首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >Drosophila ataxin‐2 gene encodes two differentially expressed isoforms and its function in larval fat body is crucial for development of peripheral tissues
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Drosophila ataxin‐2 gene encodes two differentially expressed isoforms and its function in larval fat body is crucial for development of peripheral tissues

机译:果蝇ataxin-2基因编码两个差异表达的同工型其在幼虫脂肪体内的功能对于周围组织的发育至关重要

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摘要

Different isoforms of ataxin‐2 are predicted in Drosophila and may underlie different cellular processes. Here, we validated the isoforms B and C of Drosophila ataxin‐2 locus (dAtx2), which we found to be expressed in various tissues and at different levels during development. dAtx2‐B mRNA was detected at low amounts during all developmental stages, whereas dAtx2‐C mRNA levels increase by eightfold from L3 to pupal–adult stages. Higher amounts of dAtx2‐B protein were detected in embryos, while dAtx2‐C protein was also expressed in higher levels in pupal–adult stages, indicating post‐transcriptional control for isoform B and transcription induction for isoform C, respectively. Moreover, in the fat body of L3 larvae dAtx2‐C, but not dAtx2‐B, accumulates in cytoplasmic foci that colocalize with sec23, a marker of endoplasmic reticulum exit sites (ERES). Interestingly, animals subjected to selective knockdown of dAtx2 in the larval fat body do not complete metamorphosis and die at the third larval stage or early puparium. Additionally, larvae knocked down for dAtx2, grown at 29 °C, are significantly smaller than control animals due to reduction in DNA replication and cell growth, which are consistent with the decreased levels of phosphorylated‐AKT observed in the fat body. Based on the localization of ataxin‐2 (dAtx2‐C) in ERESs, and on the phenotypes observed by dAtx2 knockdown in the larval fat body, we speculate a possible role for this protein in processes that regulate ERES formation. These data provide new insights into the biological function of ataxin‐2 with potential relevance to neurodegenerative diseases.
机译:在果蝇中预测到了不同的ataxin-2亚型,它们可能是不同细胞过程的基础。在这里,我们验证了果蝇ataxin-2基因座(dAtx2)的同工型B和C,我们发现它们在发育过程中在各种组织中以不同水平表达。在所有发育阶段都检测到了少量的dAtx2-B mRNA,而从L3到p成人阶段,dAtx2-C mRNA水平增加了八倍。在胚胎中检测到更多的dAtx2-B蛋白,而dAtx2-C蛋白在p到成年期也以更高的水平表达,表明分别对同工型B进行转录后控制和对同工型C进行转录诱导。此外,在L3幼虫的脂肪体中,dAtx2-C而非dAtx2-B积累在与sec23共定位的胞质灶中,后者是内质网出口位点(ERES)的标记。有趣的是,在幼虫脂肪体中进行了dAtx2选择性敲除的动物没有完成变态,并在幼虫的第三阶段或早产期死亡。此外,由于DNA复制和细胞生长的减少,在29°C下生长的被dAtx2敲除的幼虫比对照动物小得多,这与在脂肪体内观察到的磷酸化-AKT含量降低是一致的。基于ERES中的ataxin-2(dAtx2-C)的定位以及幼虫脂肪体内dAtx2敲除所观察到的表型,我们推测该蛋白在调节ERES形成的过程中可能发挥作用。这些数据提供了关于紫杉醇2的生物学功能的新见解,其可能与神经退行性疾病有关。

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