Liu B, Joshi H C, Palevitz B A
Department of Botany, University of Georgia, Athens 30602-7271, USA.
Cell Motil Cytoskeleton. 1995;31(2):113-29. doi: 10.1002/cm.970310204.
gamma-Tubulin-specific antibodies stain the microtubule (Mt) arrays of Arabidopsis suspension cells in a punctate or patchy manner. During division, staining of kinetochore fibers and the phragmoplast is extensive, except in the vicinity of the plus ends at the metaphase plate and cell plate. gamma-Tubulin localization responds to low levels of colchicine, with staining receding farther toward the minus (pole) ends of kinetochore fibers. At higher drug concentrations, gamma-tubulin also associates with abnormal Mt foci as well as with the surface of the daughter nuclei facing the phragmoplast. During UV-induced recovery from colchicine, gamma-tubulin increases along the presumptive minus ends of mitotic Mts as well as the phragmoplast near the daughter nuclei. With CIPC, immunostaining is concentrated around the centers of focal Mt arrays in multipolar spindles. In the presence of taxol, Mts are more prominent but the mitotic apparatus and phragmoplast are abnormal. As with CIPC, gamma-tubulin is concentrated at focal arrays. Increased punctate staining is also present in interphase arrays, with fluorescent dots often located at the ends of Mts. These results support a preferential association between gamma-tubulin and Mt minus ends, but are also consistent with more general binding along the walls of Mts. Thus, minus ends (and Mt nucleation sites) may be present throughout plant Mt arrays, but gamma-tubulin may also serve another function, such as in structural stabilization.
γ-微管蛋白特异性抗体以点状或斑状方式对拟南芥悬浮细胞的微管(Mt)阵列进行染色。在细胞分裂期间,动粒纤维和成膜体的染色广泛,除了在中期板和细胞板的正端附近。γ-微管蛋白的定位对低水平秋水仙碱有反应,染色向动粒纤维的负(极)端进一步退去。在较高药物浓度下,γ-微管蛋白还与异常的Mt焦点以及面向成膜体的子核表面相关联。在紫外线诱导从秋水仙碱恢复期间,γ-微管蛋白沿着有丝分裂Mt的假定负端以及子核附近的成膜体增加。使用CIPC时,免疫染色集中在多极纺锤体中焦点Mt阵列的中心周围。在紫杉醇存在下,Mt更突出,但有丝分裂装置和成膜体异常。与CIPC一样,γ-微管蛋白集中在焦点阵列处。在间期阵列中也存在点状染色增加,荧光点通常位于Mt的末端。这些结果支持γ-微管蛋白与Mt负端之间的优先关联,但也与沿Mt壁的更普遍结合一致。因此,负端(和Mt成核位点)可能存在于整个植物Mt阵列中,但γ-微管蛋白也可能具有其他功能,例如在结构稳定方面。