Seow C Y, Ford L E
Krannert Institute of Cardiology, Indiana University, Indianapolis 46202, USA.
Biophys J. 1997 Jun;72(6):2719-35. doi: 10.1016/S0006-3495(97)78915-X.
The contractile properties of rabbit skinned muscle fibers were studied at 1-2 degrees C in different concentrations of MgATP and MgADP. Double-reciprocal plots of maximum velocity against MgATP concentration at different MgADP concentrations all extrapolated to the same value. This finding suggests that MgATP and MgADP compete for the same site on the cross-bridge, and that the exchange of MgATP for MgADP occurs without a detectable step intervening. The K(m) for ATP was 0.32 mM. The K(i) for MgADP was 0.33 mM. Control experiments suggested that the tortuosity of diffusion paths within the fibers reduced the radial diffusion coefficients for reactants about sixfold. Increasing MgADP from 0.18 to 2 mM at 5 mM ATP or lowering MgATP from 10 to 2 mM at 0.18 mM MgADP, respectively, increased isometric force by 25% and 23%, increased stiffness by 10% and 20%, and decreased maximum velocity by 35% and 31%. Two mechanisms appeared to be responsible. One detained bridges in high-force states, where they recovered from a length step with a slower time course. The other increased the fraction of attached bridges without altering the kinetics of their responses, possibly by an increased activation resulting from cooperative effects of the detained, high-force bridges. The rigor bridge was more effective than the ADP-bound bridge in increasing the number of attached bridges with unaltered kinetics.
在1-2摄氏度下,研究了不同浓度的MgATP和MgADP对兔去膜肌纤维收缩特性的影响。在不同MgADP浓度下,以最大速度对MgATP浓度绘制的双倒数图均外推至相同值。这一发现表明,MgATP和MgADP竞争横桥上的同一位点,并且MgATP与MgADP的交换过程中没有可检测到的中间步骤。ATP的米氏常数(K(m))为0.32 mM。MgADP的抑制常数(K(i))为0.33 mM。对照实验表明,纤维内扩散路径的曲折度使反应物的径向扩散系数降低了约六倍。分别在5 mM ATP时将MgADP从0.18 mM增加到2 mM,或在0.18 mM MgADP时将MgATP从10 mM降低到2 mM,等长力分别增加了25%和23%,刚度增加了10%和20%,最大速度降低了35%和31%。似乎有两种机制对此负责。一种机制是将桥锁定在高力状态,在这种状态下它们从长度变化中恢复的时间进程较慢。另一种机制是增加附着桥的比例,而不改变其反应动力学,这可能是由于被锁定的高力桥的协同作用导致激活增加所致。在不改变动力学的情况下,强直桥在增加附着桥数量方面比结合ADP的桥更有效。