Department of Anatomy and Cell Biology, University of Iowa, Iowa City, IA 52242, USA.
J Muscle Res Cell Motil. 2010 Aug;31(2):93-109. doi: 10.1007/s10974-010-9213-x. Epub 2010 Jun 18.
The thin filament extraction and reconstitution protocol was used to investigate the functional roles of tropomyosin (Tm) isoforms and phosphorylation in bovine myocardium. The thin filament was extracted by gelsolin, reconstituted with G-actin, and further reconstituted with cardiac troponin together with one of three Tm varieties: phosphorylated alphaTm (alphaTm.P), dephosphorylated alphaTm (alphaTm.deP), and dephosphorylated betaTm (betaTm.deP). The effects of Ca, phosphate, MgATP and MgADP concentrations were examined in the reconstituted fibres at pH 7.0 and 25 degrees C. Our data show that Ca(2+) sensitivity (pCa(50): half saturation point) was increased by 0.19 +/- 0.07 units when betaTm.deP was used instead of alphaTm.deP (P < 0.05), and by 0.27 +/- 0.06 units when phosphorylated alphaTm was used (P < 0.005). The cooperativity (Hill factor) decreased (but insignificantly) from 3.2 +/- 0.3 (5) to 2.8 +/- 0.2 (7) with phosphorylation. The cooperativity decreased significantly from 3.2 +/- 0.3 (5) to 2.1 +/- 0.2 (9) with isoform change from alphaTm.deP to betaTm.deP. There was no significant difference in isometric tension or stiffness between alphaTm.P, alphaTm.deP, and betaTm.deP muscle fibres at saturating [Ca(2+)] or after rigor induction. Based on the six-state cross-bridge model, sinusoidal analysis indicated that the equilibrium constants of elementary steps differed up to 1.7x between alphaTm.deP and betaTm.deP, and up to 2.0x between alphaTm.deP and alphaTm.P. The rate constants differed up to 1.5x between alphaTm.deP and betaTm.deP, and up to 2.4x between alphaTm.deP and alphaTm.P. We conclude that tension and stiffness per cross-bridge are not significantly different among the three muscle models.
我们使用细丝提取和重组方案来研究原肌球蛋白(Tm)同工型和磷酸化在牛心肌中的功能作用。用凝溶胶提取细丝,用 G-肌动蛋白重组,然后与三种 Tm 变体之一:磷酸化的αTm(αTm.P)、去磷酸化的αTm(αTm.deP)和去磷酸化的βTm(βTm.deP)一起与心肌肌钙蛋白重组。在 pH 值为 7.0 和 25°C 的重组纤维中,研究了 Ca、磷酸盐、MgATP 和 MgADP 浓度的影响。我们的数据表明,当使用βTm.deP 代替αTm.deP 时,Ca2+敏感性(pCa50:半饱和点)增加了 0.19±0.07 个单位(P<0.05),当使用磷酸化的αTm 时增加了 0.27±0.06 个单位(P<0.005)。磷酸化后协同性(Hill 因子)降低(但不显著),从 3.2±0.3(5)降至 2.8±0.2(7)。同工型变化从αTm.deP 变为βTm.deP 时,协同性从 3.2±0.3(5)显著降低至 2.1±0.2(9)。在饱和 [Ca2+]或强直诱导后,αTm.P、αTm.deP 和βTm.deP 肌肉纤维的等长张力或刚度没有显著差异。基于六态交联桥模型,正弦分析表明,基本步骤的平衡常数在αTm.deP 和βTm.deP 之间差异高达 1.7x,在αTm.deP 和αTm.P 之间差异高达 2.0x。速率常数在αTm.deP 和βTm.deP 之间差异高达 1.5x,在αTm.deP 和αTm.P 之间差异高达 2.4x。我们得出结论,在三种肌肉模型中,每个交联桥的张力和刚度没有显著差异。