Song H, Golovkin M, Reddy A S, Endow S A
Department of Microbiology, Duke University Medical Center, Durham, NC 27710, USA.
Proc Natl Acad Sci U S A. 1997 Jan 7;94(1):322-7. doi: 10.1073/pnas.94.1.322.
AtKCBP is a calcium-dependent calmodulin-binding protein from Arabidopsis that contains a conserved kinesin microtubule motor domain. Calmodulin has been shown previously to bind to heavy chains of the unconventional myosins, where it is required for in vitro motility of brush border myosin I, but AtKCBP is the first kinesin-related heavy chain reported to be capable of binding specifically to calmodulin. Other kinesin proteins have been identified in Arabidopsis, but none of these binds to calmodulin, and none has been demonstrated to be a microtubule motor. We have tested bacterially expressed AtKCBP for the ability to bind microtubules to a glass surface and induce gliding of microtubules across the glass surface. We find that AtKCBP is a microtubule motor protein that moves on microtubules toward the minus ends, with the opposite polarity as kinesin. In the presence of calcium and calmodulin, AtKCBP no longer binds microtubules to the coverslip surface. This contrasts strikingly with the requirement of calmodulin for in vitro motility of brush border myosin I. Calmodulin could regulate AtKCBP binding to microtubules in the cell by inhibiting the binding of the motor to microtubules. The ability to bind to calmodulin provides an evolutionary link between the kinesin and myosin motor proteins, but our results indicate that the mechanisms of interaction and regulation of kinesin and myosin heavy chains by calmodulin are likely to differ significantly.
AtKCBP是一种来自拟南芥的钙依赖性钙调蛋白结合蛋白,它含有一个保守的驱动蛋白微管运动结构域。此前已表明钙调蛋白可与非常规肌球蛋白的重链结合,在体外刷状缘肌球蛋白I的运动中它是必需的,但AtKCBP是首个被报道能够特异性结合钙调蛋白的与驱动蛋白相关的重链。在拟南芥中已鉴定出其他驱动蛋白,但这些蛋白均不与钙调蛋白结合,也没有一个被证明是微管运动蛋白。我们测试了细菌表达的AtKCBP结合微管至玻璃表面并诱导微管在玻璃表面滑动的能力。我们发现AtKCBP是一种微管运动蛋白,它在微管上朝着负端移动,其极性与驱动蛋白相反。在有钙和钙调蛋白存在的情况下,AtKCBP不再将微管结合至盖玻片表面。这与钙调蛋白对体外刷状缘肌球蛋白I运动的需求形成了鲜明对比。钙调蛋白可能通过抑制运动蛋白与微管的结合来调节细胞中AtKCBP与微管的结合。与钙调蛋白结合的能力在驱动蛋白和肌球蛋白运动蛋白之间提供了一种进化联系,但我们的结果表明,钙调蛋白与驱动蛋白和肌球蛋白重链相互作用及调节的机制可能存在显著差异。