West J M, Higuchi H, Ishijima A, Yanagida T
Department of Biophysical Engineering, Osaka University, Japan.
J Muscle Res Cell Motil. 1996 Dec;17(6):637-46. doi: 10.1007/BF00154058.
The properties of bi-directional sliding of F-actin prepared from rabbit skeletal muscle moving along clam thick filaments have been characterized in the presence of agents known to modify unloaded shortening velocity in muscle to determine if the sliding characteristics of actin are similar in the two directions of movement. Actin filaments moved at a fast velocity towards the central bare zone (11.1 +/- 0.2 microns s-1) and at a slower velocity away from the bare zone (3.9 +/- 0.3 microns s-1). Movement of filaments at the slow sliding velocity is thought to be sustained by a change in orientation of the myosin head. The Michaelis Menten constant (Km values) of approximately 0.3 mM in the presence of MgATP concentrations of 0.01-2.0 mM at an ionic strength of 43.5 mM were reduced to approximately 0.1 mM at low ionic strength (18.5 mM) although the Km values at the fast and slow sliding velocities at each ionic strength were similar. In the presence of constant concentrations of MgATP, increasing the MgADP concentrations from 0.5 to 2mM, decreased the bi-directional sliding velocity of actin. The data were well fitted with an equation described by Michaelis Menten kinetics yielding mean absolute Km and Ki values of 0.41 +/- 0.01 and 0.44 +/- 0.05 mM for the fast velocity and 0.29 +/- 0.07 and 0.45 +/- 0.02 mM for the slow velocity of sliding, respectively. The Km and Ki values were not significantly different from each other at either the fast or slow sliding velocities. The actin filament sliding velocity appeared to be controlled through the thick filament as actin was devoid of regulatory proteins and the presence of Ca2+ modified the MgATP dependent movement of actin. The pCa value for half maximal sliding velocity was 7.0 for both fast and slow velocities. The Km and Ki values and the Ca2+ sensitivity of the actin movement at the fast and slow sliding velocity are similar suggesting that no major biochemical changes have occurred in the myosin head as a result of a change in orientation.
在已知可改变肌肉无负荷缩短速度的试剂存在的情况下,对从兔骨骼肌制备的F-肌动蛋白沿着蛤厚丝双向滑动的特性进行了表征,以确定肌动蛋白在两个运动方向上的滑动特性是否相似。肌动蛋白丝朝着中央裸区快速移动(11.1±0.2微米/秒),远离裸区移动较慢(3.9±0.3微米/秒)。认为细丝在缓慢滑动速度下的移动是由肌球蛋白头部方向的变化维持的。在离子强度为43.5 mM时,MgATP浓度为0.01 - 2.0 mM时,米氏常数(Km值)约为0.3 mM,在低离子强度(18.5 mM)下降至约0.1 mM,尽管在每种离子强度下快速和缓慢滑动速度下的Km值相似。在MgATP浓度恒定的情况下,将MgADP浓度从0.5 mM增加到2 mM,会降低肌动蛋白的双向滑动速度。数据与米氏动力学描述的方程拟合良好,快速滑动速度的平均绝对Km和Ki值分别为0.41±0.01和0.44±0.05 mM,缓慢滑动速度的分别为0.29±0.07和0.45±0.02 mM。在快速或缓慢滑动速度下,Km和Ki值彼此之间没有显著差异。由于肌动蛋白缺乏调节蛋白,且Ca2+的存在改变了肌动蛋白依赖MgATP的运动,因此肌动蛋白丝的滑动速度似乎是通过粗丝控制的。快速和缓慢滑动速度下,半最大滑动速度的pCa值均为7.0。快速和缓慢滑动速度下肌动蛋白运动的Km和Ki值以及Ca2+敏感性相似,表明肌球蛋白头部方向的改变并未导致重大的生化变化。