B CUBE-Center for Molecular Bioengineering, TUD Dresden University of Technology, Dresden 01307, Germany.
Cluster of Excellence "Physics of Life", TUD Dresden University of Technology, Dresden 01307, Germany.
Proc Natl Acad Sci U S A. 2024 Nov 12;121(46):e2406244121. doi: 10.1073/pnas.2406244121. Epub 2024 Nov 5.
Fluxes of energy generate active forces in living matter, yet also active fluctuations. As a canonical example, collections of molecular motors exhibit spontaneous oscillations with frequency jitter caused by nonequilibrium phase fluctuations. We investigate phase fluctuations in reactivated axonemes, which are accessible to direct manipulation. We quantify the precision of axonemal oscillations after controlled chemical removal of dynein motors, providing an experimental test for the theory prediction that the quality factor of motor oscillations should increase with motor number. Our quantification reveals specialized roles of inner and outer arm dynein motors. This supports a model in which inner dyneins serve as master pace-makers, to which outer arm dyneins become entrained, consistent with recent insight provided by structural biology.
能量流在生命物质中产生主动力,但也会产生主动波动。作为一个典型的例子,分子马达的集合体表现出自发的振荡,其频率抖动是由非平衡相涨落引起的。我们研究了再激活的轴丝中的相涨落,轴丝可以进行直接操纵。我们在控制化学去除动力蛋白马达后,对轴丝的振荡进行了定量,这为理论预测提供了一个实验测试,即马达振荡的品质因数应该随马达数量的增加而增加。我们的定量分析揭示了内臂和外臂动力蛋白马达的特殊作用。这支持了一个模型,即内臂动力蛋白作为主节拍器,外臂动力蛋白与之同步,这与结构生物学提供的最新见解一致。