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Phosphorylation of serine96 of histidine-rich calcium-binding protein by the Fam20C kinase functions to prevent cardiac arrhythmia

机译:Fam20C激酶使富含组氨酸的钙结合蛋白的丝氨酸96磷酸化可防止心律不齐

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摘要

Precise Ca cycling through the sarcoplasmic reticulum (SR), a Ca storage organelle, is critical for proper cardiac muscle function. This cycling initially involves SR release of Ca via the ryanodine receptor, which is regulated by its interacting proteins junctin and triadin. The sarco/endoplasmic reticulum Ca ATPase (SERCA) pump then refills SR Ca stores. Histidine-rich Ca-binding protein (HRC) resides in the lumen of the SR, where it contributes to the regulation of Ca cycling by protecting stressed or failing hearts. The common Ser96Ala human genetic variant of HRC strongly correlates with life-threatening ventricular arrhythmias in patients with idiopathic dilated cardiomyopathy. However, the underlying molecular pathways of this disease remain undefined. Here, we demonstrate that family with sequence similarity 20C (Fam20C), a recently characterized protein kinase in the secretory pathway, phosphorylates HRC on Ser96. HRC Ser96 phosphorylation was confirmed in cells and human hearts. Furthermore, a Ser96Asp HRC variant, which mimics constitutive phosphorylation of Ser96, diminished delayed aftercontractions in HRC null cardiac myocytes. This HRC phosphomimetic variant was also able to rescue the aftercontractions elicited by the Ser96Ala variant, demonstrating that phosphorylation of Ser96 is critical for the cardioprotective function of HRC. Phosphorylation of HRC on Ser96 regulated the interactions of HRC with both triadin and SERCA2a, suggesting a unique mechanism for regulation of SR Ca homeostasis. This demonstration of the role of Fam20C-dependent phosphorylation in heart disease will open new avenues for potential therapeutic approaches against arrhythmias.
机译:精确的Ca循环通过肌质网(SR)(一种Ca存储细胞器)对于正常的心肌功能至关重要。该循环最初涉及通过莱诺丹碱受体的Ca SR释放,该过程受其相互作用蛋白junctin和triadin的调节。然后,肌浆网/内质网Ca ATPase(SERCA)泵重新注满SR Ca存储区。富含组氨酸的Ca结合蛋白(HRC)驻留在SR的管腔中,通过保护压力过大或衰竭的心脏,有助于调节Ca循环。 HRC的常见Ser96Ala人类遗传变异与特发性扩张型心肌病患者的威胁生命的室性心律失常密切相关。但是,该疾病的潜在分子途径仍然不确定。在这里,我们证明了具有序列相似性20C(Fam20C)的家族(分泌途径中最近表征的蛋白激酶)使Ser96上的HRC磷酸化。在细胞和人心脏中证实了HRC Ser96磷酸化。此外,模仿Ser96组成型磷酸化的Ser96Asp HRC变体减少了HRC无效心肌细胞收缩后的延迟。该HRC拟磷酸化变体还能够挽救Ser96Ala变体引起的后收缩,表明Ser96的磷酸化对于HRC的心脏保护功能至关重要。在Ser96上HRC的磷酸化调节了HRC与三联蛋白和SERCA2a的相互作用,表明了调节SR Ca稳态的独特机制。 Fam20C依赖性磷酸化在心脏病中的作用的这一证明将为抗心律不齐的潜在治疗方法开辟新途径。

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