Department of Genetics, Washington University School of Medicine, St. Louis, Missouri, United States of America.
PLoS One. 2013;8(1):e53940. doi: 10.1371/journal.pone.0053940. Epub 2013 Jan 8.
Centrioles and basal bodies are essential for a variety of cellular processes that include the recruitment of proteins to these structures for both centrosomal and ciliary function. This recruitment is compromised when centriole/basal body assembly is defective. Mutations that cause basal body assembly defects confer supersensitivity to Taxol. These include bld2, bld10, bld12, uni3, vfl1, vfl2, and vfl3. Flagellar motility mutants do not confer sensitivity with the exception of mutations in the p60 (pf19) and p80 (pf15) subunits of the microtubule severing protein katanin. We have identified additional pf15 and bld2 (ε-tubulin) alleles in screens for Taxol sensitivity. Null pf15 and bld2 alleles are viable and are not essential genes in Chlamydomonas. Analysis of double mutant strains with the pf15-3 and bld2-6 null alleles suggests that basal bodies in Chlamydomonas may recruit additional proteins beyond katanin that affect spindle microtubule stability. The bld2-5 allele is a hypomorphic allele and its phenotype is modulated by nutritional cues. Basal bodies in bld2-5 cells are missing proximal ends. The basal body mutants show aberrant localization of an epitope-tagged p80 subunit of katanin. Unlike IFT proteins, katanin p80 does not localize to the transition fibers of the basal bodies based on an analysis of the uni1 mutant as well as the lack of colocalization of katanin p80 with IFT74. We suggest that the triplet microtubules are likely to play a key role in katanin p80 recruitment to the basal body of Chlamydomonas rather than the transition fibers that are needed for IFT localization.
中心粒和基体对于多种细胞过程至关重要,包括将蛋白质募集到这些结构中以发挥中心体和纤毛功能。当中心粒/基体组装出现缺陷时,这种募集就会受到影响。导致基体组装缺陷的突变使紫杉醇敏感性增强。这些突变包括 bld2、bld10、bld12、uni3、vfl1、vfl2 和 vfl3。鞭毛运动突变体不会产生敏感性,除了微管切割蛋白katanin 的 p60(pf19)和 p80(pf15)亚基的突变。我们在筛选紫杉醇敏感性时发现了额外的 pf15 和 bld2(ε-微管蛋白)等位基因。pf15 和 bld2 的 null 等位基因是可行的,在衣藻中不是必需基因。pf15-3 和 bld2-6 null 等位基因双突变株的分析表明,衣藻中的基体可能招募了除 katanin 之外的其他影响纺锤体微管稳定性的蛋白质。bld2-5 等位基因为低功能等位基因,其表型受营养信号的调节。bld2-5 细胞中的基体缺失近端末端。基体突变体显示katanin 的一个表位标记的 p80 亚基的异常定位。与 IFT 蛋白不同,katanin p80 不会基于 uni1 突变体的分析以及katanin p80 与 IFT74 缺乏共定位而定位到基体的过渡纤维上。我们认为,三联微管可能在 katanin p80 招募到衣藻基体中发挥关键作用,而不是 IFT 定位所需的过渡纤维。