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Three-dimensional organization of basal bodies from wild-type and delta-tubulin deletion strains of Chlamydomonas reinhardtii

机译:莱茵衣藻野生型和δ-微管蛋白缺失菌株基体的三维组织

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Improved methods of specimen preparation and dual-axis electron tomography have been used to study the structure and organization of basal bodies in the unicellular alga Chlamydomonas reinhardtii. Novel structures have been found in both wild type and strains with mutations that affect specific tubulin isoforms. Previous studies have shown that strains lacking delta-tubulin fail to assemble the C-tubule of the basal body. Tomographic reconstructions of basal bodies from the delta-tubulin deletion mutant uni3-1 have confirmed that basal bodies contain mostly doublet microtubules. Our methods now show that the stellate fibers, which are present only in the transition zone of wild-type cells, repeat within the core of uni3-1 basal bodies. The distal striated fiber is incomplete in this mutant, rootlet microtubules can be misplaced, and multiflagellate cells have been observed. A suppressor of uni3-1, designated tua2-6, contains a mutation in alpha-tubulin. tua2-6; uni3-1 cells build both flagella, yet they retain defects in basal body structure and in rootlet microtubule positioning. These data suggest that the presence of specific tubulin isoforms in Chlamydomonas directly affects the assembly and function of both basal bodies and basal body-associated structures. [References: 46]
机译:改进的标本制备方法和双轴电子断层扫描已用于研究单细胞藻类莱茵衣藻的基体的结构和组织。在野生型和具有影响特定微管蛋白同工型的突变的菌株中都发现了新的结构。先前的研究表明,缺乏δ-微管蛋白的菌株无法组装基体的C-管。 δ微管蛋白缺失突变体uni3-1的基底体的断层成像重建已证实,基底体主要包含双峰微管。我们的方法现在表明,仅存在于野生型细胞的过渡区内的星状纤维在uni3-1基体的核心内重复。在此突变体中,远端横纹纤维不完整,根小管可能被放错了位置,并观察到了多鞭毛细胞。 uni3-1的抑制子,称为tua2-6,在α-微管蛋白中含有一个突变。 tua2-6; uni3-1细胞同时构建鞭毛,但仍保留了基础身体结构和小根微管定位中的缺陷。这些数据表明衣藻中特定微管蛋白同工型的存在直接影响基体和基体相关结构的组装和功能。 [参考:46]

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