首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Excision of titin's cardiac PEVK spring element abolishes PKCalpha-induced increases in myocardial stiffness.
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Excision of titin's cardiac PEVK spring element abolishes PKCalpha-induced increases in myocardial stiffness.

机译:替丁的心脏PEVK弹簧元件的切除消除了PKCalpha引起的心肌硬度的增加。

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摘要

Protein kinase C-alpha (PKCalpha) was recently reported to increase myocardial stiffness, an effect that was proposed to be due to phosphorylation of two highly conserved sites (S11878 and S12022) within the proline-glutamic acid-valine-lysine (PEVK) rich spring element of titin. To test this proposal we investigated the effect of PKCalpha on phosphorylation and passive stiffness in a mouse model lacking the titin exons that contain these two phosphorylation sites, the PEVK knockout (KO). We used skinned, gelsolin-extracted, left ventricular myocardium from wildtype and PEVK KO mice. Consistent with previous work we found that PKCalpha increased passive stiffness in the WT myocardium by 27+/-6%. Importantly, this effect was completely abolished in KO myocardium. In addition, increases in the elastic and viscous moduli at a wide range of frequencies (properties important in diastolic filling) following PKCalpha incubation (27+/-3% and 20+/-4%, respectively) were also ablated in the KO. Back phosphorylation assays showed that titin phosphorylation following incubation with PKCalpha was significantly reduced by 36+/-12% in skinned PEVK KO myocardial tissues. The remaining phosphorylation in the KO suggests that PKCalpha sites exist in the titin molecule outside the PEVK region; these sites are not involved in increasing passive stiffness. Our results firmly support that the PEVK region of cardiac titin is phosphorylated by PKCalpha and that this increases passive tension. Thus, the PEVK spring element is the critical site of PKCalpha's involvement in passive myocardial stiffness.
机译:最近有报道称蛋白激酶C-α(PKCalpha)可以增加心肌的硬度,这是由于富含脯氨酸-谷氨酸-缬氨酸-赖氨酸(PEVK)内两个高度保守的位点(S11878和S12022)磷酸化所致titin的弹簧元件。为了测试该建议,我们在缺乏包含这两个磷酸化位点即PEVK敲除(KO)的titin外显子的小鼠模型中研究了PKCalpha对磷酸化和被动刚度的影响。我们使用了野生型和PEVK KO小鼠的皮肤,凝溶胶蛋白提取的左心室心肌。与以前的工作一致,我们发现PKCalpha将WT心肌的被动僵硬度提高了27 +/- 6%。重要的是,这种作用在KO心肌中已完全消除。另外,KO中还消除了PKCα温育后(分别为27 +/- 3%和20 +/- 4%)在很宽的频率范围内弹性模量和粘性模量的增加(舒张压填充的重要特性)。反向磷酸化分析表明,在皮肤的PEVK KO心肌组织中,与PKCalpha孵育后,titin磷酸化显着降低了36 +/- 12%。 KO中剩余的磷酸化表明PKCalpha位点存在于PEVK区域之外的titin分子中。这些部位不涉及增加被动刚度。我们的结果坚定地支持了心脏纤溶蛋白的PEVK区被PKCalpha磷酸化,并且这增加了被动张力。因此,PEVK弹簧元件是PKCalpha参与被动性心肌僵硬的关键部位。

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