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Phosphorylation of Titin Modulates Passive Stiffness of Cardiac Muscle in a Titin Isoform-dependent Manner

机译:tintin的磷酸化可调节Titin异构体依赖方式的心脏肌肉被动刚度。

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摘要

We investigated the effect of protein kinase A (PKA) on passive force in skinned cardiac tissues that express different isoforms of titin, i.e., stiff (N2B) and more compliant (N2BA) titins, at different levels. We used rat ventricular (RV), bovine left ventricular (BLV), and bovine left atrial (BLA) muscles (passive force: RV > BLV > BLA, with the ratio of N2B to N2BA titin, ∼90:10, ∼40:60, and ∼10:90%, respectively) and found that N2B and N2BA isoforms can both be phosphorylated by PKA. Under the relaxed condition, sarcomere length was increased and then held constant for 30 min and the peak passive force, stress-relaxation, and steady-state passive force were determined. Following PKA treatment, passive force was significantly decreased in all muscle types with the effect greatest in RV, lowest in BLA, and intermediate in BLV. Fitting the stress-relaxation data to the sum of three exponential decay functions revealed that PKA blunts the magnitude of stress-relaxation and accelerates its time constants. To investigate whether or not PKA-induced decreases in passive force result from possible alteration of titin–thin filament interaction (e.g., via troponin I phosphorylation), we conducted the same experiments using RV preparations that had been treated with gelsolin to extract thin filaments. PKA decreased passive force in gelsolin-treated RV preparations with a magnitude similar to that observed in control preparations. PKA was also found to decrease restoring force in skinned ventricular myocytes of the rat that had been shortened to below the slack length. Finally, we investigated the effect of the β-adrenergic receptor agonist isoprenaline on diastolic force in intact rat ventricular trabeculae. We found that isoprenaline phosphorylated titin and that it reduced diastolic force to a degree similar to that found in skinned RV preparations. Taken together, these results suggest that during β-adrenergic stimulation, PKA increases ventricular compliance in a titin isoform-dependent manner.
机译:我们研究了蛋白激酶A(PKA)对皮肤的心脏组织中被动力的作用,该心脏组织在不同水平上表达了纤溶酶的不同亚型,即硬质(N2B)和更顺应性(N2BA)纤溶蛋白。我们使用了大鼠的心室(RV),牛的左心室(BLV)和牛的左心房(BLA)肌肉(被动力:RV> BLV> BLA,N2B与N2BA的效价比为〜90:10,〜40:分别达到60%和10:90%),发现N2B和N2BA异构体均可被PKA磷酸化。在松弛条件下,肌节长度增加,然后保持恒定30分钟,并确定峰值被动力,应力松弛和稳态被动力。 PKA治疗后,所有肌肉类型的被动力均显着降低,其中RV效果最大,BLA最低,BLV中等。将应力松弛数据拟合为三个指数衰减函数的总和表明,PKA钝化了应力松弛的幅度并加快了其时间常数。为了研究PKA诱导的被动力降低是否是由于纤细蛋白丝相互作用的可能改变(例如,通过肌钙蛋白I磷酸化)而引起的,我们使用已经用凝溶胶蛋白处理过的RV制剂提取细丝进行了相同的实验。 PKA降低了凝溶胶蛋白处理的RV制剂中的被动力,其幅度与对照制剂中观察到的相似。还发现PKA可以减少已经缩短到松弛长度以下的大鼠皮肤心室肌细胞的恢复力。最后,我们研究了β-肾上腺素能受体激动剂异丙肾上腺素对完整大鼠心室小梁舒张力的影响。我们发现异丙肾上腺素磷酸化的钛蛋白,其舒张力降低到与皮肤RV制剂相似的程度。综上所述,这些结果表明,在β-肾上腺素刺激过程中,PKA以肌动蛋白异构体依赖性方式增加了心室顺应性。

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