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Published on: June 3, 2018
Suppression of Dad1 induces cardiomyocyte death by weakening cell adhesion
Shota Mori1, Rumi Kimura1, Hirofumi Morihara1,2
1Laboratory of Clinical Science and Biomedicine, Graduate School of Pharmaceutical Sciences, Osaka University, Suita City, Japan.
Abstract:
As cardiomyocyte loss causes heart failure, inhibition of cardiomyocyte death may be a therapeutic strategy against heart failure. In this study, we have identified defender against cell death 1 (Dad1) as a candidate regulator of cardiomyocyte death, using complementary DNA microarray and siRNA knockdown screening. Dad1 is a subunit of oligosaccharyltransferase (OST) complex that is responsible for protein N-glycosylation; however, its function in cardiomyocytes remains unknown. Importantly, the knockdown of Dad1 using siRNA reduced the viability of neonatal rat cardiomyocytes (NRCMs), accompanied by cleaved caspase3 expression, independent of endoplasmic reticulum stress. Dad1 knockdown impaired cell spreading and reduced myofibrillogenesis in NRCMs, suggesting that Dad1 knockdown induced anoikis, apoptosis by disrupting cell-matrix interactions. Consistently, knockdown of Dad1 impaired N-glycosylation of integrins α5 and β1, accompanied by inactivation of focal adhesion kinase. When cell adhesion was enhanced using adhesamine, fibronectin, or collagen type IV, cardiomyocyte death induced by Dad1 knockdown was reduced. Dad1 knockdown decreased the expression of staurosporine and temperature-sensitive 3 A (Stt3A), a catalytic subunit of OST complex. Interestingly, Stt3A knockdown using Stt3A siRNA reduced the expression of Dad1, indicating that both Dad1 and Stt3A were required for OST stabilization. In conclusion, Dad1 plays an important role in maintaining the expression of mature N-glycosylated integrins and their downstream signaling molecules to suppress cardiomyocyte anoikis.NEW & NOTEWORTHY This study found for the first time that the knockdown of Dad1 induced cardiomyocyte death, accompanied by impairment of myofibrillogenesis and cell spreading. Dad1 regulates the N-glycosylation of integrins in cooperation with Stt3A and preserves cell adhesion activity, promoting cardiomyocyte survival. This is the first demonstration that Dad1 contributes to the maintenance of cardiac homeostasis through the posttranslational modification of integrins, providing a novel insight into the biological significance of OST complex in cardiomyocytes.
Insights
Defender against cell death 1 (Dad1) knockdown causes cardiomyocyte death by impairing integrin N-glycosylation and cell adhesion. Dad1 is crucial for maintaining cardiac homeostasis and preventing anoikis.
Area of Science:
- Cardiovascular Biology
- Cell Death Mechanisms
- Protein Glycosylation
Background:
- Cardiomyocyte loss is a key driver of heart failure.
- Inhibiting cardiomyocyte death presents a potential therapeutic strategy.
- The role of Defender against cell death 1 (Dad1) in cardiomyocytes is unknown.
Purpose of the Study:
- To investigate the role of Dad1 in cardiomyocyte survival and function.
- To elucidate the molecular mechanisms by which Dad1 influences cardiomyocyte death.
- To explore the therapeutic potential of targeting Dad1 in heart failure.
Main Methods:
- Complementary DNA microarray and siRNA screening to identify regulators of cardiomyocyte death.
- siRNA-mediated knockdown of Dad1 in neonatal rat cardiomyocytes (NRCMs).
- Assessment of cell viability, apoptosis markers (cleaved caspase-3), cell spreading, myofibrillogenesis, N-glycosylation of integrins, and focal adhesion kinase (FAK) activity.
- Investigated the interaction between Dad1 and Stt3A within the oligosaccharyltransferase (OST) complex.
Main Results:
- Dad1 knockdown reduced NRCM viability and induced apoptosis, independent of ER stress.
- Dad1 knockdown impaired cell spreading and myofibrillogenesis, suggesting anoikis.
- Dad1 knockdown disrupted N-glycosylation of integrins α5 and β1, leading to FAK inactivation.
- Enhancing cell adhesion attenuated Dad1 knockdown-induced cardiomyocyte death.
- Dad1 and Stt3A mutually stabilize each other within the OST complex.
Conclusions:
- Dad1 is essential for maintaining cardiomyocyte survival by regulating integrin N-glycosylation and cell adhesion.
- Dad1 plays a critical role in suppressing anoikis by preserving integrin function and downstream signaling.
- Dad1 contributes to cardiac homeostasis through posttranslational modification of integrins, offering novel insights into OST complex function in the heart.
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