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肌钙蛋白I增强酸性pH诱导的Ca2+与骨骼肌肌钙蛋白C调节位点结合的抑制作用。

Troponin I enhances acidic pH-induced depression of Ca2+ binding to the regulatory sites in skeletal troponin C.

作者信息

el-Saleh S C, Solaro R J

机构信息

Department of Physiology and Biophysics, University of Cincinnati College of Medicine, Ohio 45267.

出版信息

J Biol Chem. 1988 Mar 5;263(7):3274-8.

PMID:2830278
Abstract

Inhibition of muscle force development by acidic pH is a well known phenomenon, yet the exact mechanism by which a decrease in pH inhibits the Ca2+-activated force in striated myofilaments remains poorly understood. Whether or not the deactivation by acidic pH involves direct competition between Ca2+ and protons for regulatory binding sites on fast skeletal troponin C (TnC) or whether other proteins in thin filament regulation are important remains unclear. We measured the effects of acidic pH on Ca2+-dependent fluorescent changes in TnC labeled with the probe danzylaziridine (Danz), which reports Ca2+ binding to the regulatory (Ca2+-specific) sites. Measurements were also made with TnCDanz complexed with the inhibitory Tn unit, TnI, and in the whole Tn complex. Our results show that a drop in pH from 7.0 to 6.5 is associated with a 1.6-fold increase in the midpoint for the relation between free Ca2+ and Ca2+ binding to the regulatory sites on TnCDanz. However, when TnCDanz was present in its complex with either TnI alone or with TnI-TnT, the increase in midpoint free Ca2+ was increased by 3.5-fold. We tested whether this potentiation in the effect of acidic pH on Ca2+ binding to TnC is due to a pH-induced alteration in the binding of TnI to TnC. A decrease in pH from 7.0 to 6.5 was associated with a halving of the affinity of TnI for TnC. We also probed the effect of acidic pH on TnI. This was done (i) by measuring the intrinsic fluorescence of tryptophan residues in TnI alone and (ii) by measuring fluorescence of TnI (in the Tn complex) labeled at Cys-133 with 5-iodoacetamidofluorescein. A drop in pH from 7.0 to 6.5 was associated with a 15% decrease in intrinsic fluorescence and with a 30% decrease in the fluorescence of the 5-iodoacetamidofluorescein probe. We conclude, therefore, that while protons and Ca2+ may directly affect Ca2+ binding to regulatory sites on fast skeletal TnC, the effect of acidic pH on TnC Ca2+ binding is amplified in the TnI-TnC and Tn complexes by a pH-related effect on the affinity of TnI for TnC.

摘要

酸性pH对肌肉力量发展的抑制是一个众所周知的现象,然而pH值降低抑制横纹肌肌丝中Ca2+激活力量的确切机制仍知之甚少。酸性pH导致的失活是否涉及Ca2+与质子在快速骨骼肌肌钙蛋白C(TnC)上的调节结合位点的直接竞争,或者细肌丝调节中的其他蛋白质是否重要,目前尚不清楚。我们测量了酸性pH对用探针丹磺酰叠氮化物(Danz)标记的TnC中Ca2+依赖性荧光变化的影响,该探针报告Ca2+与调节(Ca2+特异性)位点的结合。还对与抑制性Tn单位TnI复合的TnCDanz以及整个Tn复合物进行了测量。我们的结果表明,pH从7.0降至6.5与游离Ca2+与Ca2+结合到TnCDanz上调节位点之间关系的中点增加1.6倍有关。然而,当TnCDanz与单独的TnI或与TnI-TnT形成复合物时,中点游离Ca2+的增加增加了3.5倍。我们测试了酸性pH对Ca2+与TnC结合的影响是否由于pH诱导的TnI与TnC结合的改变。pH从7.0降至6.5与TnI对TnC的亲和力减半有关。我们还探究了酸性pH对TnI的影响。这是通过(i)测量单独的TnI中色氨酸残基的固有荧光以及(ii)测量用5-碘乙酰氨基荧光素标记的TnI(在Tn复合物中)的荧光来完成的。pH从7.0降至6.5与固有荧光降低15%以及5-碘乙酰氨基荧光素探针的荧光降低30%有关。因此,我们得出结论,虽然质子和Ca2+可能直接影响Ca2+与快速骨骼肌TnC上调节位点的结合,但酸性pH对TnC Ca2+结合的影响在TnI-TnC和Tn复合物中通过pH对TnI与TnC亲和力的相关影响而被放大。

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