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Woc gene mutation causes 20E-dependent alpha-tubulin detyrosination in Drosophila melanogaster

机译:Woc基因突变在果蝇中导致20E依赖的α-微管蛋白脱酪氨酸

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The mutation without children(rgl) (woc(rgl)) is a newly described ecdysone-deficient Drosophila mutant. The woc(rgl) mutant larvae show developmental arrestment at the late larval stage and fail to form a puparium due to the failure of the ring gland to secret normal levels of ecdysone. Although a 6.8-kb woc gene transcript encoding a 187-kDa potential transcription factor has been cloned and lack of a specific cholesterol 7,8-dehydrogenease that mediates the first step in the ecdysteroidogenic pathway is likely the cause for ecdysteroid deficiency, the cellular events controlled by the woc gene remain unclear. In the present study, we investigated the effect of the woc gene mutation on the expression and tyrosination of alpha-tubulin in the woc(rgl) mutant. Our results demonstrated that the mutation in the woc gene caused 20E-dependent alpha-tubulin detyrosination, but had no significant effect on the expression of total alpha- and beta-tubulin in the homozygous woc(rgl) mutant larvae. Immunocytochemical study revealed that 20E-induced alpha-tubulin detyrosination led to the diminishing of tyrosinated alpha-tubulin signals from microtubules, resulting in the disruption of microtubule structure. The composite data suggest that the woc gene may regulate 20E-dependent alpha-tubulin detyrosination and that microtubules may be involved in sterol transport and sterol utilization in insect.
机译:没有子代(rgl)(woc(rgl))的突变是新描述的蜕皮激素缺乏果蝇突变体。 woc(rgl)突变幼虫在幼虫后期显示发育停滞,并且由于环腺未能分泌正常的蜕皮激素水平而未能形成。尽管已经克隆了编码187kDa潜在转录因子的6.8-kb woc基因转录本,缺乏介导蜕皮激素生成途径第一步的特定胆固醇7,8-脱氢酶很可能是蜕皮激素缺乏的原因,但细胞事件由woc基因控制的基因仍不清楚。在本研究中,我们调查了woc基因突变对woc(rgl)突变体中α-微管蛋白的表达和酪氨酸化的影响。我们的结果表明,woc基因中的突变引起20E依赖的α-微管蛋白脱酪氨酸作用,但对纯合的woc(rgl)突变幼虫中总α-和β-微管蛋白的表达没有明显影响。免疫细胞化学研究表明,20E诱导的α-微管蛋白脱酪氨酸导致微管中酪氨酸化的α-微管蛋白信号减弱,从而导致微管结构破坏。综合数据表明,woc基因可能调节20E依赖的α-微管蛋白脱酪氨酸作用,并且微管可能参与昆虫体内的固醇转运和固醇利用。

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