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Mutations of a Redundant α-Tubulin Gene Affect Caenorhabditis elegans Early Embryonic Cleavage via MEI-1/Katanin-Dependent and -Independent Pathways

机译:冗余的α-微管蛋白基因突变影响线虫秀丽隐杆线虫通过MEI-1 / Katanin依赖性和非依赖性途径进行早期卵裂。

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摘要

The C. elegans zygote supports both meiosis and mitosis within a common cytoplasm. The meiotic spindle is small and is located anteriorly, whereas the first mitotic spindle fills the zygote. The C. elegans microtubule-severing complex, katanin, is encoded by the mei-1 and mei-2 genes and is solely required for oocyte meiotic spindle formation; ectopic mitotic katanin activity disrupts mitotic spindles. Here we characterize two mutations that rescue the lethality caused by ectopic MEI-1/MEI-2. Both mutations are gain-of-function alleles of tba-2 α-tubulin. These tba-2 alleles do not prevent MEI-1/MEI-2 microtubule localization but do interfere with its activity. TBA-1 and TBA-2 are redundant for viability, but when katanin activity is limiting, TBA-2 is preferred over TBA-1 by katanin. This is similar to what we previously reported for the β-tubulins. Removing both preferred α- and β-isoforms results in normal development, suggesting that the katanin isoform preferences are not absolute. We conclude that while the C. elegans embryo expresses redundant α- and β-tubulin isoforms, they nevertheless have subtle functional specializations. Finally, we identified a dominant tba-2 allele that disrupts both meiotic and mitotic spindle formation independently of MEI-1/MEI-2 activity. Genetic studies suggest that this tba-2 mutation has a “poisonous” effect on microtubule function.
机译:秀丽隐杆线虫合子在共同的细胞质内支持减数分裂和有丝分裂。减数分裂纺锤体很小,位于前面,而第一个有丝分裂纺锤体充满合子。秀丽隐杆线虫微管切断复合物,katanin,由mei-1和mei-2基因编码,仅是卵母细胞减数分裂纺锤体形成所必需的。异位有丝分裂katanin活性破坏有丝分裂纺锤体。在这里,我们描述了两个能够挽救异位MEI-1 / MEI-2致死性的突变。这两个突变都是tba-2α-微管蛋白的功能获得等位基因。这些tba-2等位基因不会阻止MEI-1 / MEI-2微管定位,但会干扰其活性。 TBA-1和TBA-2在生存能力上是多余的,但是当katanin活性受到限制时,katanin比TBA-1更优选TBA-2。这与我们先前报道的β-微管蛋白相似。去除优选的α-异构体和β-异构体都会导致正常发育,这表明katanin异构体偏好不是绝对的。我们得出结论,尽管秀丽隐杆线虫胚胎表达多余的α-和β-微管蛋白同工型,但它们仍具有微妙的功能专长。最后,我们确定了一个显性的tba-2等位基因,它独立于MEI-1 / MEI-2的活性破坏了减数分裂和有丝分裂纺锤体的形成。遗传研究表明,这种tba-2突变对微管功能有“毒”作用。

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