Ischemic Protection and Myofibrillar Cardiomyopathy
- 18 October 2002
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation Research
- Vol. 91 (8) , 741-748
- https://doi.org/10.1161/01.res.0000037091.64492.69
Abstract
To delineate the in vivo cardiac functions requiring normal δ protein kinase C (PKC) activity, we pursued loss-of-function through transgenic expression of a δPKC-specific translocation inhibitor protein fragment, δV1, in mouse hearts. Initial results using the mouse α-myosin heavy chain (αMHC) promoter resulted in a lethal heart failure phenotype. Viable δV1 mice were therefore obtained using novel attenuated mutant αMHC promoters lacking one or the other thyroid response element (TRE-1 and -2). In transgenic mouse hearts, δV1 decorated cytoskeletal elements and inhibited ischemia-induced δPKC translocation. At high levels, δV1 expression was uniformly lethal, with depressed cardiac contractile function, increased expression of fetal cardiac genes, and formation of intracardiomyocyte protein aggregates. Ultrastructural and immunoconfocal analyses of these aggregates revealed focal cytoskeletal disruptions and localized concentrations of desmin and αB-crystallin. In individual cardiomyocytes, cytoskeletal abnormalities correlated with impaired contractile function. Whereas desmin and αB-crystallin protein were increased ≈4-fold in δV1 hearts, combined overexpression of these proteins at these levels was not sufficient to cause any detectable cardiac pathology. At low levels, δV1 expression conferred striking resistance to postischemic dysfunction, with no measurable effects on basal cardiac structure, function, or gene expression. Intermediate expression of δV1 conferred modest basal contractile depression with less ischemic protection, associated with abnormal cardiac gene expression, and a histological picture of infrequent cardiomyocyte cytoskeletal deformities. These results validate an approach of δPKC inhibition to protect against myocardial ischemia, but indicate that there is a threshold level of δPKC activation that is necessary to maintain normal cardiomyocyte cytoskeletal integrity.Keywords
This publication has 26 references indexed in Scilit:
- Intracellular Transport Mechanisms of Signal TransducersAnnual Review of Physiology, 2002
- The Absence of Desmin Leads to Cardiomyocyte Hypertrophy and Cardiac Dilation with Compromised Systolic FunctionJournal of Molecular and Cellular Cardiology, 1999
- Direct evidence that protein kinase C plays an essential role in the development of late preconditioning against myocardial stunning in conscious rabbits and that epsilon is the isoform involved.Journal of Clinical Investigation, 1998
- Targeting the Receptor-G q Interface to Inhibit in Vivo Pressure Overload Myocardial HypertrophyScience, 1998
- Ablation of the murine alpha myosin heavy chain gene leads to dosage effects and functional deficits in the heart.Journal of Clinical Investigation, 1996
- Protein Kinase C-δ Associates with Vimentin Intermediate Filaments in Differentiated HL60 CellsExperimental Cell Research, 1996
- Anin vivo analysis of transcriptional elements in the mouse α-myosin heavy chain gene promoterTransgenic Research, 1995
- Localization of Protein Kinases by Anchoring Proteins: a Theme in Signal TransductionScience, 1995
- Immunocytochemical Localization of Eight Protein Kinase C Isozymes Overexpressed in NIH 3T3 FibroblastsJournal of Biological Chemistry, 1995
- Studies and Perspectives of Protein Kinase CScience, 1986