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IGFBP-4 Proteolysis by PAPP-A in a Primary Culture of Rat Neonatal Cardiomyocytes under Normal and Hypertrophic
Daria V Serebryanaya1, Daria A Adasheva2, Alexey A Konev3
1Department of Biochemistry, Faculty of Biology, Lomonosov Moscow State University, Moscow, 119234, Russia. dariaserebryanaya@gmail.com.
Insights
Pregnancy-associated plasma protein-A (PAPP-A) cleaves insulin-like growth factor binding protein-4 (IGFBP-4) in heart cells. This process intensifies during cardiac hypertrophy, suggesting PAPP-A
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Biochemistry
Background:
- Cardiovascular diseases (CVD) are a major global health burden.
- Pregnancy-associated plasma protein-A (PAPP-A) is a metalloprotease involved in cleaving insulin-like growth factor binding protein-4 (IGFBP-4).
- IGFBP-4 proteolysis releases insulin-like growth factor (IGF), influencing cell migration, proliferation, and growth, processes relevant to CVD.
Purpose of the Study:
- To investigate whether PAPP-A specifically cleaves IGFBP-4 in cardiac tissue.
- To determine if PAPP-A-mediated IGFBP-4 cleavage is altered in hypertrophic cardiomyocytes.
Main Methods:
- Utilized a primary culture of rat neonatal cardiomyocytes as an experimental model.
- Analyzed proteolysis of IGFBP-4 by PAPP-A in the conditioned medium of cardiomyocytes.
- Compared PAPP-A activity in normal versus hypertrophied cardiomyocyte cultures.
Main Results:
- Demonstrated that PAPP-A proteolysis of IGFBP-4 occurs in the conditioned medium of cardiomyocytes.
- Showed that PAPP-A-specific IGFBP-4 proteolysis is significantly increased in hypertrophied cardiomyocytes.
- Established a correlation between enhanced IGFBP-4 cleavage by PAPP-A and cardiomyocyte hypertrophy.
Conclusions:
- PAPP-A cleaves IGFBP-4 in cardiomyocytes, releasing IGF and potentially activating IGF-dependent cellular processes.
- The enhancement of IGFBP-4 cleavage by PAPP-A is associated with cardiomyocyte hypertrophy.
- PAPP-A may play a role in regulating IGF-dependent pathways in both normal and hypertrophic cardiac states, potentially contributing to CVD pathogenesis.
Abstract:
Cardiovascular diseases (CVD) are among the leading causes of death and disability worldwide. Pregnancy-associated plasma protein-A (PAPP-A) is a matrix metalloprotease localized on the cell surface. One of the substrates that PAPP-A cleaves is the insulin-like growth factor binding protein-4 (IGFBP-4), a member of the family of proteins that bind insulin-like growth factor (IGF). Proteolysis of IGFBP-4 by PAPP-A occurs at a specific site resulting in formation of two proteolytic fragments - N-terminal IGFBP-4 (NT-IGFBP-4) and C-terminal IGFBP-4 (CT-IGFBP-4), and leads to the release of IGF activating various cellular processes including migration, proliferation, and cell growth. Increased levels of the proteolytic IGFBP-4 fragments correlate with the development of CVD complications and increased risk of death in patients with the coronary heart disease, acute coronary syndrome, and heart failure. However, there is no direct evidence that PAPP-A specifically cleaves IGFBP-4 in the cardiac tissue under normal and pathological conditions. In the present study, using a primary culture of rat neonatal cardiomyocytes as a model, we have demonstrated that: 1) proteolysis of IGFBP-4 by PAPP-A occurs in the conditioned medium of cardiomyocytes, 2) PAPP-A-specific IGFBP-4 proteolysis is increased when cardiomyocytes are transformed to a hypertrophic state. Thus, it can be assumed that the enhancement of IGFBP-4 cleavage by PAPP-A and hypertrophic changes in cardiomyocytes accompanying CVD are interrelated, and PAPP-A appears to be one of the activators of the IGF-dependent processes in normal and hypertrophic-state cardiomyocytes.
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