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Metabolic Stress-Induced Activation of AMPK and Inhibition of Constitutive Phosphoproteins Controlling Smooth Muscle Contraction: Evidence for Smooth Muscle Fatigue?

机译:代谢应激诱导的AMPK激活和控制平滑肌收缩的本构磷酸蛋白的抑制:平滑肌疲劳的证据吗?

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摘要

Metabolic stress diminishes smooth muscle contractile strength by a poorly defined mechanism. To test the hypothesis that metabolic stress activates a compensatory cell signaling program to reversibly downregulate contraction, arterial rings and bladder muscle strips in vitro were deprived of O2 and glucose for 30 and 60 min (“starvation”) to induce metabolic stress, and the phosphorylation status of proteins involved in regulation of contraction and metabolic stress were assessed in tissues under basal and stimulated conditions. A 15–30 min recovery period (O2 and glucose repletion) tested whether changes induced by starvation were reversible. Starvation decreased basal phosphorylation of myosin regulatory light chain (MLC-pS19) and of the rho kinase (ROCK) downstream substrates cofilin (cofilin-pS3) and myosin phosphatase targeting subunit MYPT1 (MYPT1-pT696 and MYPT1-pT853), and abolished the ability of contractile stimuli to cause a strong, sustained contraction. Starvation increased basal phosphorylation of AMPK (AMPK-pT172) and 3 downstream AMPK substrates, acetyl-CoA carboxylase (ACC-pS79), rhoA (rhoA-pS188), and phospholamban (PLB-pS16). Increases in rhoA-pS188 and PLB-pS16 would be expected to inhibit contraction. Recovery restored basal AMPK-pT172 and MLC-pS19 to control levels, and restored contraction. In AMPKα2 deficient mice (AMPKα2-/-), the basal level of AMPK-pT172 was reduced by 50%, and MLC-pS19 was elevated by 50%, but AMPKα2-/- did not prevent starvation-induced contraction inhibition nor enhance recovery from starvation. These results indicate that constitutive AMPK activity participates in constitutive regulation of contractile proteins, and suggest that AMPK activation is necessary, but may not be sufficient, to cause smooth muscle contraction inhibition during metabolic stress.
机译:代谢应激通过定义不明确的机制降低了平滑肌的收缩力。为了检验代谢应激激活补偿性细胞信号转导程序以可逆地下调收缩的假设,在体外30分钟和60分钟内剥夺了动脉环和膀胱肌条的O2和葡萄糖(“饥饿”)以诱导代谢应激和磷酸化在基础和刺激条件下评估组织中参与收缩和代谢应激调节的蛋白质状态。 15至30分钟的恢复期(氧气和葡萄糖补充)测试了饥饿引起的变化是否可逆。饥饿减少了肌球蛋白调节轻链(MLC-pS19)和rho激酶(ROCK)下游底物cofilin(cofilin-pS3)和针对肌球蛋白磷酸酶的亚基MYPT1(MYPT1-pT696和MYPT1-pT853)的基础磷酸化,并取消了该能力收缩刺激引起强烈的持续收缩。饥饿增加了AMPK(AMPK-pT172)和3种下游AMPK底物,乙酰辅酶A羧化酶(ACC-pS79),rhoA(rhoA-pS188)和phosphorlamban(PLB-pS16)的基础磷酸化。 rhoA-pS188和PLB-pS16的增加有望抑制收缩。恢复将基础AMPK-pT172和MLC-pS19恢复到控制水平,并恢复了收缩。在AMPKα2缺陷小鼠中(AMPK α 2 - / - ),AMPK-pT172的基础水平降低了50%,MLC-pS19的基础水平提高了50%,但AMPK α 2 - / - 不能防止饥饿-诱导的收缩抑制作用也不能增强饥饿恢复。这些结果表明,组成性AMPK活性参与了收缩蛋白的组成性调节,并表明AMPK激活是必需的,但可能不足以引起代谢应激期间的平滑肌收缩抑制。

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