BACKGROUND: TGFβ(1) is a growth factor that plays a major role in the remodeling process of the heart by inducing cardiomyocyte dysfunction and apoptosis, as well as fibrosis thereby restricting heart function. TGFβ(1) mediates its effect via the TGFβ receptor I (ALK5) and the activation of SMAD transcription factors, but TGFβ(1) is also known as activator of phosphoinositide-3-kinase (PI3K) via the non-SMAD signaling pathway. The aim of this study was to investigate whether PI3K is also involved in TGFβ(1)-induced cardiomyocytes apoptosis and contractile dysfunction. METHODS AND RESULTS: Incubation of isolated ventricular cardiomyocytes with TGFβ(1) resulted in impaired contractile function. Pre-incubation of cells with the PI3K inhibitor Ly294002 or the ALK5 inhibitor SB431542 attenuated the decreased cell shortening in TGFβ(1)-stimulated cells. Additionally, TGFβ-induced apoptosis was significantly reduced by the PI3K inhibitor Ly294002. Administration of a PI3Kγ-specific inhibitor AS605240 abolished the TGFβ effect on apoptosis and cell shortening. This was also confirmed in cardiomyocytes from PI3Kγ KO mice. Induction of SMAD binding activity and the TGFβ target gene collagen 1 could be blocked by the PI3K inhibitor Ly294002, but not by the specific PI3Kγ inhibitor AS605240. CONCLUSIONS: TGFβ(1)-induced SMAD activation, cardiomyocyte apoptosis, and impaired cell shortening are mediated via both, the ALK5 receptor and PI3K, in adult cardiomyocytes. PI3Kγ specifically contributes to apoptosis induction and impairment of contractile function independent of SMAD signaling.
PI3K as Mediator of Apoptosis and Contractile Dysfunction in TGFβ(1)-Stimulated Cardiomyocytes.
PI3K作为TGFβ(1)刺激的心肌细胞凋亡和收缩功能障碍的介质
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作者:Brosinsky Paulin, Bornbaum Julia, Warga Björn, Schulz Lisa, Schlüter Klaus-Dieter, Ghigo Alessandra, Hirsch Emilio, Schulz Rainer, Euler Gerhild, Heger Jacqueline
| 期刊: | Biology-Basel | 影响因子: | 3.500 |
| 时间: | 2021 | 起止号: | 2021 Jul 16; 10(7):670 |
| doi: | 10.3390/biology10070670 | 研究方向: | 细胞生物学 |
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