experimental diabetic mice.

Keywords: Proteasome, PTEN, Cardiomyopathy, Heart failure, Hyperglycemia

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PII: S0022-2828(10)00042-8

doi:10.1016/j.yjmcc.2010.02.007

Journal of Molecular and Cellular Cardiology
Volume 49, Issue 1 , Pages 5-15, July 2010