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Phosphatidylinositol 45-bisphosphate regulates CapZβ1 and actin dynamics in response to mechanical strain

机译:磷脂酰肌醇45-二磷酸酯调节CapZβ1和肌动蛋白动力学响应机械应变

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摘要

Mechanical stress causes filament remodeling leading to myocyte hypertrophy and heart failure. The actin capping protein Z (CapZ) tightly binds to the barbed end of actin filaments, thus regulating actin assembly. The hypothesis is that the binding between CapZ and the actin filament is modulated through phosphatidylinositol 4,5-bisphosphate (PIP2) and how the COOH-terminus of CapZβ1 regulates this binding. Primary neonatal rat ventricular myocytes (NRVMs) were strained at 10% amplitude and 1-Hz frequency. Dot blotting measured the PIP2 amount, and affinity precipitation assay assessed the direct interaction between PIP2 and CapZβ1. Fluorescence recovery after photobleaching of green fluorescent protein-CapZβ1 and actin-green fluorescent protein after 1 h of strain shows the dynamics significantly increased above the unstrained group. The increases in CapZ and actin dynamics were blunted by neomycin, suggesting PIP2 signaling is involved. The amount of PIP2 dramatically increased in NRVMs strained for 1 h. With a ROCK or RhoA inhibitor, changes were markedly reduced. Subcellular fractionation and antibody localization showed PIP2 distributed to the sarcomeres. More PIP2-bound CapZβ1 was found in strained NRVMs. Less PIP2 bound to the CapZβ1 with its COOH-terminus intact than in the COOH-terminal mutant of CapZβ1, suggesting some inhibitory role for the COOH-terminus. Myocyte hypertrophy normally induced by 48 h of cyclic strain was blunted by dominant negative RhoA or neomycin. This suggests that after many hours of cyclic strain, a possible mechanism for cell hypertrophy is the accumulation of thin filament assembly triggered partially by the increased PIP2 level and its binding to CapZ.
机译:机械应力导致细丝重塑,导致心肌细胞肥大和心力衰竭。肌动蛋白加帽蛋白Z(CapZ)与肌动蛋白丝的带刺末端紧密结合,从而调节肌动蛋白装配。假设是CapZ和肌动蛋白丝之间的结合是通过磷脂酰肌醇4,5-双磷酸酯(PIP2)以及CapZβ1的COOH末端如何调节这种结合来调节的。原代新生大鼠心室肌细胞(NRVM)的应变为10%振幅和1-Hz频率。点印迹法测量PIP2的量,亲和沉淀法评估PIP2与CapZβ1之间的直接相互作用。菌株1小时后,绿色荧光蛋白-CapZβ1和肌动蛋白-绿色荧光蛋白经光漂白后的荧光恢复显示,动力学比未应变组显着增加。 CapZ和肌动蛋白动力学的增加受到新霉素的抑制,表明参与了PIP2信号传导。在1小时的NRVM中,PIP2的数量急剧增加。使用ROCK或RhoA抑制剂,变化明显减少。亚细胞分级分离和抗体定位显示PIP2分布于肉瘤。在应变NRVM中发现更多的PIP2结合的CapZβ1。与CapZβ1的COOH末端突变体相比,结合完整的COOH末端与CapZβ1结合的PIP2更少,表明对COOH末端具有一定的抑制作用。显性阴性RhoA或新霉素使通常由循环菌株48小时引起的心肌肥大减弱。这表明在经过数小时的循环应变后,细胞肥大的可能机制是细丝装配的积累部分由PIP2水平升高及其与CapZ的结合触发。

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