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疾病相关蛋白果蝇 Nab2 和 Ataxin-2 与共享 RNA 相互作用,并共同调节神经元形态。

The disease-associated proteins Drosophila Nab2 and Ataxin-2 interact with shared RNAs and coregulate neuronal morphology.

机构信息

Department of Cell Biology, Emory University School of Medicine, Atlanta, GA 30322, USA.

Department of Biology, The College of Wooster, Wooster, OH 44691, USA.

出版信息

Genetics. 2022 Jan 4;220(1). doi: 10.1093/genetics/iyab175.

Abstract

Nab2 encodes the Drosophila melanogaster member of a conserved family of zinc finger polyadenosine RNA-binding proteins (RBPs) linked to multiple steps in post-transcriptional regulation. Mutation of the Nab2 human ortholog ZC3H14 gives rise to an autosomal recessive intellectual disability but understanding of Nab2/ZC3H14 function in metazoan nervous systems is limited, in part because no comprehensive identification of metazoan Nab2/ZC3H14-associated RNA transcripts has yet been conducted. Moreover, many Nab2/ZC3H14 functional protein partnerships remain unidentified. Here, we present evidence that Nab2 genetically interacts with Ataxin-2 (Atx2), which encodes a neuronal translational regulator, and that these factors coordinately regulate neuronal morphology, circadian behavior, and adult viability. We then present the first high-throughput identifications of Nab2- and Atx2-associated RNAs in Drosophila brain neurons using RNA immunoprecipitation-sequencing (RIP-Seq). Critically, the RNA interactomes of each RBP overlap, and Nab2 exhibits high specificity in its RNA associations in neurons in vivo, associating with a small fraction of all polyadenylated RNAs. The identities of shared associated transcripts (e.g., drk, me31B, stai) and of transcripts specific to Nab2 or Atx2 (e.g., Arpc2 and tea) promise insight into neuronal functions of, and genetic interactions between, each RBP. Consistent with prior biochemical studies, Nab2-associated neuronal RNAs are overrepresented for internal A-rich motifs, suggesting these sequences may partially mediate Nab2 target selection. These data support a model where Nab2 functionally opposes Atx2 in neurons, demonstrate Nab2 shares associated neuronal RNAs with Atx2, and reveal Drosophila Nab2 associates with a more specific subset of polyadenylated mRNAs than its polyadenosine affinity alone may suggest.

摘要

Nab2 编码果蝇黑色素体成员保守家族的锌指多腺苷 RNA 结合蛋白(RBPs),与转录后调控的多个步骤有关。Nab2 人类同源物 ZC3H14 的突变导致常染色体隐性智力残疾,但对后生动物神经系统中 Nab2/ZC3H14 功能的理解有限,部分原因是尚未对后生动物 Nab2/ZC3H14 相关 RNA 转录本进行全面鉴定。此外,许多 Nab2/ZC3H14 功能蛋白伙伴关系仍未被识别。在这里,我们提供了证据表明 Nab2 在遗传上与 Ataxin-2(Atx2)相互作用,Ataxin-2 编码神经元翻译调节剂,这些因素协调调节神经元形态、昼夜节律行为和成虫活力。然后,我们使用 RNA 免疫沉淀测序(RIP-Seq)首次在果蝇大脑神经元中鉴定了 Nab2 和 Atx2 相关的 RNA。至关重要的是,每个 RBP 的 RNA 相互作用组重叠,并且 Nab2 在体内神经元中的 RNA 关联中表现出高度特异性,仅与一小部分多聚腺苷酸化 RNA 相关。共享相关转录本的身份(例如,drk、me31B、stai)和仅 Nab2 或 Atx2 特有的转录本(例如,Arpc2 和 tea)有望深入了解每个 RBP 的神经元功能和遗传相互作用。与先前的生化研究一致,Nab2 相关的神经元 RNA 富含内部 A 丰富的基序,表明这些序列可能部分介导 Nab2 靶标选择。这些数据支持 Nab2 在神经元中与 Atx2 功能相反的模型,表明 Nab2 与 Atx2 共享相关的神经元 RNA,并揭示果蝇 Nab2 与更多特定的多聚腺苷酸化 mRNA 相关,而不仅仅是其多聚腺苷酸亲和力可能表明。

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