Okuno M
J Cell Biol. 1980 Jun;85(3):712-25. doi: 10.1083/jcb.85.3.712.
Direct measurements of the stiffness (elastic bending resistance) of demembranated sera urchin sperm flagella were made in the presence of MgATP2- and vanadate. Under these conditions, the flagellum is in a relaxed state, with a stiffness of approximately 0.9 x 10(-21) N m2, which is approximately 5% of the stiffness obtained in the rigor state in the absence of MgATP2-. MgADP- dose not substitute for MgATP2- in producing relaxed state. A progressive inhibition of movement is observed after addition of MgATP2- to flagella preincubated with vanadate, in which new bend generation, propagation, and relaxation by straightening are distinguished, depending on the ratio of MgATP2- and vanadate. At appropriate concentrations of vanadate, increase of the velocity of bend propagation is observed at a very low concentration of MgATP2- that is not enough to induce spontaneous beating. Vanadate enhances competitive inhibition of beat frequency by MgADP- but not by ADP3-, ATP4-, or Pi. These observations, and the uncompetitive inhibition of beat frequency by vanadate, indicate that vanadate can only bind to dynein-nucleotide complexes induced by MgATP2- and MgADP-. The state accessible by MgATP2- binding must be a state in which the cross-bridges are detached and the flagellum is relaxed. The state accessible by MgADP- binding must be a cross-bridged state. Bound vanadate prevents the transition between these two states. Inhibition and relaxation by banadate in the presence of MgATP2- results from the specific affinity of vanadate for a state in which nucleotide is bound, rather than a specific affinity for the deteched state.
在MgATP2-和钒酸盐存在的情况下,对去膜海胆精子鞭毛的刚度(弹性抗弯曲性)进行了直接测量。在这些条件下,鞭毛处于松弛状态,刚度约为0.9×10(-21) N m2,这大约是在没有MgATP2-的 rigor 状态下获得的刚度的5%。MgADP-不能替代MgATP2-产生松弛状态。在向预先用钒酸盐孵育的鞭毛中添加MgATP2-后,观察到运动的逐渐抑制,其中根据MgATP2-和钒酸盐的比例,可以区分出新弯曲的产生、传播以及通过伸直实现的松弛。在适当浓度的钒酸盐下,在非常低浓度的MgATP2-(不足以诱导自发搏动)时观察到弯曲传播速度的增加。钒酸盐增强了MgADP-对搏动频率的竞争性抑制,但对ADP3-、ATP4-或Pi没有影响。这些观察结果以及钒酸盐对搏动频率的非竞争性抑制表明,钒酸盐只能与由MgATP2-和MgADP-诱导的动力蛋白 - 核苷酸复合物结合。MgATP2-结合可进入的状态必须是横桥分离且鞭毛松弛的状态。MgADP-结合可进入的状态必须是横桥结合的状态。结合的钒酸盐阻止了这两种状态之间的转变。在MgATP2-存在下钒酸盐的抑制和松弛是由于钒酸盐对核苷酸结合状态的特异性亲和力,而不是对分离状态的特异性亲和力。