Burlacu S, Borejdo J
Baylor Research Institute, Baylor University Medical Center, Dallas, Texas 75226.
Biophys J. 1992 Dec;63(6):1471-82. doi: 10.1016/S0006-3495(92)81744-7.
We measured, by fluorescence correlation spectroscopy, the motion of actin filaments in solution during hydrolysis of ATP by acto-heavy meromyosin (acto-HMM). The method relies on the fact that the intensity of fluorescence fluctuates as fluorescently labeled actin filaments enter and leave a small sample volume. The rapidity of these number fluctuations is characterized by the autocorrelation function, which decays to 0 in time that is related to the average velocity of translation of filaments. The time of decay of the autocorrelation function of bare actin filaments in solution was 10.59 +/- 0.85 s. Strongly bound (rigor) heads slowed down the diffusion. Direct observation of filaments under an optical microscope showed that addition of HMM did not change the average length or flexibility of actin filaments, suggesting that the decrease in diffusion was not due to a HMM-induced change in the shape of filaments. Rather, slowing down of translational motion was caused by an increase in the volume of the diffusing complex. Surprisingly, the addition of ATP to acto-HMM accelerated the motion of actin filaments. The acceleration was the greatest at the low molar ratios of HMM:actin. Direct observation of filaments under an optical microscope showed that in the presence of ATP the average length of filaments did not change and that the filaments became stiffer, suggesting that acceleration of diffusion was not due to an ATP-induced increase in flexibility of filaments. These results show that some of the energy of splitting of ATP is impaired to actin filaments and suggest that 0.06 +/- 0.02 of HMM interferes with the diffusion of actin filaments during hydrolysis of ATP.
我们通过荧光相关光谱法测量了在肌动蛋白-重酶解肌球蛋白(acto-HMM)催化ATP水解过程中溶液中肌动蛋白丝的运动。该方法基于这样一个事实:当荧光标记的肌动蛋白丝进入和离开一个小的样品体积时,荧光强度会发生波动。这些数量波动的快速程度由自相关函数表征,该函数在与丝的平均平移速度相关的时间内衰减至0。溶液中裸肌动蛋白丝的自相关函数衰减时间为10.59±0.85秒。紧密结合(僵直)的头部减缓了扩散。在光学显微镜下直接观察丝表明,添加HMM不会改变肌动蛋白丝的平均长度或柔韧性,这表明扩散的降低不是由于HMM诱导的丝形状变化。相反,平移运动的减慢是由扩散复合物体积的增加引起的。令人惊讶的是,向acto-HMM中添加ATP会加速肌动蛋白丝的运动。在HMM:肌动蛋白的低摩尔比下,加速最为显著。在光学显微镜下直接观察丝表明,在ATP存在下,丝的平均长度不变且丝变得更硬,这表明扩散的加速不是由于ATP诱导的丝柔韧性增加。这些结果表明,ATP水解产生的部分能量传递给了肌动蛋白丝,并表明0.06±0.02的HMM在ATP水解过程中干扰了肌动蛋白丝的扩散。