Hackney David D, Stock Maryanne F
Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, USA.
Biochemistry. 2008 Jul 22;47(29):7770-8. doi: 10.1021/bi8006687. Epub 2008 Jun 26.
Kinesin-1 is a vesicle motor that can fold into a compact inhibited conformation that is produced by interaction of the heavy chain C-terminal tail region with the N-terminal motor domains (heads). Binding of the tail domains to the heads inhibits net microtubule-stimulated ATPase activity by blocking the ability of the heads to bind to microtubules with coupled acceleration of ADP release. We now show that folding of kinesin-1 also directly inhibits ADP release even in the absence of microtubules. With long heavy chain constructs such as DKH960 that exhibit a high degree of regulation by folding, the basal rate of ADP release is inhibited up to 30-fold compared to that of truncated DKH894 which has lost the inhibitory tail domains and does not fold. Inhibition of ADP release is also observed when separate head and tail domain constructs are mixed at low salt concentrations. This inhibition of ADP release by tail domains is formally analogous to the action of nucleotide dissociation inhibitors (NDI or GDI) for regulatory GTPases. In contrast to their inhibition of ADP release, tail domains accelerate the rate of ADP binding to nucleotide-free kinesin-1. Inhibition of release of ADP by tail domains is reversed by Unc-76 (FEZ1) which is a potential regulator of kinesin-1. Tail domains only weakly inhibit the initial slow release of Mg (2+) from the kinesin-MgADP complex but strongly inhibit the fast release of Mg (2+)-free ADP.
驱动蛋白-1是一种囊泡马达蛋白,它可以折叠成紧密的抑制构象,这种构象是由重链C末端尾部区域与N末端马达结构域(头部)相互作用产生的。尾部结构域与头部的结合通过阻断头部与微管结合并加速ADP释放的能力,抑制了微管刺激的净ATP酶活性。我们现在表明,即使在没有微管的情况下,驱动蛋白-1的折叠也直接抑制ADP释放。对于像DKH960这样通过折叠表现出高度调控的长重链构建体,与已失去抑制性尾部结构域且不折叠的截短型DKH894相比,ADP释放的基础速率被抑制了30倍。当单独的头部和尾部结构域构建体在低盐浓度下混合时,也观察到了ADP释放的抑制。尾部结构域对ADP释放的这种抑制在形式上类似于调节性GTP酶的核苷酸解离抑制剂(NDI或GDI)的作用。与它们对ADP释放的抑制相反,尾部结构域加速了ADP与无核苷酸驱动蛋白-1的结合速率。Unc-76(FEZ1)可逆转尾部结构域对ADP释放的抑制,Unc-76是驱动蛋白-1的一种潜在调节因子。尾部结构域仅微弱抑制驱动蛋白-MgADP复合物中Mg(2+)的初始缓慢释放,但强烈抑制无Mg(2+)的ADP的快速释放。