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Neural cell adhesion molecule is a cardioprotective factor up-regulated by metabolic stress
Kazuya Nagao1, Koh Ono, Yoshitaka Iwanaga
1Department of Cardiovascular Medicine, Kyoto University, 54 Shogoin-Kawaharacho, Sakyo-ku, Kyoto 606-8507, Japan.
Abstract:
Screening for cell surface proteins up-regulated under stress conditions may lead to the identification of new therapeutic targets. To search for genes whose expression was enhanced by treatment with oligomycin, a mitochondrial-F(0)F(1) ATP synthase inhibitor, signal sequence trapping was performed in H9C2 rat cardiac myoblasts. One of the genes identified was that for neural cell adhesion molecule (NCAM, CD56), a major regulator of development, cell survival, migration, and neurite outgrowth in the nervous system. Immunohistochemical analyses in a mouse myocardial infarction model revealed that NCAM was strongly expressed in residual cardiac myocytes in the infarcted region. Increased expression of NCAM was also found during the remodeling period in a rat model of hypertension-induced heart failure. Lentivirus-mediated knockdown of NCAM decreased the cell growth and survival following oligomycin treatment in H9C2 cells. In primary rat neonatal cardiac myocytes, NCAM was also found to be up-regulated and played a protective role following oligomycin treatment. Analyses of downstream signaling revealed that knockdown of NCAM significantly decreased the basal AKT phosphorylation level. In contrast, NCAM mimetic peptide P2d activated AKT and significantly reduced oligomycin-induced cardiomyocyte death, which was abolished by treatment with the PI3K inhibitor LY-294002 as well as overexpression of the dominant-negative AKT mutant. These findings demonstrate that NCAM is a cardioprotective factor up-regulated under metabolic stress in cardiomyocytes and augmentation of this signal improved survival.
Insights
Neural cell adhesion molecule (NCAM) is upregulated in heart cells under metabolic stress, offering protection. Enhancing NCAM signaling can improve cardiac cell survival and offers a potential therapeutic target for heart conditions.
Area of Science:
- Cardiovascular Biology
- Cellular Stress Response
- Molecular Medicine
Background:
- Identifying cell surface proteins upregulated during stress can reveal therapeutic targets.
- Oligomycin, a mitochondrial ATP synthase inhibitor, induces metabolic stress.
Purpose of the Study:
- To identify genes upregulated by oligomycin treatment in cardiac cells.
- To investigate the role of neural cell adhesion molecule (NCAM) in cardioprotection under stress.
Main Methods:
- Signal sequence trapping in H9C2 rat cardiac myoblasts treated with oligomycin.
- Immunohistochemistry in mouse myocardial infarction and rat hypertension models.
- Lentivirus-mediated NCAM knockdown and NCAM mimetic peptide treatment in cardiac cells.
- Analysis of AKT and PI3K signaling pathways.
Main Results:
- NCAM expression was upregulated in cardiomyocytes following myocardial infarction and in hypertension-induced heart failure.
- NCAM knockdown reduced cell survival under oligomycin treatment.
- NCAM mimetic peptide P2d protected cardiomyocytes from death by activating AKT signaling.
- NCAM activation of AKT is PI3K-dependent.
Conclusions:
- NCAM is a stress-induced cardioprotective factor in cardiomyocytes.
- Augmenting NCAM signaling improves cardiac cell survival under metabolic stress.
- NCAM represents a potential therapeutic target for heart disease.
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