Cardiovascular Pathology
Volume 19, Issue 3 , Pages 158-164, May 2010

Activation of the ubiquitin proteolytic pathway in human septic heart and diaphragm

Department of Anesthesiology and Critical Care Medicine, Lariboisière Hospital, Assistance Publique-Hôpitaux de Paris, Paris, France University Paris 7 Denis Diderot, Paris, France U942 INSERN, Paris, France

Cardiovascular Research Center INSERM U689, Lariboisière Hospital, Paris, France

INSERM U700, University Paris Diderot 7, Bichat-Claude Bernard Hospital, Paris, France

Laboratory of Molecular Anthropology, Institute of Legal Medicine of Strasbourg, Strasbourg, France

The Department of Cardiac Surgery of the Centre Cardiologique du Nord, Saint Denis, France

Received 29 July 2008; received in revised form 30 November 2008; accepted 14 January 2009. published online 17 April 2009.

Abstract 

Objective

Mechanisms of sepsis-induced myocardial and diaphragmatic alteration are multiple and remain largely unknown, particularly in humans. In the present study, we compared the inducible nitric oxide synthase (NOS-2) expression, the peroxynitrite production and the expression and activation of the ubiquitin proteolytic pathway in the wall of the 4 cardiac chambers, in the diaphragm, and in the rectus abdominis.

Patients

Seven patients who died from septic shock associated with a myocardial depression and 5 nonseptic (control) patients.

Measurements and results

We evaluated protein expression by Western blot. Nitrotyrosin and ubiquitin residues were localized by immunofluorescence. NOS-2, nitrated proteins, free ubiquitin, and ubiquitinated proteins are overexpressed in the wall of the four cardiac cavities, in the diaphragm and in the rectus abdominis of septic patients at a similar level. Ubiquitinated proteins with a molecular mass of 50, 35, 30, and 25 kD were consistently detected in heart, diaphragm, and rectus abdominis of septic shock patients but lacking in nonseptic patients. In situ immunolabelling of ubiquitin showed a colocalisation with nitrotyrosine residues at the sarcomeric level of cardiac myocytes in septic patients.

Conclusions

This study showed the first evidence for the activation of the proteolytic ubiquitin–proteasome pathway in human heart and diaphragm in septic shock.

Keywords: Nitric oxide, Peroxinitrite, Ubiquitine, Sepsis

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 Financial support: Ministère de l’Enseignement Supérieur et de la Recherche (EA 322 for D.P.).

PII: S1054-8807(09)00005-2

doi:10.1016/j.carpath.2009.01.002

Cardiovascular Pathology
Volume 19, Issue 3 , Pages 158-164, May 2010