Lockhart A, Kendrick-Jones J
Structural Studies Division, MRC-Laboratory of Molecular Biology, Hills Road, Cambridge, CB2 2QH, United Kingdom.
J Struct Biol. 1998 Dec 15;124(2-3):303-10. doi: 10.1006/jsbi.1998.4056.
The MukB protein from Escherichia coli has a domain structure that is reminiscent of the eukaryotic motor proteins kinesin and myosin: N-terminal globular domains, a region of coiled-coil, and a specialised C-terminal domain. Sequence alignment of the N-terminal domain of MukB with the kinesin motor domain indicated an approximately 22% sequence identity. These observations raised the possibility that MukB might be a prokaryotic motor protein and, due to the sequence homology shared with kinesin, might bind to microtubules (Mts). We found that a construct encoding the first 342 residues of MukB (Muk342) binds specifically to Mts and shares a number of properties with the motor domain of kinesin. Visualisation of the Muk342 decorated Mt complexes using negative stain electron microscopy indicated that the Muk342 smoothly decorates the outside of Mts. Biochemical data demonstrate that Muk342 decorates Mts with a binding stoichiometry of one Muk342 monomer per tubulin monomer. These findings strongly suggest that MukB has a role in force generation and that it is a prokaryotic homologue of kinesin and myosin.
来自大肠杆菌的MukB蛋白具有一种结构域结构,让人联想到真核生物的驱动蛋白和肌球蛋白:N端球状结构域、卷曲螺旋区域以及一个特殊的C端结构域。MukB的N端结构域与驱动蛋白的运动结构域的序列比对显示出约22%的序列同一性。这些观察结果提出了一种可能性,即MukB可能是一种原核生物驱动蛋白,并且由于与驱动蛋白共享序列同源性,可能与微管(Mts)结合。我们发现,编码MukB前342个残基的构建体(Muk342)特异性地与Mts结合,并与驱动蛋白的运动结构域具有许多共同特性。使用负染电子显微镜对Muk342修饰的Mt复合物进行观察表明,Muk342能够平滑地修饰Mts的外部。生化数据表明,Muk342以每个微管蛋白单体结合一个Muk342单体的结合化学计量比修饰Mts。这些发现强烈表明,MukB在力的产生中起作用,并且它是驱动蛋白和肌球蛋白的原核生物同源物。