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A novel pressure-jump apparatus for the microvolume analysis of protein-ligand and protein-protein interactions: its application to nucleotide binding to skeletal-muscle and smooth-muscle myosin subfragment-1

机译:一种用于蛋白质-配体和蛋白质-蛋白质相互作用的微体积分析的新型压力跳跃仪:其在与骨骼肌和平滑肌肌球蛋白亚片段1结合的核苷酸中的应用

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摘要

Reactions involving proteins frequently involve large changes in volume, which allows the equilibrium position to be perturbed by changes in pressure. Rapid changes in pressure can thus be used to initiate relaxation in pressure; however, this approach is seldom used, because it requires specialized equipment. We have built a microvolume (50 mul) pressure-jump apparatus, powered by a piezoelectric actuator, based on the original design of Clegg and Maxfield [(1976) Rev. Sci. Instrum. 47, 1383-1393]. This equipment can apply pressure changes of +/- 20 MPa (maximally) in time periods as short as 80 mus and follow the resulting change in fluorescence signals. The system is relatively simple to use with fast (approx. 1 min) exchange of samples. In the present study, we show that this system can perturb the binding of 2'(3')-O-(N-methylanthraniloyl)-ADP to myosin subfragment-1 (SI) from skeletal and smooth muscles. The kinetic data are consistent with previous work, and in addition show that, although 2'(3')-O-(N-methylanthraniloyl)-ADP binds with a similar affinity to both proteins, the increase in molar volume for the skeletal-muscle S1 binding to ADP is half of that for the smooth-muscle protein. This high-volume change for smooth-muscle S1 may be related to the ability of ADP to induce a 23degrees tilt in the tail of S1 bound to actin.
机译:涉及蛋白质的反应通常涉及体积的大变化,这使平衡位置受压力变化的干扰。因此,可以使用压力的快速变化来启动压力的松弛。但是,这种方法很少使用,因为它需要专用的设备。我们基于Clegg和Maxfield [(1976)Rev. Sci。的原始设计,构建了一个由压电致动器提供动力的微体积(50 mul)跳压设备。仪器47,1383-1393]。该设备可以在短至80 mus的时间内施加+/- 20 MPa(最大)的压力变化,并跟踪荧光信号的变化。该系统使用起来相对简单,可以快速(约1分钟)交换样品。在本研究中,我们表明该系统可以干扰2'(3')-O-(N-甲基蒽基)-ADP与骨骼肌和平滑肌肌球蛋白亚片段1(SI)的结合。动力学数据与以前的工作一致,此外还显示,尽管2'(3')-O-(N-甲基蒽基)-ADP与这两种蛋白的结合力相似,但骨骼肌-肌肉S1与ADP的结合是平滑肌蛋白的一半。平滑肌S1的这种大量变化可能与ADP诱导结合肌动蛋白的S1尾巴诱导23度倾斜的能力有关。

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