Narasimhulu S B, Reddy A S
Department of Biology and Program in Cell and Molecular Biology, Colorado State University, Fort Collins, Colorado 80523, USA.
Plant Cell. 1998 Jun;10(6):957-65. doi: 10.1105/tpc.10.6.957.
The kinesin-like calmodulin binding protein (KCBP) is a new member of the kinesin superfamily that appears to be present only in plants. The KCBP is unique in its ability to interact with calmodulin in a Ca2+-dependent manner. To study the interaction of the KCBP with microtubules, we expressed different regions of the Arabidopsis KCBP and used the purified proteins in cosedimentation assays with microtubules. The motor domain with or without the calmodulin binding domain bound to microtubules. The binding of the motor domain containing the calmodulin binding region to microtubules was inhibited by Ca2+-calmodulin. This Ca2+-calmodulin regulation of motor domain interactions with microtubules was abolished in the presence of antibodies specific to the calmodulin binding region. In addition, the binding of the motor domain lacking the calmodulin binding region to microtubules was not inhibited in the presence of Ca2+-calmodulin, suggesting an essential role for the calmodulin binding region in Ca2+-calmodulin modulation. Results of the cosedimentation assays with the N-terminal tail suggest the presence of a second microtubule binding site on the KCBP. However, the interaction of the N-terminal tail region of the KCBP with microtubules was insensitive to ATP. These data on the interaction of the KCBP with microtubules provide new insights into the functioning of the KCBP in plants.
类驱动蛋白钙调蛋白结合蛋白(KCBP)是驱动蛋白超家族的一个新成员,似乎仅存在于植物中。KCBP的独特之处在于其能够以Ca2+依赖的方式与钙调蛋白相互作用。为了研究KCBP与微管的相互作用,我们表达了拟南芥KCBP的不同区域,并在与微管的共沉降实验中使用了纯化的蛋白。带有或不带有钙调蛋白结合结构域的运动结构域都能与微管结合。含有钙调蛋白结合区域的运动结构域与微管的结合受到Ca2+ - 钙调蛋白的抑制。在存在针对钙调蛋白结合区域的特异性抗体时,这种Ca2+ - 钙调蛋白对运动结构域与微管相互作用的调节作用被消除。此外,在存在Ca2+ - 钙调蛋白的情况下,缺乏钙调蛋白结合区域的运动结构域与微管的结合未受到抑制,这表明钙调蛋白结合区域在Ca2+ - 钙调蛋白调节中起重要作用。用N端尾部进行的共沉降实验结果表明,KCBP上存在第二个微管结合位点。然而KCBP的N端尾部区域与微管的相互作用对ATP不敏感。这些关于KCBP与微管相互作用的数据为KCBP在植物中的功能提供了新的见解。