Hahlen Katrin, Ebbing Bettina, Reinders Jörg, Mergler Judith, Sickmann Albert, Woehlke Guenther
Institute for Cell Biology, Ludwig-Maximilians University, Schillerstrasse 42, 80336 München, Germany.
J Biol Chem. 2006 Jul 7;281(27):18868-77. doi: 10.1074/jbc.M508019200. Epub 2006 May 8.
Kinesin-1 motor proteins step along microtubules by a mechanism in which the heads cycle through microtubule-bound and unbound states in an interlaced fashion. An important contribution to head-head coordination arises from the action of the neck-linker that docks onto the core motor domain upon ATP binding. We show here that the docked neck-linker not only guides the microtubule-unbound head to the next microtubule binding site but also signals its position to the head to which it is attached. Cross-linking studies on mutated kinesin constructs reveal that residues at the interface motor core/docked neck-linker, among them most importantly a conserved tyrosine, are involved in this feedback. The primary effect of the docked neck-linker is a reduced microtubule binding affinity in the ADP state.
驱动蛋白-1运动蛋白沿着微管移动,其机制是头部以交错的方式在与微管结合和未结合的状态之间循环。颈部连接蛋白在ATP结合时对接至核心运动结构域,这一作用对头部间的协调起到了重要作用。我们在此表明,对接的颈部连接蛋白不仅将未与微管结合的头部引导至下一个微管结合位点,还向其连接的头部传递自身位置信号。对突变的驱动蛋白构建体进行的交联研究表明,运动核心/对接颈部连接蛋白界面处的残基(其中最重要的是一个保守的酪氨酸)参与了这种反馈。对接的颈部连接蛋白的主要作用是降低ADP状态下的微管结合亲和力。