首页> 美国卫生研究院文献>Biophysical Journal >MgADP promotes a catch-like state developed through force-calcium hysteresis in tonic smooth muscle.
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MgADP promotes a catch-like state developed through force-calcium hysteresis in tonic smooth muscle.

机译:MgADP促进通过补钙平滑肌中的力钙滞后形成的developed状状态。

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摘要

Tonic rabbit femoral artery and phasic rabbit ileum smooth muscles permeabilized with Triton X-100 were activated either by increasing [Ca2+] from pCa > 8.0 to pCa 6.0 (calcium-ascending protocol) or contracted at pCa 6.0 before lowering [Ca2+] (calcium-descending protocol). The effects of, respectively, high [MgATP]/low [MgADP] [10 mM MgATP + creatine phosphate (CP) + creatine kinase (CK)] or low [MgATP]/[MgADP] (2 mM MgATP, 0 CP, 0 CK) on the "force-[Ca]" relationships were determined. In femoral artery at low, but not at high, [MgATP]/[MgADP] the force and the ratio of stiffness/force at pCa 7.2 were significantly higher under the calcium-descending than calcium-ascending protocols (54% vs. 3% of Po, the force at pCa 6.0) (force hysteresis); the levels of regulatory myosin light chain (MLC20) phosphorylation (9 +/- 2% vs. 10 +/- 2%) and the velocities of unloaded shortening V0 (0.02 +/- 0.004 l/s with both protocols) were not significantly different. No significant force hysteresis was detected in rabbit ileum under either of these experimental conditions. [MgADP], measured in extracts of permeabilized femoral artery strips by two methods, was 130-140 microM during maintained force under the calcium-descending protocol. Exogenous CP (10 mM) applied during the descending protocol reduced endogenous [MgADP] to 46 +/- 10 microM and abolished force hysteresis: residual force at low [Ca2+] was 17 +/- 5% of maximal force. We conclude that the proportion of force-generating nonphosphorylated (AMdp) relative to phosphorylated cross-bridges is higher on the Ca2+-descending than on the Ca2+-ascending force curve in tonic smooth muscle, that this population of positively strained dephosphorylated cross-bridges has a high affinity for MgADP, and that the dephosphorylated AMdp . MgADP state makes a significant contribution to force maintenance at low levels of MLC20 phosphorylation.
机译:通过将[Ca2 +]从pCa> 8.0增加到pCa 6.0(钙升高方案)来激活用Triton X-100渗透的强直性兔股动脉和家兔回肠平滑肌,或者在降低[Ca2 +]之前将其收缩到pCa 6.0。降序协议)。高[MgATP] /低[MgADP] [10 mM MgATP +磷酸肌酸(CP)+肌酸激酶(CK)]或低[MgATP] / [MgADP](2 mM MgATP,0 CP,0确定“力-[Ca]”的关系。在低钙水平但非高钙水平的股动脉中,在钙降低时,pCa 7.2处的力和刚度/力比明显高于钙升高方案(54%比3%) Po,pCa 6.0时的力)(力滞后);调节性肌球蛋白轻链(MLC20)磷酸化水平(9 +/- 2%vs. 10 +/- 2%)和空载起酥油V0的速度(两种方案均为0.02 +/- 0.004 l / s)均不显着不同。在这些实验条件下,在兔回肠中均未检测到明显的力滞回。在钙降低方案下维持力的过程中,通过两种方法在通透性股动脉条的提取物中测量的[MgADP]为130-140 microM。在下降方案中施加的外源性CP(10 mM)将内源性[MgADP]降低至46 +/- 10 microM,并消除了力滞后现象:低[Ca2 +]时的残余力为最大力的17 +/- 5%。我们得出结论,在滋补性平滑肌中,Ca2 +下降时产生力的非磷酸化(AMdp)相对于磷酸化的跨桥的比例要比Ca2 +上升力曲线上的高,这是正应变的去磷酸化的跨桥具有对MgADP的亲和力高,而对去磷酸化的AMdp MgADP状态对维持低水平的MLC20磷酸化做出了重要贡献。

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