Blangy A, Chaussepied P, Nigg E A
Swiss Institute for Experimental Cancer Research, Epalinges.
Cell Motil Cytoskeleton. 1998;40(2):174-82. doi: 10.1002/(SICI)1097-0169(1998)40:2<174::AID-CM6>3.0.CO;2-F.
HsEg5 is a human kinesin-related motor protein essential for the formation of a bipolar mitotic spindle. It interacts with the mitotic centrosomes in a phosphorylation-dependent manner. To investigate further the mechanisms involved in targetting HsEg5 to the spindle apparatus, we expressed various mutants of HsEg5 in HeLa cells. All these mutants share a mutation of Thr-112 in the N-terminal motor domain, resulting in the inactivation of the ATP binding domain. In vitro, the HsEg5-T112N mutant motor domain showed a nucleotide-independent microtubule association, typical of a kinesin protein binding to microtubules in a rigor state. In vivo, overexpression of the HsEg5 rigor mutant in HeLa cells induced, in interphase, microtubule bundling, and, in mitosis, the formation of monopolar mitotic spindles similar to those observed after microinjection of anti-HsEg5 antibodies. Localization of the HsEg5 rigor mutant on cytoplasmic microtubules did not require the C-terminal tail domain but was lost when the stalk domain was also deleted. Sucrose gradient centrifugation experiments showed that microtubule bundling was most likely caused by the binding of HsEg5 mutants in a dimeric state. These results demonstrate that the precise subcellular localization of HsEg5 in vivo is regulated not only by the phosphorylation of the tail domain but also by the oligomeric state of the protein.
HsEg5是一种与人类驱动蛋白相关的运动蛋白,对双极有丝分裂纺锤体的形成至关重要。它以磷酸化依赖的方式与有丝分裂中心体相互作用。为了进一步研究将HsEg5靶向纺锤体装置的机制,我们在HeLa细胞中表达了各种HsEg5突变体。所有这些突变体在N端运动结构域均存在苏氨酸-112突变,导致ATP结合结构域失活。在体外,HsEg5-T112N突变体运动结构域显示出与核苷酸无关的微管结合,这是驱动蛋白蛋白在严格状态下与微管结合的典型特征。在体内,HeLa细胞中HsEg5严格突变体的过表达在间期诱导微管成束,在有丝分裂期诱导形成单极有丝分裂纺锤体,类似于注射抗HsEg5抗体后观察到的情况。HsEg5严格突变体在细胞质微管上的定位不需要C端尾部结构域,但当茎部结构域也缺失时则会丧失。蔗糖梯度离心实验表明,微管成束很可能是由处于二聚体状态的HsEg5突变体的结合引起的。这些结果表明,HsEg5在体内精确的亚细胞定位不仅受尾部结构域磷酸化的调节,还受蛋白质寡聚状态的调节。