Brandt R, Lee G
Center for Neurologic Diseases, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts 02115.
Cell Motil Cytoskeleton. 1994;28(2):143-54. doi: 10.1002/cm.970280206.
The neuronal microtubule-associated protein tau has been implicated in the development of axonal morphology including the organization of microtubules into a uniformly oriented array of microtubules commonly referred to as "bundle." Determination of the functional organization of tau has revealed that regions of tau protein which flank the microtubule-binding domain affect the bundling of microtubules in vitro with a microtubule-binding fragment of tau being most effective [Brandt and Lee, 1993: J. Biol. Chem. 268:3414-3419]. In order to study the relation of microtubule bundles that form in vitro to those observed in the axon, we determined the orientation of individual microtubules in bundles and the effects of bundling on microtubule assembly and stability in cell-free assembly reactions. Here we report that bundles induced by a microtubule-binding fragment of tau contain randomly oriented microtubules as determined by using the difference in growth rates at microtubule plus and minus ends. We demonstrate that in vitro bundling increases microtubule growth (about 30%), stabilizes microtubules against dilution- and cold-induced disassembly, and allows microtubule nucleation despite the absence of a tau region which has previously been shown to be required for tau-dependent microtubule nucleation. We conclude that conditions that stabilize microtubules can lead to bundle formation and allow microtubule assembly by a mechanism different from that employed by microtubule-associated proteins. The data also support the view that additional mechanisms besides the action of tau and tubulin exist in order to organize microtubules in the axon.
神经元微管相关蛋白tau与轴突形态的发育有关,包括将微管组织成通常称为“束”的均匀定向微管阵列。对tau功能组织的研究表明,位于微管结合结构域两侧的tau蛋白区域在体外影响微管的成束,tau的微管结合片段最为有效[布兰特和李,1993:《生物化学杂志》268:3414 - 3419]。为了研究体外形成的微管束与轴突中观察到的微管束之间的关系,我们确定了束中单个微管的方向以及成束对无细胞组装反应中微管组装和稳定性的影响。我们在此报告,由tau的微管结合片段诱导形成的束含有随机定向的微管,这是通过利用微管正负端生长速率的差异确定的。我们证明,体外成束增加了微管生长(约30%),稳定微管以抵抗稀释和冷诱导的解聚,并且尽管缺乏先前已证明tau依赖的微管成核所需的tau区域,但仍允许微管成核。我们得出结论,稳定微管的条件可导致束的形成,并通过一种不同于微管相关蛋白所采用的机制允许微管组装。数据还支持这样一种观点,即除了tau和微管蛋白的作用外,还存在其他机制来在轴突中组织微管。